Publicações
Artigos Científicos
ARTIGOS CIENTÍFICOS RELEVANTES (DE 2017)
BALBINOTT, N.; Rodrigues, N.F.; Guzman, F.L.; Turchetto-Zolet, A.C.; Margis, R. (2022). Perspectives in Myrtaceae evolution from plastomes and nuclear phylogenies. Genetics and Molecular Biology, v. 45, p. 1–13. https://doi.org/10.1590/1678-4685-gmb-2021-0191
LOPES, R.M.; Dantas, A.F.; Padua, J.G.; Jose, S.C.B.R.; Brasileiro, A.C.M.; Grisolia, C.K.; Gimenes, M.A. (2022). Evaluation of DNA integrity as a potential marker to detect aging in soybean (Glycine max) seeds. Genetics and Molecular Research, v. 20, n. 4, p. gmr18961. http://dx.doi.org/10.4238/gmr18961
MARTINS, A.; Mota, A.P.Z.; de Passos Saraiva, M.A; Gimenes, M.A.; Guimaraes, P.M.; Brasileiro, A.C.M. (2022). Transcriptome responses of wild Arachis to UV-C exposure reveal genes involved in general plant defense and priming. Plants, v. 11, p. 408. https://doi.org/10.3390/plants11030408
MOREIRA, V.J.V.; Lourenço-Tessutti, I.T.; Basso, M.F.; Lisei-de-Sa, M.E.; Morgante, C.V.; Paes-de-Melo, B.; Arraes, F.B.M.; Martins-de-Sa, D.; Silva, M.C.M.; de Almeida Engler, J.; Grossi-de-Sa, M.F. (2022). Minc03328 effector gene downregulation severely affects Meloidogyne incognita parasitism in transgenic Arabidopsis thaliana. Planta, v. 255, p. 44-59. https://doi.org/10.1007/s00425-022-03823-4
WAIRICH, A.; Malabarba, J.; Buffon, V.; Porto, D.D.; Togawa, R.; Revers, L.F. (2022). Molecular characterization of the Rpv3 locus towards the development of KASP markers for downy mildew resistance in grapevine (Vitis spp.). Euphytica, v. 218, p. 1. https://doi.org/10.1007/s10681-021-02952-3
ALBUQUERQUE, G.M.R.; Fonseca, F.C.A.; Boiteux, L.S.; Borges, R.C.; Miller, R.N.G.; Lopes, C.A.; Souza, E.B.; Fonseca, M.E.N. (2021). Stability analysis of reference genes for RT-qPCR assays involving compatible and incompatible Ralstonia solanacearum-tomato ‘Hawaii 7996’ interactions. Scientific Reports, v. 11, p. 18719. https://doi.org/10.1038/s41598-021-97854-8
ALEKCEVETCH, J.C.; de Lima Passianotto, A.L.; Ferreira, E.G.C.; Dos Santos, A.B.; Da Silva, D.C.G.; Dias, W.P.; Belzile, F.; Abdelnoor, R.V.; Marcelino-Guimarães, F.C. (2021). Genome-wide association study for resistance to the Meloidogyne javanica causing root-knot nematode in soybean. Theoretical and Applied Genetics, v. 134, p. 777-792. https://doi.org/10.1007/s00122-020-03723-9
ARAUJO SOUSA, B.; Nascimento Silva, O.; Farias Porto, W.; Lima Rocha, T.; Paulino Silva, L.; Ferreira Leal, A.P.; Buccini, D.F.; Oluwagbamigbe Fajemiroye, J.; de Araujo Caldas, R.; Franco, O.L.; Grossi-De-Sá, M.F.; de La Fuente Nunez, C.; Moreno, S.E. (2021). Identification of the active principle conferring anti inflammatory and antinociceptive properties in bamboo plant. Molecules, v. 26, p. 3054. https://doi.org/10.3390/molecules26103054
ARAUJO, A.C.G.; Guimaraes, P.M.; Guimaraes, L.A.; Martins, A.C.Q ; Mota, A.P.Z; Pereira, B.M.; Brasileiro, A.C.M. (2021). Overexpression of Duf538 from Wild Arachis enhances plant resistance to Meloidogyne spp. Agronomy-Basel, v.11, p.559. https://doi.org/10.3390/agronomy11030559
ARRAES, F.B.M.; Martins-de-Sa, D.; Noriega Vasquez, D.D.; Melo, B.P.; Faheem, M.; de Macedo, L.L.P.; Morgante, C.V.; Barbosa, J.A.R.G.; Togawa, R.O.; Moreira, V.J.P.; Danchin, E.G.J.; Grossi-de-Sa, M.F. (2021). Dissecting protein domain variability in the core RNA interference machinery of five insect orders. RNA Biology, v. 18, p. 1653-1681. https://doi.org/10.1080/15476286.2020.1861816
BASSO, M.F.; Costa, J.A.; Ribeiro, T.P.; Arraes, F.B.M.; Lourenço-Tessutti, I.T.; Macedo, A.F.; Neves, M.R.; Nardeli, S.M.; Arge, L.W.; Perez, C.E.A.; Silva, P.L.R; De Macedo, L.L.P.; Lisei-de-Sa, M.E.; Amorim, R.M.A.; Pinto, E.R.C.; Silva, M.C.M.; Morgante, C.V.; Floh, E.I.S.; Alves-Ferreira, M.; Grossi-de-Sa, M.F. (2021). Overexpression of the CaHB12 transcription factor in cotton (Gossypium hirsutum) improves drought tolerance. Plant Physiology and Biochemistry, v. 165, p. 80-93. https://doi.org/10.1016/j.plaphy.2021.05.009
BRASILEIRO, A.C.M.; Lacorte, C; Pereira, B.M.; Oliveira, T.N.; Ferreira, D.S.; Mota, A.P.Z.; Saraiva, M.A.P.; Araujo, A.C.G.; Silva, L.P.; Guimaraes, P.M. (2021). Ectopic expression of a gene from wild enhances tolerance to both abiotic and biotic stresses. Plant Journal, v.1, p. tpj.15409. https://doi.org/10.1111/tpj.15409
CABRAL, D.; Forero Ballesteros, H.; de Melo, B.P.; Lourenço-Tessutti, I.T.; Smões de Siqueira, K.M.; Obicci, L.; Grossi-de-Sa, M.F.; Hemerly, A.S.; de Almeida Engler, J. (2021). The armadillo BTB protein ABAP1 is a crucial player in DNA replication and transcription of nematode-induced galls. Frontiers in Plant Science, v. 12, p. 636663. https://doi.org/10.3389/fpls.2021.636663
CABRAL, L.M.; Masuda, H.P.; Ballesteros, H.F.; de Almeida-Engler, J.; Alves-Ferreira, M.; de Toni, K.L.G.; Bizotto, F.M.; Ferreira, P.C.G.; Hemerly, A.S. (2021). ABAP1 plays a role in the differentiation of male and female gametes in Arabidopsis thaliana. Frontiers in Plant Science, v.12, p. https://doi.org/10.3389/fpls.2021.642758
CAPELARI, E.F.; dos Anjos, L.; Rodrigues, N.F.; Sousa, R.M.D.J.; Silvera, J.A.G.; Margis, R. (2021). Transcriptional profiling and physiological responses reveal new insights into drought tolerance in a semiarid adapted species, Anacardium occidentale. Plant Biology, v. 23, p. 1–12. https://doi.org/10.1111/plb.13312
DE MAGALHÃES DA FONSECA, G.; Nardino, M.; da Luz, V.K.; de Oliveira, V.F.; de Magalhães Da Fonseca, M.; de Magalhães Bandeira, J.; de Magalhães Júnior, A.M.; da Maia, L.C.; de Oliveira, A.C. (2021). Gene introgression for imidazolinone group chemical herbicide tolerance. Cereal Research Communications, v. 49, p. 457-463. https://doi.org/10.1007/s42976-020-00126-w
DE OLIVEIRA MAXIMINO, J.V.; Barros, L.M.; Pereira, R.M.; de Santi, I.I.; Aranha, B.C.; Busanello, C.; Viana, V.E.; Freitag, R.A.; Batista, B.L.; Costa de Oliveira, A.; Pegoraro, C. (2021). Mineral and fatty acid content variation in white oat genotypes grown in Brazil. Biological Trace Element Research, v. 199, p. 1194-1206. https://doi.org/10.1007/s12011-020-02229-1
DE OLIVEIRA, V.F.; Busanello, C.; Viana, V.E.; Stafen, C.F.; Pedrolo, A.M.; Paniz, F.P.; Pedron, T.; Pereira, R.M.; Rosa, S.A.; de Magalhães Junior, A.M.; Costa de Oliveira, A.; Batista, B.L.; Pegoraro, C. (2021). Assessing mineral and toxic elements content in rice grains grown in southern Brazil. Journal of Food Composition and Analysis, v. 100, p. 103914. https://doi.org/10.1016/j.jfca.2021.103914
ERLANDSON, S.R.; Margis, R.; Ramirez, A.; Nguyen, N.; Lofgren, L.A.; Liao, H.; Vilgalys, R.; Kennedy, P.G.; Peay, K.G. (2021). Transcriptional acclimation and spatial differentiation characterize drought response by the ectomycorrhizal fungus Suillus pungens. New Phytologist. https://doi.org/10.1111/nph.17816.
FAILLACE, G.R.; Caruso, P.B.; Timmers, L.F.S.M.; Favero, D.; Guzman, F.L.; Rechenmacher, C.; Oliveira-Busatto, L.A.; Souza, O.N.; Bredemeier; C.; Bodanese-Zanettini, M.H. (2021). Molecular characterisation of soybean Osmotins and their involvement in drought stress response. Frontiers in Genetics, v.12, p.632685. https://doi.org/10.3389/fgene.2021.632685
FREITAS, K.J.; dos Santos, R.S.; Busanello, C.; Victoria, F.C.; Lopes, J.L.; Wing, R.; de Oliveira, A.C. (2021). Starch synthesis-related genes (SSRG) evolution in the genus Oryza. Plants, v. 10, p. 1-15. https://doi.org/10.3390/plants10061057
GALBIERI, R.; Kobayasti, L.; Albuquerque, M.C.F.; de Sá, R.O.; Dutra, S.G.; Boldt, A.S.; Timper, P. (2021). Castor bean as an option for management in cotton. International Journal of Pest Management, v. 67, p. 1-9. https://doi.org/10.1080/09670874.2021.1953633
GARIGHAN, J.; Dvorak, E.; Estevan, J.; Loridon, K.; Huettel, B.; Sarah, G.; Farrera, I.; Leclercq, J.; Grynberg, P.; Coiti Togawa, R.; Mota Do Carmo Costa, M.; Costes, E.; Andrés, F. (2021). The identification of small RNAs differentially expressed in apple buds reveals a potential role of the Mir159-MYB regulatory module during dormancy. Plants, v. 10, p. 2665. https://doi.org/10.3390/plants10122665
GODINHO MENDES, R.A.; Basso, M.F.; Fernandes de Araújo, J.; Paes De Melo, B.; Lima, R.N.; Ribeiro, T.P.; da Silva Mattos, V.; Saliba Albuquerque, E.V.; Grossi-De-Sa, M.; Dessaune Tameirao, S.N.; da Rocha Fragoso, R.; Mattar da Silva, M.C.; Vignols, F.; Fernandez, D.; Grossi-De-Sa, M.F. (2021). Minc00344 and Mj-NULG1a effectors interact with GmHub10 protein to promote the soybean parasitism by Meloidogyne incognita and M. javanica. Experimental Parasitology, v. 229, p. 108153. https://doi.org/10.1016/j.exppara.2021.108153
KHANAL, C.; Galbieri, R.; Timper, P. (2021). Rotations with Crotalaria spp. do not suppress populations of Meloidogyne incognita in cotton. Nematology, v. 23, p. 1-9. https://doi.org/10.1163/15685411-bja10086
LISEI-DE-SÁ, M.E.; Rodrigues-Silva, P.L.; Morgante, C.V.; de Melo, B.P.; Lourenço-Tessutti, I.T.; Arraes, F.B.M.; Sousa, J.P.A.; Galbieri, R.; Amorim, R.M.S.; de Lins, C.B.J.; Macedo, L.L.P.; Moreira, V.J.; Ferreira, G.F.; Ribeiro, T.P.; Fragoso, R.R.; Silva, M.C.M.; de Almeida-Engler, J.; Grossi-de-Sa, M.F. (2021). Pyramiding dsRNAs increases phytonematode tolerance in cotton plants. Planta, v. 254, p. 121. https://doi.org/10.1007/s00425-021-03776-0
MALTZAHN, L.E.; Zenker, S.G.; Lopes, J.U.; Pereira, R.M.; Verdi, C.A.; Rother, V.; Busanello, C.; Viana, V.E.; Batista, B.L.; de Oliveira, A.C.; Pegoraro, C. (2021). Brazilian genetic diversity for desirable and undesirable elements in the wheat grain. Biological Trace Element Research, v. 199, p. 2351-2365. https://doi.org/10.1007/s12011-020-02338-x
MENDES BEZERRA, A.C.; da Cunha Valença, D.; Junqueira, N.E.G.; Hüther, C.M.; Borella, J.; Ferreira De Pinho, C.; Ferreira, M.A.; Medici, L.O.; Ortiz-Silva, B.; Reinert, F. (2021). Potassium supply promotes the mitigation of NaCl-induced effects on leaf photochemistry, metabolism and morphology of Setaria viridis. Plant Physiology and Biochemistry, v.160, p.1. https://doi.org/10.1016/j.plaphy.2021.01.021
MENDES, R.A.G.; Basso, M.F.; Paes-de-Melo, B.; Ribeiro, T.P.; Lima, R.N.; Araujo, J.F.; Grossi-de-Sa, M.; Mattos, V.S.; Togawa, R.C.; Albuquerque, E.V.S.; Lisei-de-Sa, M.E.; Silva, M.C.M.; Macedo, L.L.P.; Fragoso, R.R.; Fernandez, D.; Vignols, F.; Grossi-de-Sa, M.F. (2021). The Mi-EFF1/Minc17998 effector interacts with the soybean GmHub6 protein to promote host plant parasitism by Meloidogyne incognita. Physiological and Molecular Plant Pathology, v. 114, p. 101630. https://doi.org/10.1016/j.pmpp.2021.101630
MICHEREFF, M.F.F.; Grynberg, P.; Togawa, R.C.; Costa, M.M.C.; Laumann, R.A.; Zhou, J.-J.; Schimmelpfeng, P.H.C.; Borges, M.; Pickett, J.A.; Birkett, M.A.; Blassioli-Moraes, M.C. (2021). Priming of indirect defence responses in maize is shown to be genotype-specific. Arthropod-Plant Interactions, v. 15, p. 313-328. https://doi.org/10.1007/s11829-021-09826-4
MOREIRA-PINTO, C.E.; Coelho, R.R.; Leite, A.G.B.; Silveira, D.A.; Souza, D.A.; Lopes, R.B.; Macedo, L.L.P.; Silva, M.C.M.; Ribeiro, T.P.; Antonino, J.D.; Grossi-de-Sa, M.F. (2021). Increasing Anthonomus grandis susceptibility to Metarhizium anisopliae through RNAi-induced AgraRelish knockdown: a perspective to combine biocontrol and biotechnology. Pest Management Science, v. 77, p. 4054-4063. https://doi.org/10.1002/ps.6430
MOREIRA-PINTO, C.E.; Ramos Coelho, R.; Borges Leite, A.G.; Amaral Silveira, D.; Aguiar Souza, D.; Biaggioni Lopes, R.; Macedo, L.L.P.; Mattar Silva, M.C.; Ribeiro, T.P.; Morgante, C.V.; Antonino, J.D.; Grossi-de-Sa, M.F. (2021). Increasing susceptibility to through-induced knockdown: a perspective to combine biocontrol and biotechnology. Pest Management Science, v. 77, p. ps.6430. https://doi.org/10.1002/ps.6430
MOTA, A.P.Z.; Brasileiro, A.C.M.; Vidigal, B.; Oliveira, T.N.; da Cunha Quintana Martins, A.; Saraiva, M.A.P.; de Araújo, A.C.G.; Togawa, R.C.; Grossi-de-Sá, M.F.; Guimaraes, P.M. (2021). Defining the combined stress response in wild Arachis. Scientific Reports, v. 11, p. 11097. https://doi.org/10.1038/s41598-021-90607-7
NETO, M.C.L.; Carvalho, F.E.L.; Souza, G.M.; Silveira, J.A.G. (2021). Understanding photosynthesis in a spatial-temporal multiscale: The need for a systemic view. Theoretical and Experimental Plant Physiology, v. 33, p. 113-124. https://doi.org/10.1007/s40626-021-00199-w
NIZOLLI, V.O.; Pegoraro, C.; Oliveira, A.C. (2021). Rice blast: strategies and challenges for improving genetic resistance. Crop Breeding and Applied Biotechnology, v. 21, p. e387721S9. https://doi.org/10.1590/1984-70332021v21Sa22
PAES DE MELO, B.; Lourenço-Tessutti, I.T.; Fraga, O.T.; Pinheiro, L.B.; de Jesus Lins, C.B.; Morgante, C.V.; Engler, J.A.; Reis, P.A.B.; Grossi-De-Sá, M.F.; Fontes, E.P.B. (2021). Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses. Scientific Reports, v. 11, p. 11178. https://doi.org/10.1038/s41598-021-90767-6
PAES DE MELO, B.; Moura, S.M.; Morgante, C.V.; Pinheiro, D.H.; Alves, N.S.F.; Rodrigues-Silva, P.L.; Lourenço-Tessutti, I.T.; Andrade, R.V.; Fragoso, R.R.; Grossi-de-Sa, M.F. (2021). Regulated promoters applied to plant engineering: an insight over promising soybean promoters under biotic stress and their cis-elements. Biotechnology Research and Innovation, v. 5, p. e2021005. http://dx.doi.org/10.4322/biori.202105
RIBEIRO, T.P.; Lourenço-Tessutti, I.T.; De Melo, B.P.; Morgante, C.V.; Filho, A.S.; Lins, C.B.J.; Ferreira, G.F.; Mello, G.N.; Macedo, L.L.P.; Lucena, W.A.; Silva, M.C.M.; Oliveira-Neto, O.B.; Grossi-de-Sa, M.F. (2021). Improved cotton transformation protocol mediated by Agrobacterium and biolistic combined-methods. Planta, v. 254, p. 20. https://doi.org/10.1007/s00425-021-03666-5
RODRIGUES-SILVA, P.L.; Amorim, G.C.; Andrade, I.E.P.C.; Cunha, V.A.; Figueiredo, L.H.M.; Grossi-de-Sa, M.F. (2021). Monitoramento tecnológico da planta cagaita (Eugenia dysenterica) e aplicações biotecnológicas potenciais. Cadernos de Prospecção, v. 14, p. 1248-1264. https://doi.org/10.9771/cp.v14i4.38459
RODRIGUES-SILVA, P.L.; Fernandes, P.B.B.; Rodrigues, M.T.; Figueiredo, L. H. M.; Grossi-de-Sa, M.F. (2021). Tendências quanto ao conhecimento e às aplicações biotecnológicas do Psidium guineense evidenciadas pelo monitoramento tecnológico. Cadernos de Ciência & Tecnologia, v. 38, p. e26704. https://doi.org/10.35977/0104-1096.cct2021.v38.26704
SALGADO, F.F.; Vieira, L.R.; Silva, V.N.B.; Leão, A.P.; Grynberg, P.; do Carmo Costa, M.M.; Togawa, R.C.; de Sousa, C.A.F.; Júnior, M.T.S. (2021). Expression analysis of miRNAs and their putative target genes confirm a preponderant role of transcription factors in the early response of oil palm plants to salinity stress. BMC Plant Biology, v. 21, p. 518. https://doi.org/10.1186/s12870-021-03296-9
SILVA SANTOS, A.; de Andrade, E.M.; de Oliveira Sousa, A.R.; do Carmo Costa, M.M.; Togawa, R.; Grynberg, P.; Pirovani, C.P.; Santos Oliveira, S.A.; dos Santos Soares Filho, W.; Filho, M.A.C.; da Silva Gesteira, A.; Ferreira, C.F. (2021). Transcriptome profile of drought responsive candidate genes in varieties of citrus rootstocks with different tolerance strategies. Scientia Horticulturae, v. 277, p. 109838. https://doi.org/10.1016/j.scienta.2020.109838
SILVA, A.V.V.; Vaz, C.M.; Ferreira, E.J.; Galbieri, R. (2021). Classification based on rules for the study of cotton productivity in the state of Mato Grosso. Revista de Informática Teórica e Aplicada: Rita, v. 28, p. 66-89. https://doi.org/10.22456/2175-2745.108126
SOARES, J.M.; Rocha, A.J.; Nascimento, F.S.; Santos, A.S.; Miller, R.N.G.; Ferreira, C.F.; Haddad, F.; Amorim, V.B.; Amorim, E.P. (2021). Genetic improvement for resistance to Black Sigatoka in bananas: a systematic review. Frontiers in Plant Science, v. 12, p. 657916. https://doi.org/10.3389/fpls.2021.657916
SOUSA, R.T.; Paiva, A.L.S.; Carvalho, F.E.L.; Alencar, V.T.C.B.; Silveira, J.A.G. (2021). Ammonium overaccumulation in senescent leaves as a novel exclusion mechanism to avoid toxicity in photosynthetically active rice leaves. Environmental and Experimental Botany, v. 186, p. 104452. https://doi.org/10.1016/j.envexpbot.2021.104452
TRAVASSOS-LINS, J.; De Oliveira Rocha, C.C.; De Souza Rodrigues, T.; Alves-Ferreira, M. (2021). Evaluation of the molecular and physiological response to dehydration of two accessions of the model plant Setaria viridis. Plant Physiology and Biochemistry, v.169, p. 43. https://doi.org/10.1016/j.plaphy.2021.11.015
VALERIANO, F.R.; de Moura, S.M.; Travassos-Lins, J.; Alves-Ferreira, M.; Vieira, R.C.; Ortiz-Silva, B.; Reinert, F. (2021). Evaluation of Setaria viridis responses to salt treatment and potassium supply: a characterization of three contrasting accessions. Brazilian Journal of Botany, v. 44, p. 821–836. https://doi.org/10.1007/s40415-021-00773-1
VIANA, V.E.; Carlos da Maia, L.; Busanello, C.; Pegoraro, C.; Costa de Oliveira, A. (2021). When rice gets the chills: comparative transcriptome profiling at germination shows WRKY transcription factor responses. Plant Biology, v. 23, p. 100-112. https://doi.org/10.1111/plb.13262
ANTON, D.B.; Guzman, F.L.; Vetö, N.M.; Krause, F.A.; Kulcheski, F.R.; Coelho, A.P.D.; Duarte, G.L.; Margis, R.; Dillenburg, L.R.; Turchetto-Zolet, A.C. (2020). Characterization and expression analysis of P5CS (Δ1 ‑ pyrroline ‑ 5 ‑ carboxylate synthase) gene in two distinct populations of the Atlantic Forest native species Eugenia uniflora L. Molecular Biology Reports. v. 47, p. 1033–1043. https://doi.org/10.1007/s11033-019-05195-7
ARAUJO, A.C.; Fonseca, F.C.A.; Cotta, M.G.; Alves, G.S.C.; Miller, R.N.G. (2020). Plant NLR receptor proteins and their potential in the development of durable genetic resistance to biotic stresses. Biotechnology Research and Innovation, v. 3, p. 80-94. https://doi.org/10.1016/j.biori.2020.01.002
BABILONIA, K.; Wang, P.; Liu, Z.; Jamieson, P.; Mormile, B.; Rodrigues, O.; Zhang, L.; Lin, W.; Clement, C.D.; Moura, S.M.; Alves Ferreira, M.; Finlayson, S.A.; Nichols, R.L.; Wheeler, T.A.; Dever, J.K.; Shan, L.; He, P. (2020). A non-proteinaceous Fusarium cell wall extract triggers receptor-like protein-dependent immune responses in Arabidopsis and cotton. New Phytologist, v. 229, p. 1. https://doi.org/10.1111/nph.17146
BASSO, M.F.; Arraes, F.B.M.; Grossi-de-Sa, M.; Vaz-Moreira, V.J.; Alves-Ferreira, M.; Grossi-de-Sa, M.F. (2020). Insights into genetic and molecular elements for transgenic crop development. Frontiers in Plant Science, v. 11, p. 509. https://doi.org/10.3389/fpls.2020.00509
BASSO, M.F.; Lourenço-Tessutti, I.T.; Busanello, C.; Pinto, C.E.M.; Oliveira-Freitas, E.; Ribeiro, T.P.; Almeida-Engler, J.; Oliveira, A.C.; Morgante, C.V.; Alves-Ferreira, M.; Grossi-de-Sa, M.F. (2020). Insights obtained using different modules of the cotton uceA1.7 promoter. Planta, v. 251, p. 56. https://doi.org/10.1007/s00425-020-03348-8
BASSO, M.F.; Lourenço-Tessutti, I.T.; Mendes, R.A.G.; Pinto, C.E.M.; Bournaud, C.; Gillet, F.X.; Togawa, R.C.; Macedo, L.L.P.; Almeida-Engler, J.; Grossi-de-Sa, M.F. (2020). MiDaf16-like and MiSkn1-like gene families are reliable targets to develop biotechnological tools for the control and management of Meloidogyne incognita. Scientific Reports, v. 10, p. 6991. https://doi.org/10.1038/s41598-020-63968-8
BELOT, J.L.; Vilela, P.; Galbieri, R.; Scoz, L. B.; Boldt, Alberto S.; Franzon, R. C.; Leoni, I.; Rizzi, U.; Souza, M. (2020). IMA 5801B2RF, insect-resistant and glyphosate-tolerant cotton cultivar, with resistance to root-knot nematode. Crop Breeding and Applied Biotechnology, v. 20, p. e322920412. https://doi.org/10.1590/1984-70332020v20n4c65
BEVITORI, R.; Sircar, S.; Mello, R.N.; Togawa, R.C.; Cortes, M.V.C.B.; Oliveira, T.S.; Grossi-de-Sa, M.F.; Parekh, N. (2020). Identification of co-expression gene networks controlling rice blast disease during an incompatible reaction. Genetics Molecular Research, v. 19, p. gmr18579. https://doi.org/10.4238/gmr18579
BRITO, F.S.D.; Santos, J.R.P.; Azevedo, V.C.R.; Peixouto, Y.S.; Oliveira, S.A.; Ferreira, C.F.; Haddad, F.; Amorim, E.P.; Fraaije, B.; Miller, R.N.G. (2020). Genetic diversity and azole fungicide sensitivity in Pseudocercospora musae field populations in Brazil. Frontiers in Microbiology, v. 11, p. 99. https://doi.org/10.3389/fmicb.2020.00099
BUSANELLO, C.; Venske, E.; Stafen, C.F.; Pedrolo, A.M.; Luz, V.K.; Pedron, T.; Paniz, F.P.; Batista, B.L.; Magalhães Júnior, A.M.; Oliveira, A.C.; Pegoraro, C. (2020). Is the genetic variability of elite rice in southern Brazil really disappearing? Crop Breeding and Applied Biotechnology, v. 20, p. e262620214. https://doi.org/10.1590/1984-70332020v20n2a30
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2024
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NARDELI SM, Arge LWP, Artico S, Moura SM, Tschoeke DA, Freitas-Guedes FA, Grossi-de-Sa MF, Martinelli AP, Alves-Ferreira M (2024). Global gene expression profile and functional analysis reveal the conservation of reproduction-associated gene networks in Gossypium hirsutum. Plant Reproduction, 1, 1-16. http://dx.doi.org/10.1007/s00497-023-00491-6
SILVA RM, Thurow L, Maicon N, Oliveira VF, Lopes JL, Maltzhan LE, Venske E, Pegoraro C, Maia LC, Oliveira AC (2024). Identification of RILs for agronomic and grain quality traits in rice through intraspecific crosses. Crop Breeding and Applied Biotechnology, 24. http://dx.doi.org/10.1590/1984-70332024v24n1a05
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CASTRO-COSTA E, Bastos LS, Gomes TG, Miller RNG (2024). Reference genes for RT-qPCR analysis in Musa acuminata genotypes contrasting in resistance to Fusarium oxysporum f. sp. cubense subtropical race 4. Scientific Reports, 14, 16578. https://doi.org/10.1038/s41598-024-67538-0
GOMES TG, Barbosa EA, Alves GSC, Siqueira FG, Miller RNG (2024). Efficient Phorbol Ester Biodegradation by Pleurotus pulmonarius: Insights Following Cultivation on Jatropha Cake. Waste and Biomass Valorization, 15, 1. https://doi.org/10.1007/s12649-024-02630-0
NARDELI S, Arge LWP, Artico S, Moura SM, Tschoeke DA, Freitas-Guedes FA, Grossi-de-Sa MF, Martinelli AP, Alves-Ferreira M (2024). Global gene expression profile and functional analysis reveal the conservation of reproduction-associated gene networks in Gossypium hirsutum. Plant Reproduction, 37, 1-16. https://doi.org/10.1007/s00497-023-00491-6
SILVEIRA JA, Sousa RHV (2024). Looking for a systemic concept and physiological diagnosis of a plant stress state. Theoretical and Experimental Plant Physiology, 2, 15. https://doi.org/10.1007/s40626-024-00318-3
WURLITZER WB, Labudda M, Silveira JAG, Matthes RD, Schneider JR, Ferla NJ (2024). From Signaling to Stress: How Does Plant Redox Homeostasis Behave under Phytophagous Mite Infestation? International Journal of Plant Biology, 15, 561-585. https://doi.org/10.3390/ijpb15030043
MENDES KR, Bonifácio A, Martins MO, Sousa RHV, Monteiro MV, Silveira JAG (2024). Heat shock combined with salinity impairs photosynthesis but stimulates antioxidant defense in rice plants. Environmental and Experimental Botany, 225, 105851-105862. https://doi.org/10.1016/j.envexpbot.2024.105851
BASSO MF, Neves MF, Grossi-de-Sa MF (2024). Agriculture evolution, sustainability and trends, focusing on Brazilian agribusiness: a review. Frontiers in Sustainable Food Systems, 7, 1296337. https://doi.org/10.3389/fsufs.2023.1296337
RIOS TB, Maximiano MR, Fernandes FC, Amorim GC, Porto WF, Buccini DF, Nieto-Marín V, Feitosa GC, Freitas CDP, Barra JB, Alonso A, Grossi-de-Sa MF, Lião LM, Franco OL (2024). Anti-Staphy Peptides Rationally Designed from Cry10Aa Bacterial Protein. ACS Omega, 9, 29159-29174. https://doi.org/10.1021/acsomega.3c07455
RIBEIRO TP, Martins-de-Sa D, Macedo LLP, Lourenço-Tessutti IT, Ruffo GC, Sousa JPA, Rosário-Santana JMD, Oliveira-Neto OB, Moura SM, Silva MCM, Morgante CV, Oliveira NG, Basso MF, Grossi-de-Sa MF (2024). Cotton plants overexpressing the Bacillus thuringiensis Cry23Aa and Cry37Aa binary-like toxins exhibit high resistance to the cotton boll weevil (Anthonomus grandis). Plant Science, 344, 112079. https://doi.org/10.1016/j.plantsci.2024.112079
SILVA RM, Thurow L, Maicon N, Oliveira VFD, Lopes JL, Maltzhan LE, Venske E, Pegoraro C, Maia LCD, Oliveira ACD (2024). Identification of RILs for agronomic and grain quality traits in rice through intraspecific crosses. Crop Breeding and Applied Biotechnology, 24, e46792415. https://doi.org/10.1590/1984-70332024v24n1a05
2023
REGO ECS, Pinheiro TDM, Fonseca FCDA, Gomes TG, Costa EDC, Bastos LS, Alves GSC, Cotta MG, Amorim EP, Ferreira CF, Togawa RC, Costa MMD, Grynberg P, Miller RNG (2023). Characterization of microRNAs and Target Genes in Musa acuminata subsp. burmannicoides, var. Calcutta 4 during Interaction with Pseudocercospora musae. Plants, 12, 1473. https://doi.org/10.3390/plants12071473
SILVA AS, Rennó MHL, Quitania ACR, Café-Filho AC, Miller RNG, Araújo AE, Pinho DB (2023). Ramularia leaf spot: PCR-based methods reveal widespread distribution of Ramulariopsis pseudoglycines and limited presence of R. gossypii in Brazil. Scientific Reports, 13, 9826. https://doi.org/10.1038/s41598-023-33530-3
REIS PAB, Magalhães JV, Miller RNG, Fontes EPB (2023). State-of-the-Art Molecular Plant Sciences in Brazil. International Journal of Molecular Sciences, 24, 8909. https://doi.org/10.3390/ijms24108909
DUSI DMA, Alves ER, Cabral GB, Mello LV, Rigden DJ, Silveira ÉD, Alves-Ferreira M, Guimarães LA, Gomes ACM, Rodrigues JCM, Carneiro VTC (2023). An exonuclease V homologue is expressed predominantly during early megasporogenesis in apomictic Brachiaria brizantha. Planta, 258, 1. https://doi.org/10.1007/s00425-023-04162-8
SOUZA RODRIGUES T, Arge LWP, Freitas-Guedes FA, Travassos-Lins J, Souza AP, Cocuron JC, Buckeridge MS, Grossi-de-Sa MF, Alves-Ferreira M (2023). Elevated CO₂ increases biomass of Sorghum bicolor green prop roots under drought conditions via soluble sugar accumulation and photosynthetic activity. Physiologia Plantarum, 175, 1-17. https://doi.org/10.1111/ppl.13984
GUEDES FADF, Nascimento LBD, Costa MP, Macrae A, Alves-Ferreira M, Caldana C, Reinert F (2023). Comparative Primary Metabolite Profiling of Setaria viridis Reveals Potential Markers to Water Limitation. Agriculture, 13, 660. https://doi.org/10.3390/agriculture13030660
SOUZA PVL, Hou LY, Sun H, Poeker L, Lehman M, Bahadar H, Domingues-Júnior AP, Dard A, Bariat L, Reichheld JP, Silveira JAG, Fernie AR, Timm S, Geigenberger P, Daloiso DM (2023). Plant NADPH-dependent thioredoxin reductases are crucial for the metabolism of sink leaves and plant acclimation to elevated CO₂. Plant Cell and Environment, 2, 1-21. https://doi.org/10.1111/pce.14631
BRASILEIRO ACM, Medeiros B, Mota APZ, Martins ACQ, Gimenes MA, Guimaraes PM (2023). The Stilbene Synthase Family in Arachis: A Genome-Wide Study and Functional Characterization in Response to Stress. Genes, 14, 2181. https://doi.org/10.3390/genes14122181
VASQUEZ DDN, Pinheiro DH, Teixeira LA, Moreira-Pinto CE, Macedo LLP, Salles-Filho ALO, Silva MCM, Lourenço-Tessutti IT, Morgante CV, Silva LP, Grossi-de-Sa MF (2023). Simultaneous silencing of juvenile hormone metabolism genes through RNAi interrupts metamorphosis in the cotton boll weevil. Frontiers in Molecular Biosciences, 10, 1073721. https://doi.org/10.3389/fmolb.2023.1073721
FONSECA FCDA, Antonino JD, Moura SM, Rodrigues-Silva PL, Macedo LLP, Gomes-Júnior JE, Lourenço-Tessutti IT, Lucena WA, Morgante CV, Ribeiro TP, Monnerat RG, Rodrigues MA, Cuccovia IM, Mattar-Silva MC, Grossi-de-Sa MF (2023). In vivo and in silico comparison analyses of Cry toxin activities toward the sugarcane giant borer. Bulletin of Entomological Research,113 (3), 335-346. https://doi.org/10.1017/S000748532200061X
BASSO MF, Lourenço-Tessutti IT, Moreira-Pinto CE, Mendes RAG, Pereira DG, Grandis A, Macedo LLP, Macedo AF, Gomes ACM M, Arraes FBM, Togawa RC, Carmo-Costa MM, Marcelino-Guimarães FC, Silva MCM, Floh EIS, Buckeridge MS, Almeida-Engler J, Grossi-de-Sa MF (2023). Overexpression of the GmEXPA1 gene reduces plant susceptibility to Meloidogyne incognita. Plant Cell Reports, 42, 137-152. https://doi.org/10.1007/s00299-022-02941-3
MOREIRA VJV, Pinheiro DH, Lourenço-Tessutti IT, Basso MF, Lisei-de-Sá ME, Silva MCM, Danchin EGJ, Guimarães PM, Grynberg P, Brasileiro ACM, Macedo LLP, Morgante CV, Almeida-Engler J, Grossi-de-Sa MF (2023). In planta RNAi targeting Meloidogyne incognita Minc16803 gene perturbs nematode parasitism and reduces plant susceptibility. Journal of Pest Science, 97, 411-427. https://doi.org/10.1007/s10340-023-01623-7
BASSO MF, Contaldi F, Lo-Celso F, Baratto CM, Grossi-de-Sa MF, Barone G, Ferrante A, Martinelli F (2023). Identification and expression profile of the SMAX/SMXL family genes in chickpea and lentil provide important players of biotechnological interest involved in plant branching. Planta, 259, 1-15. https://doi.org/10.1007/s00425-023-04277-y
VIDAL AH, Lacorte C, Santos JLJ, Vaslin MFS, Ribeiro S (2023). Occurrence of Bean-associated Cytorhabdovirus and Cowpea Mild Mottle Virus Infecting Cultivated and Wild Passiflora spp. in Brazil. Crop Protection, 106236. https://doi.org/10.1016/j.cropro.2023.106236
VASLIN MFS, Arruda LDB, Campos FS (2023). Surveillance, Prevention, Evolution and Control of Emerging Viruses: A 2022 Editorial Update. Viruses-Basel, 15, 2098. https://doi.org/10.3390/v15102098
BARROS LG, Avelino BB, Silva DCG, Ferreira EGC, Castanho FM, Ferreira ME, Lopes-Caitar VS, Marin SRR, Arias CAAA, Lopes ION, Abdelnoor RV, Marcelino-Guimarães FC (2023). Mapping of a soybean rust resistance in PI 594756 at the Rpp1 locus. Molecular Breeding, 1, 1-15. https://doi.org/10.1007/s11032-023-01358-4
CHICOWSKI AS, Utiyama AS, Marcelino-Guimarães FC, Whitham SA (2023). Soybean-Phakopsora pachyrhizi interactions: toward the development of next-generation disease-resistant plants. Plant Biotechnology Journal, 1, 1-20. https://doi.org/10.1111/pbi.14206
NIZOLLI VO, Oliveira VF, Maia LC, Pegoraro C, Oliveira AC (2023). Genome editing in rice: New paths for an old crop. Perspectives in Agriculture, Veterinary Science, Nutrition and Natural Resources, 1-8. https://doi.org/10.1079/cabireviews.2023.0008
NIZOLLI VO, Viana VE, Pegoraro C, Maia LC, Oliveira AC (2023). Wheat blast: The last enemy of hunger fighters. Genetics and Molecular Biology (Online Version), 46, 1-11. https://doi.org/10.1590/1678-4685-GMB-2022-0002
GUZMÁN-ARDILES RE, Pegoraro C,Maia LC, Oliveira AC (2023). Genetic changes in the genus Vitis and the domestication of vine. Frontiers in Plant Science, 13, 1-13. https://doi.org/10.3389/fpls.2022.1019311
MONZÓN DLR, Cantero J, Danielowski R, Luz VK, Venske E, Mota MS, Silva RM, Oliveira VF, Oliveira AC, Magalhães-Júnior AM, Maia LC (2023). An optimized index for cold tolerance assessment in rice during germination and early seedling stage. Journal of Crop Science and Biotechnology (Seoul), 26, 243-253. https://doi.org/10.1007/s12892-022-00175-z
SCHMIDT AL, Carvalho IR, Silva JAG, Lângaro NC, Oliveira AC, Pradebon LC, Loro MV, Roza JPD, Bruinsma GMW (2023). Decomposition of Phenotypic Variation of White Oats by Meteorological and Geographic Covariables. Agronomy Journal, 115, 1600. https://doi.org/10.1002/agj2.21429
THUROW LB, Silva RM, Venske E, Ceolin GP, De Oliveira VF, Stülp C, Figueiredo RG, Tessmann EW, Maia LC, Oliveira AC (2023). Playing with plant height and spike number in Brazilian wheat: an applied study on early-generation selection effects. Journal of Crop Science and Biotechnology (Seoul), 23, 218. https://doi.org/10.1007/s12892-023-00218-z
FELIPEZ W, Villavicencio J, Nizolli VO, Pegoraro C, Maia LC, Oliveira AC (2023). Genome-wide identification of Bilberry WRKY transcription factors: go wild and duplicate. Plants, 12, 3176. https://doi.org/10.3390/plants12183176
OLIVEIRA VF, Venske E, Stafen CF, Pedron T, Pereira RM, Magalhães-Júnior AM, Maia LC, Oliveira ACd, Batista BL, Pegoraro C (2023). Genome-wide association of iron content in rice grains grown in Southern Brazil. Pesquisa Agropecuária Brasileira, 58, e03203. https://doi.org/10.1590/S1678-3921.pab2023.v58.03203
OLIVEIRA AC, Vanavichit A (2023). Editorial: Generating useful genetic variation in crops by induced mutation, volume III. Frontiers in Plant Science, 14, 1-2. https://doi.org/10.3389/fpls.2023.1301977
RIBEIRO DG, Bezerra ACM, Santos IR, Grynberg P, Fontes W, Castro MDS, Sousa MV, Lisei-de-Sá ME, Grossi-de-Sa MF, Franco OL, Mehta A (2023). Proteomic insights of cowpea response to combined biotic and abiotic stresses. Plants (Basel), 12(9):1900. https://doi.org/10.3390/plants12091900
ATELLA AL, Grossi-de-Sa MF, Alves-Ferreira M (2023). Cotton promoters for controlled gene expression. Electronic Journal of Biotechnology, 62, 10.1. https://doi.org/10.1016/j.ejbt.2022.12.002
BALBINOTT N, Margis R (2023). The many faces of lysine acylation in proteins: Phytohormones as unexplored substrates. Plant Science, 336, 111866. https://doi.org/10.1016/j.plantsci.2023.111866
CADAVID IC, Balbinott N, Margis R (2023). Beyond transcription factors: more regulatory layers affecting soybean gene expression under abiotic stress. Genetic and Molecular Biology (online version), 46, 1-16. https://doi.org/10.1590/1678-4685-GMB-2022-0166
CARVALHO TS, Silva CAD, Martins CF, Silva LL, Zanuncio JC, Serrão JE (2023). Morphology and morphometry of the reproductive tract of the cotton boll weevil after prolonged feeding on alternative diets. Insects, 14, 571. https://doi.org/10.3390/insects14060571
FAUSTINO RF, Silva CAD, Zanuncio JC, Pereira JR, Pereira AIA (2023). Mortality of the cotton boll weevil in drip and sprinkler irrigated cotton crops. Brazilian Journal of Biology (online), 83, e20210062. https://doi.org/10.1590/1519-6984.248154
GOMES TA, Fonseca FCA, Alaves GSC, Siqueira FG, Miller RNG (2023). Development of reference genes for RT-qPCR analysis of gene expression in Pleurotus pulmonarius for biotechnological applications. Scientific Reports, 13, 1. https://doi.org/10.1038/s41598-023-39115-4
GUPTA YK, Marcelino-Guimarães FC, Lorrain C, Farmer A, Haridas S, Ferreira EGC, Lopes-Caitar VS, Oliveira LS, Morin E, Widdison S, Cameron C, Inoue Y, Thor K, Robinson K, Drula E, Henrissat B, LaButti KM, Bini AMR, Paget E, Singan V, Daum C, Dorme C, Hoek MV, Janssen A, Chandat L, Tarriotte Y, Richardson J, Melo BVA, Wittenberg AHJ, Schneiders H, Peyrard S, Zanardo LG, Holtman VC, Coulombier-Chauvel F, Link TI, Balmer D, Müller AN, Kind S, Bohnert S, Wirtz L, Chen C, Yan M, Ng V, Gautier P, Meyer MC, Voegele RT, Liu Q, Grigoriev IV, Conrath U, Brommonschenkel SH, Loehrer M, Schaffrath U, Sirven C, Scalliet G, Duplessis S, Esse HP (2023). Major proliferation of transposable elements shaped the genome of the soybean rust pathogen Phakopsora pachyrhizi. Nature Communications, 14, 1835. https://doi.org/10.1038/s41467-023-37551-4
JARDIM-MESSEDER D, Caverzan A, Balbinott N, Menguer PK, Paiva ALS, Lemos M, Cunha JR, Gaeta ML, Costa M, Zamocky M, Saibo NJM, Silveira JAG, Margis R, Margis-Pinheiro M (2023). Stromal ascorbate peroxidase (OsAPX7) modulates drought stress tolerance in rice (Oryza sativa). Antioxidants, 12, 387. https://doi.org/10.3390/antiox12020387
PAULA DP, Timbó RV, Togawa RC, Vogler AP, Andow DA (2023). Quantitative prey species detection in predator guts across multiple trophic levels by mapping unassembled shotgun reads. Molecular Ecology Resources, 23(1), 64-80. https://doi.org/10.1111/1755-0998.13690
PEREIRA BM, Arraes FBM, Martins ACQ, Freitas-Alves NS, Melo BP, Morgante CV, Saraiva MAP, Grossi-de-Sa MF, Guimarães PM, Brasileiro ACM (2023). A novel soybean hairy root system for gene functional validation. PLoS One, 18, e0285504. https://doi.org/10.1371/journal.pone.0285504
RIBEIRO C, Melo BP, Lourenço-Tessutti IT, Ballesteros HF, Ribeiro KVG, Menuet K, Heyman J, Hemerly A, Grossi-de-Sa MF, Veylder L, Engler JA (2023). The regeneration conferring transcription factor complex ERF115-PAT1 coordinates a wound-induced response in root-knot nematode induced galls. New Phytologist. https://doi.org/10.1111/nph.19399
ROCHA G, Queiroz PRM, Grynberg P, Togawa RC, Lima-Ferreira ADC, Nascimento IN, Gomes ACM, Monnerat R (2023). Biocontrol potential of bacteria belonging to the Bacillus subtilis group against pests and diseases of agricultural interest through genome exploration. Antonie van Leeuwenhoek International Journal of General and Molecular Microbiology, 116, 599-614. https://doi.org/10.1007/s10482-023-01822-3
SOUZA PVL, Hou L, Sun H, Poeker L, Lehman M, Bahadar HUM, Domingues-Junior ADP, Dard AV, Bariat L, Reichheld JP, Silveira JAG, Fernie AR, Timm S, Geigenberger P, Daloso DM (2023). Plant NADPH-dependent thioredoxin reductases are crucial for the metabolism of sink leaves and plant acclimation to elevated CO₂. Plant Cell and Environment, 2, 1-21. https://doi.org/10.1111/pce.14111
SOUSA RHV, Carvalho FE, Daloso DM, Lima-Melo Y, Margis-Pinheiro M, Komatsu S, Silveira JAG (2023). Impairment in photosynthesis induced by CAT inhibition depends on the intensity of photorespiration and peroxisomal APX expression in rice. Plant Physiology and Biochemistry, 203, 108066. https://doi.org/10.1016/j.plaphy.2023.108066
SOUZA VHM, Philadelphia SM, Galbieri R, Sonawala U, Eves-Van DAS (2023). An emergent plant-parasitic nematode in Brazil: Current status and research perspectives. Plant Pathology, 00, 1-14. https://doi.org/10.1111/ppa.13829
TRENZ TS, Turchetto-Zolet AC, Margis R, Margis-Pinheiro M, Maraschin FS (2023). Functional analysis of alternative castor bean DGAT enzymes. Genetics and Molecular Biology (Online Version), 46, 1-12. https://doi.org/10.1590/1678-4685-GMB-2022-0097
VARGAS LN, Nochi ARF, Castro PS, Cunha ATM, Silva TCF, Togawa RC, Silveira MM, Caetano AR, Franco MM (2023). Differentially methylated regions identified in bovine embryos are not observed in adulthood. Animal Reproduction, 23, 64-80. https://doi.org/10.1590/1984-3143-AR2022-0076
2022
ANDRADE, M. C.; Alves, G. S. C.; Fontes, P. R.; Miller, R. N. G.; Filho, E. X. F. (2022). Hydrothermal treatment of coffee residues for the production of pectinases by Paecilomyces formosus. Waste and Biomass Valorization, v. 1, p. 1. https://doi.org/10.1007/s12649-022-01981-w
ARRAES, F.B.M.; Vasquez, D.D.N.; Tahir, M.; Pinheiro, D.H.; Faheem, M.; Freitas-Alves, N.S.; Moreira-Pinto, C.E.; Moreira, V.J.V.; Paes-de-Melo, B.; Lisei-de-Sa, M.E.; Morgante, C.V.; Mota, A.P.Z.; Lourenço-Tessutti, I.T.; Togawa, R.C.; Grynberg, P.; Fragoso, R.R.; de Almeida-Engler, J.; Larsen, M.R.; Grossi-de-Sa, M.F. (2022). Integrated omic approaches reveal molecular mechanisms of tolerance during soybean and Meloidogyne incognita interactions. Plants, v. 11, n. 2744. https://doi.org/10.3390/plants11202744
BALBINOTT, N.; Rodrigues, N.F.; Guzman, F.L.; Turchetto-Zolet, A.C.; Margis, R. (2022). Perspectives in Myrtaceae evolution from plastomes and nuclear phylogenies. Genetics and Molecular Biology, v. 45, p. 1–13. https://doi.org/10.1590/1678-4685-gmb-2021-0191
BALBINOTT, N.; Margis, R. (2022). Review: unraveling the origin of the structural and functional diversity of plant cystatins. Plant Science, v. 322, p. 111342. https://doi.org/10.1016/j.plantsci.2022.111342
BASSO, M.F.; Lourenço-Tessutti, I.T.; Moreira-Pinto, C.E.; Mendes, R.A.G.; Pereira, D.G.; Grandis, A. Macedo, L.L.P.; Macedo, A.F.; Gomes, A.C.M.M.; Arraes, F.B.M.; Togawa, R.C.; Costa, M.M.C.C.; Marcelino-Guimaraes, F.C.; Silva, M.C.M.; Floh, E.I.S.; Buckeridge, M.S.; de Almeida Engler, J.; Grossi-de-Sa, M.F. (2022). Overexpression of the GmEXPA1 gene reduces plant susceptibility to Meloidogyne incognita. Plant Cell Reports. https://doi.org/10.1007/s00299-022-02941-3
BASSO, M. F.; Lourenço-Tessutti, I. T.; Moreira-Pinto, C. E.; Mendes, R. A. G.; Paes-de-Melo, B.; das Neves, M. R.; Macedo, A. F.; Figueiredo, V.; Grandis, A.; Macedo, L. L. P.; Arraes, F. B. M.; do Carmo Costa, M. M.; Togawa, R. C.; Enrich-Prast, A.; Marcelino-Guimaraes, F. C.; Gomes, A. C. M. M.; Silva, M. C. M.; Floh, E. I. S.; Buckeridge, M. S.; de Almeida Engler, J.; Grossi-de-Sa, M. F. (2022). Overexpression of a soybean globin (GmGlb1-1) gene reduces plant susceptibility to Meloidogyne incognita. Planta, v. 256, p. 1. https://doi.org/10.1007/s00425-022-03992-2
BUENO, T. V.; Fontes, P. P.; Abe, V. Y.; Saito, A. U.; Senra, R. L.; Oliveira, L. S.; dos Santos, A. B.; Capote Ferreira, E. G.; Darben, L. M.; de Oliveira, A. B.; Abdelnoor, R. V.; Whittham, S. A.; Fietto, L. G.; Marcelino-Guimarães, F. C. (2022). A Phakopsora pachyrhizi effector suppresses PAMP-triggered immunity and interacts with a soybean glucan endo-1,3-beta-glucosidase to promote virulence. Molecular Plant-Microbe Interactions, v. 1, p. 1-11. https://doi.org/10.1094/MPMI-12-21-0301-R
CHACON-ORTIZ, A.; Busanello, C.; Oliveira, A. C.; Maia, L. C.; Fernando, J. A.; Pegoraro, C. (2022). Use of microstructural characteristics of pollen and pistil to identify olive cultivars in Southern Brazil. Acta Scientiarum. Biological Sciences (Online), v. 44, p. e62297. https://doi.org/10.4025/actascibiolsci.v44i1.62297
CHACON-ORTIZ, A.; da Maia, L. C.; Oliveira, A. C.; Pegoraro, C. (2022). Climate-smart agriculture: utopia or reality? Acta Ambiental Catarinense, v. 19, p. 01-20. https://doi.org/10.24021/raac.v19i1.6699
CHACON-ORTIZ, A. E.; Maia, L. C.; Oliveira, A. C.; Venske, E.; Pegoraro, C. (2022). Characterization and heritability of fruit from olive cultivars in the south of Brazil. Bragantia, v. 81, p. e7022. https://doi.org/10.1590/1678-4499.20220048
COSTA, L. M. S.; VilasBoa, J.; Fett-Neto, A. G.; Rodrigues, N. F.; Bered, F.; Margis, R. (2022). Responses to submergence and recovery in seedlings of the rheophyte Dyckia brevifolia (Bromeliaceae). Environmental and Experimental Botany, v. 201, p. 104984. https://doi.org/10.1016/j.envexpbot.2022.104984
FALCÃO, L. L.; Silva-Werneck, J. O.; Albuquerque, P. S. B.; Alves, R. M.; Grynberg, P. Togawa, R. C.; Costa, M. M. C.; Brigido, M. M.; Marcellino, L. H. (2022). Comparative transcriptomics of cupuassu (Theobroma grandiflorum) offers insights into the early defense mehcanism of Moniliophthora perniciosa, the casual agent of witches' broom disease. Journal of Plant Interactions, v. 17, p. 991-1005.
FELIPEZ, W.; de Freitas, K. E. J.; dos Santos, R. S.; Yamamoto, R. R.; Costa de Oliveira, A. (2022). The roles of WRKY transcription factors in Malus spp. and Pyrus spp. Functional & Integrative Genomics, v. 22, p. 713-729. https://doi.org/10.1007/s10142-022-00886-0
FRAGOSO, R.R.; Arraes, F.B.M.; Lourenço-Tessutti, I.T.; Miranda, V.J.; Basso, M.F.; Ferreira, A.V.J.; Viana, A.A.B.; Lins, C.B.J.; Lins, P.C.; Moura, S.M.; Batista, J.A.N.; Silva, M.C.M.; Engler, G.; Morgante, C.V.; Lisei-de-Sa, M.E.; Vasques, R.M.; de Almeida-Engler J.; Grossi-de-Sa, M.F. (2022). Functional characterization of the pUceS8.3 promoter and its potential use for ectopic gene overexpression. Planta, v. 256, n. 4, p. 1-18. https://doi.org/10.1007/s00425-022-03980-6
FREITAS, K. E. J.; Busanello, C.; Viana, V. E.; Pegoraro, C.; de Carvalho Victoria, F.; da Maia, L. C.; Oliveira, A. C. (2022). An empirical analysis of mtSSRs: could microsatellite distribution patterns explain the evolution of mitogenomes in plants? Functional & Integrative Genomics, v. 22, p. 35-53. https://doi.org/10.1007/s10142-021-00815-7
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CABREIRA-CAGLIARI, C.; Bohn, B.; Dias, N.C.; Fagundes, D.G.S.; Margis-Pinheiro, M.; Bodanese-Zanettini, M.H.; Cagliari, A. (2018). Soybean (Glycine max) NF-Y (Nuclear Factor of Y Box) gene family and its potential role under stress conditions and nodulation. Journal of Plant Biology and Crop Research, v. 1, p. 1. https://doi.org/10.33582/2637-7721/1009
CARMO, L.S.T.; Martins, A.C.Q.; Martins, C.C.C.; Passos, M.A.S.; Silva, L.P.; Araújo, A.C.G.; Brasileiro, A.C.M.; Miller, R.N.G.; Guimaraes, P.M.; Mehta, A. (2018). Comparative proteomics and gene expression analysis in Arachis duranensis reveal stress response proteins associated to drought tolerance. Journal of Proteomics, v. 192, p. 299-310. https://doi.org/10.1016/j.jprot.2018.09.011
CASTRO, J.L.S.; Lima-Melo, Y.; Carvalho, F.E.L.; Feitosa, A.G.S.; Lima-Neto, M.C.; Caverzan, A.; Margis-Pinheiro, M.; Silveira, J.A.G. (2018). Ascorbic acid toxicity is related to oxidative stress and enhanced by high light and knockdown of chloroplast ascorbate peroxidases in rice plants. Theoretical and Experimental Plant Physiology, v. 30, p. 41-55. https://doi.org/10.1007/s40626-018-0100-y
FINATTO, T.; Viana, V.E.; Woyann, L.G.; Busanello, C.; Maia, L.C.; Oliveira, A.C. (2018). Can WRKY transcription factors help plants to overcome environmental challenges? Genetics and Molecular Biology, v. 41, p. 533-544. https://doi.org/10.1590/1678-4685-GMB-2017-0232
FONSECA, G.M.; Luz, V.K.; Nardino, M.; Oliveira, V.F.; Fonseca, M.M.; Scalco, C.B.; Bandeira, J.M.; Castilhos, R.M.V.; Magalhães-Jr, A.; Maia, L.C.; Oliveira, A.C. (2018). Response of rice genotypes subjected to salt stress. Communications in Plant Sciences, v. 8, p. 1. http://dx.doi.org/10.26814/cps2018013
GUILHERME, E.A.; Carvalho, F.E.L.; Daloso, D.M.; Silveira, J.A.G. (2018). Increase in assimilatory nitrate reduction and photorespiration enhances CO2 assimilation under high light-induced photoinhibition in cotton. Environmental and Experimental Botany, v. 159, p. 66-74. https://doi.org/10.1016/j.envexpbot.2018.12.012
HABIBI, P.; Soccol, C.R.; Okeefe, B.R.; Krumpe, L.R.H.; Wilson, J.; Macedo, L.L.P.; Faheem, M.; Santos, V.O.; Prado, G.Z.; Botelho, M.A.; Lacombe, S.; Grossi-de-Sa, M.F. (2018). Gene-silencing suppressors for high-level production of the HIV-1 entry inhibitor griffithsin in Nicotiana benthamiana. Process Biochemistry, v. 70, p. 45-54. https://doi.org/10.1016/j.procbio.2018.04.006
JARDIM-MESSEDER, D.; Caverzan, A.; Rauber, R.; Ribeiro, J.; Carvalho, F.E.L.; Gaeta, M.L.; Fonseca, G.C.; Costa, J.M.; Frei, M.; Silveira, J.A.G.; Margis, R.; Saibo, N.J.M.; Margis-Pinheiro, M. (2018). Thylakoidal APX modulates hydrogen peroxide content and stomatal closure in rice (Oryza sativa). Environmental and Experimental Botany, v. 150, p. 46-56. https://doi.org/10.1016/j.envexpbot.2018.02.012
LIMA, C.S.; Ferreira-Silva, S.L.; Carvalho, F.E.L.; Lima-Neto, M.C.; Aragão, R.M.; Silva, E.N.; Sousa, R.M.J.; Silveira, J.A.G. (2018). Antioxidant protection and PSII regulation mitigate photo-oxidative stress induced by drought followed by high light in cashew plants. Environmental and Experimental Botany, v. 149, p. 59-69. https://doi.org/10.1016/j.envexpbot.2018.02.001
MATTOS, B.B.; Montebianco, C.B.; Romanel, E.; Silva, Bernabé, R.B.; Simas-Tosin, F.; Souza, L.M.; Sassaki, G.L.; Barreto-Bergter, E.; Vaslin, M.F.S. (2018). A peptidogalactomannan isolated from Cladosporium herbarum induces defense-related genes in BY-2 tobacco cells. Plant Physiology and Biochemistry, v. 126, p.206-216. https://doi.org/10.1016/j.plaphy.2018.02.023
MOTTA, A.P.Z.; Vidigal B.; Danchin, E.G.J.; Togawa, R.C.; Leal-Bertioli, S.C.M.; Bertioli, D.J.; Araújo, A.C.G.; Brasileiro, A.C.M.; Guimaraes, P.M. (2018). Comparative root transcriptome of wild Arachis reveals NBS-LRR genes related to nematode resistance. BMC Plant Biology, v. 18(1), p. 159. https://doi.org/10.1186/s12870-018-1373-7
NARDELI, S.M.; Artico, S.; Aoyagi, G.M.; Moura, S.M.; Silva, T.F.; Grossi-de-Sa, M.F.; Romanel, E.; Alves-Ferreira, M. (2018). Genome-wide analysis of the MADS-Box gene family in polyploid cotton (Gossypium hirsutum) and in its diploid parental species (Gossypium arboreum and Gossypium raimondii). Plant Physiology and Biochemistry, v. 127, p. 169-184. https://doi.org/10.1016/j.plaphy.2018.03.019
PAIVA, A.L.S.; Passaia, G; Lobo, A.K.M.; Jardim-Messeder, D.; Silveira, J.A.G.; Margis-Pinheiro, M. (2018). Mitochondrial glutathione peroxidase (OsGPX3) has a crucial role in rice protection against salt stress. Environmental and Experimental Botany, v. 158, p. 12-21. https://doi.org/10.1016/j.envexpbot.2018.10.027
SALES, C.R.G.; Ribeiro, R.V.; Hayashi, A.H.; Marchiori, P.E.R.; Silva, K.I.; Martins, M.O.; Silveira, J.A.G.; Silveira, N.M.; Machado, E.C. (2018). Flexibility of C4 decarboxylation and photosynthetic plasticity in sugarcane plants under shading. Environmental and Experimental Botany, v. 149, p. 34-42. https://doi.org/10.1016/j.envexpbot.2017.10.027
SANTOS, A.A.; Silveira, J.A.G.; Bonifácio, A.; Rodrigues, A.C.; Figueiredo, M.V.B. (2018). Antioxidant response of cowpea co-inoculated with plant growth-promoting bacteria under salt stress. Brazilian Journal of Microbiology, v. 49, p. 513-521. https://doi.org/10.1016/j.bjm.2017.12.003
SANTOS, A.A.; Silveira, J.A.G.; Guilherme, E.A.; Bonifácio, A.R.; Rodrigues, A.C.; Figueiredo, M.V.B. (2018). Changes induced by co-inoculation in nitrogen-carbon metabolism in cowpea under salinity stress. Brazilian Journal of Microbiology, v. 49, p. 685-694. https://doi.org/10.1016/j.bjm.2018.01.007
SILVA, M.S.; Arraes, F.B.M.; Campos, M.A.; Grossi-de-Sa, M.; Fernandez, D.; Cândido, E.S.; Cardoso, M.H.; Franco, O.L.; Grossi-de-Sa, M.F. (2018). Review: Potential biotechnological assets related to plant immunity modulation applicable in engineering disease-resistant crops. Plant Science, v. 270, p. 72-84. https://doi.org/10.1016/j.plantsci.2018.02.013
SOUZA, P.V.L.; Lima-Melo, Y.; Carvalho, F.E.; Reichheld, J.P.; Fernie, A.R.; Silveira, J.A.G.; Daloso, D.M. (2018). Function and compensatory mechanisms among the components of the chloroplastic redox network. Critical Reviews in Plant Sciences, v. 38, p. 1-28. https://doi.org/10.1080/07352689.2018.1528409
STEIN, J.C.; Yu, Y.; Copetti, D.; Zwickl, D.J.; Zhang, L.; Zhang, C.; Chougule, K.; Gao, D.; Iwata, A.; Goicoechea, J.L.; Wei, S.; Wang, J.; Liao, Y.; Wang, M.; Jacquemin, J.; Becker, C.; Kudrna, D.; Zhang, J.; Londono, C.E.M.; Song, X.; Lee, S.; Sanchez, P.; Zuccolo, A.; Ammiraju, J.S.S. Talag, J.; Danowitz, A.; Rivera, L.F.; Gschwend, A.R.; Noutsos, C.; Wu, C.C.; Kao, S.M.; Zeng, J.W.; Wei, F.J.; Zhao, Q.; Feng, Q.; Baidouri, M.E.; Carpentier, M.C.; Lasserre, E.; Cooke, R.; Farias, D.R.; Maia, L.C.; Santos, R.S.; Nyberg, K.G.; McNally, K.L.; Mauleon, R.; Alexandrov, N.; Schmutz, J.; Flowers, D.; Fan, C.; Weigel, D.; Jena, K.K.; Wicker, T.; Chen, M.; Han, B.; Henry, R.; Hsing, Y.I.C.; Kurata, N.; Oliveira, A.C.; Panaud, O.; Jackson, S.A.; Machado, C.A.; Sanderson, M.J.; Long, M.; Ware, D.; Wing, R.A. (2018). Genomes of 13 domesticated and wild rice relatives highlight genetic conservation, turnover and innovation across the genus Oryza. Nature Genetics, v. 50, p. 285-296. https://doi.org/10.1038/s41588-018-0040-0
STRECK, E.A.; Magalhaes, A.M.; Aguiar, G.A.; Facchinello, P.K.H.; Fagundes, P.R.R.; Franco, D.F.; Nardino, M.; Oliveira, A.C. (2018). Genetic progress in 45 years of irrigated rice breeding in southern Brazil. Crop Science, v. 58, p. 1-12. https://doi.org/10.4025/actasciagron.v43i1.45767
VENSKE, E.; Stafen, C.F.; Oliveira, V.F.; Maia, L.C.; Magalhães-Jr, A.M.; Mcnally, K.l.; Oliveira, A.C.; Pegoraro, C. (2018). Genetic diversity, linkage disequilibrium, and population structure in a panel of Brazilian rice accessions. Journal of Applied Genetics, v. 2018, p. 1-5. https://doi.org/10.1007/s13353-018-0475-0
VIANA, V.E.; Busanello, C.; Maia, L.C.; Pegoraro, C.; Oliveira, A.C. (2018). Activation of rice WRKY transcription factors: an army of stress fighting soldiers? Current Opinion in Plant Biology, v. 45, p. 50-57. https://doi.org/10.1016/j.pbi.2018.07.007
VIEIRA, C.F.; Silveira, J.A.G.; Cavalcanti, F.R.; Aragão, R.M.; Silva, E.N. (2018). Integrated physiological analysis reveals that recovery capacity after salt stress withdrawal is a crucial mechanism for salt tolerance in soybean cultivars. Indian Journal of Plant Physiology, v. 23, p. 444-458. https://doi.org/10.1007/s40502-018-0395-3
VINSON, C.C.; Motta, A.P.Z.; Oliveira, T.N.; Guimaraes, L.A.; Leal-Bertioli, S.C.M.; Williams, T.C.R., Nepomuceno, A.L.; Saraiva, M.A.P.; Araújo, A.C.G.; Guimaraes, P.M.; Brasileiro, A.C.M. (2018). Early responses to dehydration in contrasting wild Arachis species. PLoS One, v. 13(5), p. e0198191. https://doi.org/10.1371/journal.pone.0198191
2017
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MOURA MC, Trentin DS, Napoleão TH, Barros MP, Xavier AS, Carneiro NP, Paiva PMG, Macedo AJ, Coelho LCBB (2017). Multi-effect of the water-soluble Moringa oleifera lectin against Serratia marcescens and Bacillus sp.: antibacterial, antibiofilm and anti-adhesive properties. Journal of Applied Microbiology, 123:861. https://doi.org/10.1111/jam.13556
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