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FAPESP 60 anos: a Ciência no desenvolvimento nacional. . São Carlos: Cubo. Disponível em: https://doi.org/10.4322/978-65-86819-27-4. Acesso em: 16 nov. 2024. , 2022
APA
FAPESP 60 anos: a Ciência no desenvolvimento nacional. (2022). FAPESP 60 anos: a Ciência no desenvolvimento nacional. São Carlos: Cubo. doi:10.4322/978-65-86819-27-4
NLM
FAPESP 60 anos: a Ciência no desenvolvimento nacional [Internet]. 2022 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.4322/978-65-86819-27-4
Vancouver
FAPESP 60 anos: a Ciência no desenvolvimento nacional [Internet]. 2022 ;[citado 2024 nov. 16 ] Available from: https://doi.org/10.4322/978-65-86819-27-4
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LIRA, Bruno Silvestre et al. SlBBX28 positively regulates plant growth and flower number in an auxin‑mediated manner in tomato. Plant Molecular Biology, p. 1-16, 2022Tradução . . Disponível em: https://doi.org/10.1007/s11103-022-01298-1. Acesso em: 16 nov. 2024.
APA
Lira, B. S., Oliveira, M. J., Shiose, L., Vicente, M. H., Souza, G. P. C., Floh, E. I. S., et al. (2022). SlBBX28 positively regulates plant growth and flower number in an auxin‑mediated manner in tomato. Plant Molecular Biology, 1-16. doi:10.1007/s11103-022-01298-1
NLM
Lira BS, Oliveira MJ, Shiose L, Vicente MH, Souza GPC, Floh EIS, Purgatto E, Nogueira FTS, Freschi L, Rossi M. SlBBX28 positively regulates plant growth and flower number in an auxin‑mediated manner in tomato [Internet]. Plant Molecular Biology. 2022 ; 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/s11103-022-01298-1
Vancouver
Lira BS, Oliveira MJ, Shiose L, Vicente MH, Souza GPC, Floh EIS, Purgatto E, Nogueira FTS, Freschi L, Rossi M. SlBBX28 positively regulates plant growth and flower number in an auxin‑mediated manner in tomato [Internet]. Plant Molecular Biology. 2022 ; 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/s11103-022-01298-1
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ZUCCARELLI, Rafael et al. Multifaceted roles of nitric oxide in tomato fruit ripening: NO-induced metabolic rewiring and consequences for fruit quality traits. Journal of Experimental Botany, v. 72, n. 3, p. 941–958, 2021Tradução . . Disponível em: https://doi.org/10.1093/jxb/eraa526. Acesso em: 16 nov. 2024.
APA
Zuccarelli, R., Ruiz, M. R., Oliveira, P. J. L., Pascoal, G. B., Andrade, S. C. S., Furlan, C. M., et al. (2021). Multifaceted roles of nitric oxide in tomato fruit ripening: NO-induced metabolic rewiring and consequences for fruit quality traits. Journal of Experimental Botany, 72( 3), 941–958. doi:10.1093/jxb/eraa526
NLM
Zuccarelli R, Ruiz MR, Oliveira PJL, Pascoal GB, Andrade SCS, Furlan CM, Purgatto E, Palma JM, Corpas FJ, Rossi M, Freschi L. Multifaceted roles of nitric oxide in tomato fruit ripening: NO-induced metabolic rewiring and consequences for fruit quality traits [Internet]. Journal of Experimental Botany. 2021 ; 72( 3): 941–958.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/jxb/eraa526
Vancouver
Zuccarelli R, Ruiz MR, Oliveira PJL, Pascoal GB, Andrade SCS, Furlan CM, Purgatto E, Palma JM, Corpas FJ, Rossi M, Freschi L. Multifaceted roles of nitric oxide in tomato fruit ripening: NO-induced metabolic rewiring and consequences for fruit quality traits [Internet]. Journal of Experimental Botany. 2021 ; 72( 3): 941–958.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/jxb/eraa526
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TOBARUELA, Eric de Castro et al. Ethylene and auxin: hormonal regulation of volatile compound production during tomato (Solanum lycopersicum L.) fruit ripening. Frontiers in Plant Science, v. 12, p. 1-16, 2021Tradução . . Disponível em: https://doi.org/10.3389/fpls.2021.765897. Acesso em: 16 nov. 2024.
APA
Tobaruela, E. de C., Gomes, B. L., Bonato, V. C. de B., Lima, E. S. de, Freschi, L., & Purgatto, E. (2021). Ethylene and auxin: hormonal regulation of volatile compound production during tomato (Solanum lycopersicum L.) fruit ripening. Frontiers in Plant Science, 12, 1-16. doi:10.3389/fpls.2021.765897
NLM
Tobaruela E de C, Gomes BL, Bonato VC de B, Lima ES de, Freschi L, Purgatto E. Ethylene and auxin: hormonal regulation of volatile compound production during tomato (Solanum lycopersicum L.) fruit ripening [Internet]. Frontiers in Plant Science. 2021 ; 12 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fpls.2021.765897
Vancouver
Tobaruela E de C, Gomes BL, Bonato VC de B, Lima ES de, Freschi L, Purgatto E. Ethylene and auxin: hormonal regulation of volatile compound production during tomato (Solanum lycopersicum L.) fruit ripening [Internet]. Frontiers in Plant Science. 2021 ; 12 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fpls.2021.765897
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ALVES, Frederico Rocha Rodrigues et al. Beyond the limits of photoperception: constitutively active PHYTOCHROME B2 overexpression as a means of improving fruit nutritional quality in tomato. Plant Biotechnology Journal, v. 18, p. 2027–2041, 2020Tradução . . Disponível em: https://doi.org/10.1111/pbi.13362. Acesso em: 16 nov. 2024.
APA
Alves, F. R. R., Lira, B. S., Pikart, F. C., Monteiro, S. S., Furlan, C. M., Purgatto, E., et al. (2020). Beyond the limits of photoperception: constitutively active PHYTOCHROME B2 overexpression as a means of improving fruit nutritional quality in tomato. Plant Biotechnology Journal, 18, 2027–2041. doi:10.1111/pbi.13362
NLM
Alves FRR, Lira BS, Pikart FC, Monteiro SS, Furlan CM, Purgatto E, Pascoal GB, Andrade SCS, Demarco D, Rossi M, Freschi L. Beyond the limits of photoperception: constitutively active PHYTOCHROME B2 overexpression as a means of improving fruit nutritional quality in tomato [Internet]. Plant Biotechnology Journal. 2020 ; 18 2027–2041.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1111/pbi.13362
Vancouver
Alves FRR, Lira BS, Pikart FC, Monteiro SS, Furlan CM, Purgatto E, Pascoal GB, Andrade SCS, Demarco D, Rossi M, Freschi L. Beyond the limits of photoperception: constitutively active PHYTOCHROME B2 overexpression as a means of improving fruit nutritional quality in tomato [Internet]. Plant Biotechnology Journal. 2020 ; 18 2027–2041.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1111/pbi.13362
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ROSADO, Daniele et al. Downregulation of PHYTOCHROME-INTERACTING FACTOR 4 influences plant development and fruit production. Plant Physiology, v. 181, p. 1360-1370, 2019Tradução . . Disponível em: https://doi.org/10.1104/pp.19.00833. Acesso em: 16 nov. 2024.
APA
Rosado, D., Trench, B., Bianchetti, R. E., Zuccarelli, R., Alves, F. R. R., Purgatto, E., et al. (2019). Downregulation of PHYTOCHROME-INTERACTING FACTOR 4 influences plant development and fruit production. Plant Physiology, 181, 1360-1370. doi:10.1104/pp.19.00833
NLM
Rosado D, Trench B, Bianchetti RE, Zuccarelli R, Alves FRR, Purgatto E, Floh EIS, Nogueira FTS, Freschi L, Rossi M. Downregulation of PHYTOCHROME-INTERACTING FACTOR 4 influences plant development and fruit production [Internet]. Plant Physiology. 2019 ; 181 1360-1370.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1104/pp.19.00833
Vancouver
Rosado D, Trench B, Bianchetti RE, Zuccarelli R, Alves FRR, Purgatto E, Floh EIS, Nogueira FTS, Freschi L, Rossi M. Downregulation of PHYTOCHROME-INTERACTING FACTOR 4 influences plant development and fruit production [Internet]. Plant Physiology. 2019 ; 181 1360-1370.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1104/pp.19.00833
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LUPI, Alessandra Cavalcanti Duarte et al. Solanum lycopersicum GOLDEN 2-LIKE 2 transcription factor affects fruit quality in a light- and auxin-dependent manner. PLOS ONE, v. 14, n. 2, p. 1-22 art. e0212224, 2019Tradução . . Disponível em: https://doi.org/10.1371/journal.pone.0212224. Acesso em: 16 nov. 2024.
APA
Lupi, A. C. D., Lira, B. S., Gramegna, G., Trench, B., Alves, F. R. R., Demarco, D., et al. (2019). Solanum lycopersicum GOLDEN 2-LIKE 2 transcription factor affects fruit quality in a light- and auxin-dependent manner. PLOS ONE, 14( 2), 1-22 art. e0212224. doi:10.1371/journal.pone.0212224
NLM
Lupi ACD, Lira BS, Gramegna G, Trench B, Alves FRR, Demarco D, Peres LEP, Purgatto E, Freschi L, Rossi M. Solanum lycopersicum GOLDEN 2-LIKE 2 transcription factor affects fruit quality in a light- and auxin-dependent manner [Internet]. PLOS ONE. 2019 ; 14( 2): 1-22 art. e0212224.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1371/journal.pone.0212224
Vancouver
Lupi ACD, Lira BS, Gramegna G, Trench B, Alves FRR, Demarco D, Peres LEP, Purgatto E, Freschi L, Rossi M. Solanum lycopersicum GOLDEN 2-LIKE 2 transcription factor affects fruit quality in a light- and auxin-dependent manner [Internet]. PLOS ONE. 2019 ; 14( 2): 1-22 art. e0212224.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1371/journal.pone.0212224
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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TAVARES, Eveline Queiroz de Pinho et al. Roles of auxin and ethylene in aerenchyma formation in sugarcane roots. Plant Signaling & Behavior, v. 13, n. 3, p. 1-3 art. e1422464, 2018Tradução . . Disponível em: https://doi.org/10.1080/15592324.2017.1422464. Acesso em: 16 nov. 2024.
APA
Tavares, E. Q. de P., Grandis, A., Horta, C. G. L., Souza, G. M., Purgatto, E., Souza, A. P. de, & Buckeridge, M. (2018). Roles of auxin and ethylene in aerenchyma formation in sugarcane roots. Plant Signaling & Behavior, 13( 3), 1-3 art. e1422464. doi:10.1080/15592324.2017.1422464
NLM
Tavares EQ de P, Grandis A, Horta CGL, Souza GM, Purgatto E, Souza AP de, Buckeridge M. Roles of auxin and ethylene in aerenchyma formation in sugarcane roots [Internet]. Plant Signaling & Behavior. 2018 ; 13( 3): 1-3 art. e1422464.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1080/15592324.2017.1422464
Vancouver
Tavares EQ de P, Grandis A, Horta CGL, Souza GM, Purgatto E, Souza AP de, Buckeridge M. Roles of auxin and ethylene in aerenchyma formation in sugarcane roots [Internet]. Plant Signaling & Behavior. 2018 ; 13( 3): 1-3 art. e1422464.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1080/15592324.2017.1422464
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CANUTO, Sylvio et al. Virologia prospectiva: estratégias para responder a emergências em saúde. Instituto de Estudos Avançados da USP - IEA. Sao Paulo: , Universidade de São Paulo. . Acesso em: 16 nov. 2024. , 2018
APA
Canuto, S., Buckeridge, M., Colli, W., Zanotto, P. M. de A., Souza, R. P. de, Luchs, A., et al. (2018). Virologia prospectiva: estratégias para responder a emergências em saúde. Instituto de Estudos Avançados da USP - IEA. Sao Paulo: , Universidade de São Paulo.
NLM
Canuto S, Buckeridge M, Colli W, Zanotto PM de A, Souza RP de, Luchs A, Ometto T, Drumont B, Abrahão J, Romano CM, Hoffmann C, Aguiar E, Araujo J de, Amgarten D. Virologia prospectiva: estratégias para responder a emergências em saúde. Instituto de Estudos Avançados da USP - IEA. 2018 ;[citado 2024 nov. 16 ]
Vancouver
Canuto S, Buckeridge M, Colli W, Zanotto PM de A, Souza RP de, Luchs A, Ometto T, Drumont B, Abrahão J, Romano CM, Hoffmann C, Aguiar E, Araujo J de, Amgarten D. Virologia prospectiva: estratégias para responder a emergências em saúde. Instituto de Estudos Avançados da USP - IEA. 2018 ;[citado 2024 nov. 16 ]
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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BIANCHETTI, Ricardo Ernesto et al. Fruit-localized phytochromes regulate plastid biogenesis, starch synthesis, and carotenoid metabolism in tomato. Journal of Experimental Botany, v. 69, n. 15, p. 3573-3586, 2018Tradução . . Disponível em: https://doi.org/10.1093/jxb/ery145. Acesso em: 16 nov. 2024.
APA
Bianchetti, R. E., Lira, B. S., Monteiro, S. S., Demarco, D., Purgatto, E., Rothan, C., et al. (2018). Fruit-localized phytochromes regulate plastid biogenesis, starch synthesis, and carotenoid metabolism in tomato. Journal of Experimental Botany, 69( 15), 3573-3586. doi:10.1093/jxb/ery145
NLM
Bianchetti RE, Lira BS, Monteiro SS, Demarco D, Purgatto E, Rothan C, Rossi M, Freschi L. Fruit-localized phytochromes regulate plastid biogenesis, starch synthesis, and carotenoid metabolism in tomato [Internet]. Journal of Experimental Botany. 2018 ; 69( 15): 3573-3586.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/jxb/ery145
Vancouver
Bianchetti RE, Lira BS, Monteiro SS, Demarco D, Purgatto E, Rothan C, Rossi M, Freschi L. Fruit-localized phytochromes regulate plastid biogenesis, starch synthesis, and carotenoid metabolism in tomato [Internet]. Journal of Experimental Botany. 2018 ; 69( 15): 3573-3586.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/jxb/ery145
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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LOHMANN, Lucia G et al. Na ponta do lapis. [Depoimento a Rodrigo de Oliveira Andrade]. Pesquisa FAPESP. São Paulo: Instituto de Biociências, Universidade de São Paulo. Disponível em: http://revistapesquisa.fapesp.br/2018/03/20/na-ponta-do-lapis/. Acesso em: 16 nov. 2024. , 2018
APA
Lohmann, L. G., Franco, B. D. G. de M., Miguel, E. C., & Juk, J. (2018). Na ponta do lapis. [Depoimento a Rodrigo de Oliveira Andrade]. Pesquisa FAPESP. São Paulo: Instituto de Biociências, Universidade de São Paulo. Recuperado de http://revistapesquisa.fapesp.br/2018/03/20/na-ponta-do-lapis/
NLM
Lohmann LG, Franco BDG de M, Miguel EC, Juk J. Na ponta do lapis. [Depoimento a Rodrigo de Oliveira Andrade] [Internet]. Pesquisa FAPESP. 2018 ;( 265): 96-98.[citado 2024 nov. 16 ] Available from: http://revistapesquisa.fapesp.br/2018/03/20/na-ponta-do-lapis/
Vancouver
Lohmann LG, Franco BDG de M, Miguel EC, Juk J. Na ponta do lapis. [Depoimento a Rodrigo de Oliveira Andrade] [Internet]. Pesquisa FAPESP. 2018 ;( 265): 96-98.[citado 2024 nov. 16 ] Available from: http://revistapesquisa.fapesp.br/2018/03/20/na-ponta-do-lapis/
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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CRUZ, Aline Bertinatto et al. Light, ethylene and auxin signaling interaction regulates carotenoid biosynthesis during tomato fruit ripening. Frontiers in Plant Science, v. 9, p. 1-16, 2018Tradução . . Disponível em: https://doi.org/10.3389/fpls.2018.01370. Acesso em: 16 nov. 2024.
APA
Cruz, A. B., Bianchetti, R. E., Alves, F. R. R., Purgatto, E., Peres, L. E. P., Rossi, M., & Freschi, L. (2018). Light, ethylene and auxin signaling interaction regulates carotenoid biosynthesis during tomato fruit ripening. Frontiers in Plant Science, 9, 1-16. doi:10.3389/fpls.2018.01370
NLM
Cruz AB, Bianchetti RE, Alves FRR, Purgatto E, Peres LEP, Rossi M, Freschi L. Light, ethylene and auxin signaling interaction regulates carotenoid biosynthesis during tomato fruit ripening [Internet]. Frontiers in Plant Science. 2018 ; 9 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fpls.2018.01370
Vancouver
Cruz AB, Bianchetti RE, Alves FRR, Purgatto E, Peres LEP, Rossi M, Freschi L. Light, ethylene and auxin signaling interaction regulates carotenoid biosynthesis during tomato fruit ripening [Internet]. Frontiers in Plant Science. 2018 ; 9 1-16.[citado 2024 nov. 16 ] Available from: https://doi.org/10.3389/fpls.2018.01370
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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BIANCHETTI, Ricardo Ernesto et al. Phytochromobilin deficiency impairs sugar metabolism through the regulation of cytokinin and auxin signaling in tomato fruits. Scientific Reports, v. 7, p. 1-15, 2017Tradução . . Disponível em: https://doi.org/10.1038/s41598-017-08448-2. Acesso em: 16 nov. 2024.
APA
Bianchetti, R. E., Cruz, A. B., Oliveira, B. S., Demarco, D., Purgatto, E., Peres, L. E. P., et al. (2017). Phytochromobilin deficiency impairs sugar metabolism through the regulation of cytokinin and auxin signaling in tomato fruits. Scientific Reports, 7, 1-15. doi:10.1038/s41598-017-08448-2
NLM
Bianchetti RE, Cruz AB, Oliveira BS, Demarco D, Purgatto E, Peres LEP, Rossi M, Freschi L. Phytochromobilin deficiency impairs sugar metabolism through the regulation of cytokinin and auxin signaling in tomato fruits [Internet]. Scientific Reports. 2017 ; 7 1-15.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1038/s41598-017-08448-2
Vancouver
Bianchetti RE, Cruz AB, Oliveira BS, Demarco D, Purgatto E, Peres LEP, Rossi M, Freschi L. Phytochromobilin deficiency impairs sugar metabolism through the regulation of cytokinin and auxin signaling in tomato fruits [Internet]. Scientific Reports. 2017 ; 7 1-15.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1038/s41598-017-08448-2
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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LIRA, Bruno S et al. Manipulation of a senescence-associated gene improves fleshy fruit yield. Plant Physiology, v. 175, n. 1, p. 77-91, 2017Tradução . . Disponível em: https://doi.org/10.1104/pp.17.00452. Acesso em: 16 nov. 2024.
APA
Lira, B. S., Gramegna, G., Trench, B., Alves, F. R. R., Silva, É. M., Silva, G. F. F., et al. (2017). Manipulation of a senescence-associated gene improves fleshy fruit yield. Plant Physiology, 175( 1), 77-91. doi:10.1104/pp.17.00452
NLM
Lira BS, Gramegna G, Trench B, Alves FRR, Silva ÉM, Silva GFF, Thirumalaikumar VP, Lupi ACD, Demarco D, Purgatto E, Nogueira FTS, Balazadeh S, Freschi L, Rossi M. Manipulation of a senescence-associated gene improves fleshy fruit yield [Internet]. Plant Physiology. 2017 ; 175( 1): 77-91.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1104/pp.17.00452
Vancouver
Lira BS, Gramegna G, Trench B, Alves FRR, Silva ÉM, Silva GFF, Thirumalaikumar VP, Lupi ACD, Demarco D, Purgatto E, Nogueira FTS, Balazadeh S, Freschi L, Rossi M. Manipulation of a senescence-associated gene improves fleshy fruit yield [Internet]. Plant Physiology. 2017 ; 175( 1): 77-91.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1104/pp.17.00452
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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PEREIRA, Paula Natalia et al. Proton and anion transport across the tonoplast vesicles in bromeliad species. Functional Plant Biology, v. 44, n. 6, p. 646-653, 2017Tradução . . Disponível em: https://doi.org/10.1071/FP16293. Acesso em: 16 nov. 2024.
APA
Pereira, P. N., Smith, J. A., Purgatto, E., & Mercier, H. (2017). Proton and anion transport across the tonoplast vesicles in bromeliad species. Functional Plant Biology, 44( 6), 646-653. doi:10.1071/FP16293
NLM
Pereira PN, Smith JA, Purgatto E, Mercier H. Proton and anion transport across the tonoplast vesicles in bromeliad species [Internet]. Functional Plant Biology. 2017 ; 44( 6): 646-653.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1071/FP16293
Vancouver
Pereira PN, Smith JA, Purgatto E, Mercier H. Proton and anion transport across the tonoplast vesicles in bromeliad species [Internet]. Functional Plant Biology. 2017 ; 44( 6): 646-653.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1071/FP16293
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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LIRA, Bruno Silvestre et al. Pheophytinase knockdown impacts carbon metabolism and nutraceutical content under normal growth conditions in tomato. Plant and Cell Physiology, v. 57, n. 3, p. 642-653 : + Supplementary materials ( S1-S5), 2016Tradução . . Disponível em: https://doi.org/10.1093/pcp/pcw021. Acesso em: 16 nov. 2024.
APA
Lira, B. S., Rosado, D., Almeida, J., Souza, A. P. de, Buckeridge, M., Purgatto, E., et al. (2016). Pheophytinase knockdown impacts carbon metabolism and nutraceutical content under normal growth conditions in tomato. Plant and Cell Physiology, 57( 3), 642-653 : + Supplementary materials ( S1-S5). doi:10.1093/pcp/pcw021
NLM
Lira BS, Rosado D, Almeida J, Souza AP de, Buckeridge M, Purgatto E, Guyer L, Hörtensteiner S, Freschi L, Rossi M. Pheophytinase knockdown impacts carbon metabolism and nutraceutical content under normal growth conditions in tomato [Internet]. Plant and Cell Physiology. 2016 ; 57( 3): 642-653 : + Supplementary materials ( S1-S5).[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/pcp/pcw021
Vancouver
Lira BS, Rosado D, Almeida J, Souza AP de, Buckeridge M, Purgatto E, Guyer L, Hörtensteiner S, Freschi L, Rossi M. Pheophytinase knockdown impacts carbon metabolism and nutraceutical content under normal growth conditions in tomato [Internet]. Plant and Cell Physiology. 2016 ; 57( 3): 642-653 : + Supplementary materials ( S1-S5).[citado 2024 nov. 16 ] Available from: https://doi.org/10.1093/pcp/pcw021
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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RODRIGUES, Maria Aurineide et al. Implications of leaf ontogeny on drought-induced gradients of CAM expression and ABA levels in rosettes of the epiphytic tank bromeliad Guzmania monostachia. Plant Physiology and Biochemistry, v. No 2016, p. 400-411, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.plaphy.2016.08.010. Acesso em: 16 nov. 2024.
APA
Rodrigues, M. A., Hamachi, L., Mioto, P. T., Purgatto, E., & Mercier, H. (2016). Implications of leaf ontogeny on drought-induced gradients of CAM expression and ABA levels in rosettes of the epiphytic tank bromeliad Guzmania monostachia. Plant Physiology and Biochemistry, No 2016, 400-411. doi:10.1016/j.plaphy.2016.08.010
NLM
Rodrigues MA, Hamachi L, Mioto PT, Purgatto E, Mercier H. Implications of leaf ontogeny on drought-induced gradients of CAM expression and ABA levels in rosettes of the epiphytic tank bromeliad Guzmania monostachia [Internet]. Plant Physiology and Biochemistry. 2016 ; No 2016 400-411.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1016/j.plaphy.2016.08.010
Vancouver
Rodrigues MA, Hamachi L, Mioto PT, Purgatto E, Mercier H. Implications of leaf ontogeny on drought-induced gradients of CAM expression and ABA levels in rosettes of the epiphytic tank bromeliad Guzmania monostachia [Internet]. Plant Physiology and Biochemistry. 2016 ; No 2016 400-411.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1016/j.plaphy.2016.08.010
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
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IENNE, Susan et al. Auxin production by the plant trypanosomatid Phytomonas serpens and auxin homoeostasis in infected tomato fruits. Parasitology, v. 141, p. 1299-1310, 2014Tradução . . Disponível em: https://doi.org/10.1017/S0031182014000547. Acesso em: 16 nov. 2024.
APA
Ienne, S., Freschi, L., Vidotto, V. F., Souza, T. A., Purgatto, E., & Zingales, B. (2014). Auxin production by the plant trypanosomatid Phytomonas serpens and auxin homoeostasis in infected tomato fruits. Parasitology, 141, 1299-1310. doi:10.1017/S0031182014000547
NLM
Ienne S, Freschi L, Vidotto VF, Souza TA, Purgatto E, Zingales B. Auxin production by the plant trypanosomatid Phytomonas serpens and auxin homoeostasis in infected tomato fruits [Internet]. Parasitology. 2014 ; 141 1299-1310.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1017/S0031182014000547
Vancouver
Ienne S, Freschi L, Vidotto VF, Souza TA, Purgatto E, Zingales B. Auxin production by the plant trypanosomatid Phytomonas serpens and auxin homoeostasis in infected tomato fruits [Internet]. Parasitology. 2014 ; 141 1299-1310.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1017/S0031182014000547
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
Brazilian Journal of Pharmaceutical Sciences. . São Paulo: Universidade de São Paulo - Faculdade de Ciências Farmacêuticas. . Acesso em: 16 nov. 2024. , 2014
APA
Brazilian Journal of Pharmaceutical Sciences. (2014). Brazilian Journal of Pharmaceutical Sciences. São Paulo: Universidade de São Paulo - Faculdade de Ciências Farmacêuticas.
A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
ABNT
RODRIGUES, Maria Aurineide et al. Ethylene modulates the developmental plasticity and the growth balance between shoot and root systems in the in vitro grown epiphytic orchid Catasetum fimbriatum. Journal of Plant Growth Regulation, p. on-line, 2014Tradução . . Disponível em: https://doi.org/10.1007/s00344-013-9399-4. Acesso em: 16 nov. 2024.
APA
Rodrigues, M. A., Freschi, L., Purgatto, E., Lima, V. F. G. A. P., & Kerbauy, G. B. (2014). Ethylene modulates the developmental plasticity and the growth balance between shoot and root systems in the in vitro grown epiphytic orchid Catasetum fimbriatum. Journal of Plant Growth Regulation, on-line. doi:10.1007/s00344-013-9399-4
NLM
Rodrigues MA, Freschi L, Purgatto E, Lima VFGAP, Kerbauy GB. Ethylene modulates the developmental plasticity and the growth balance between shoot and root systems in the in vitro grown epiphytic orchid Catasetum fimbriatum [Internet]. Journal of Plant Growth Regulation. 2014 ; on-line.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/s00344-013-9399-4
Vancouver
Rodrigues MA, Freschi L, Purgatto E, Lima VFGAP, Kerbauy GB. Ethylene modulates the developmental plasticity and the growth balance between shoot and root systems in the in vitro grown epiphytic orchid Catasetum fimbriatum [Internet]. Journal of Plant Growth Regulation. 2014 ; on-line.[citado 2024 nov. 16 ] Available from: https://doi.org/10.1007/s00344-013-9399-4