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  • Source: Plant Cell and Environment. Unidades: IB, ESALQ, CENA

    Subjects: AÇÚCAR, CACAU, FUNGOS FITOPATOGÊNICOS, RAIZ, TOMATE, VASSOURA-DE-BRUXA

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      PASCHOAL, Daniele et al. Root development of tomato plants infected by the cacao pathogen Moniliophthora perniciosa is affected by limited sugar availability. Plant Cell and Environment, v. 48, n. 5, p. 3603-3619, 2025Tradução . . Disponível em: https://doi.org/10.1111/pce.15385. Acesso em: 05 jan. 2026.
    • APA

      Paschoal, D., Cazetta, L., Mendes, J. V. O., Dias, N. C. F., Ometto, V. M., Carrera, E., et al. (2025). Root development of tomato plants infected by the cacao pathogen Moniliophthora perniciosa is affected by limited sugar availability. Plant Cell and Environment, 48( 5), 3603-3619. doi:10.1111/pce.15385
    • NLM

      Paschoal D, Cazetta L, Mendes JVO, Dias NCF, Ometto VM, Carrera E, Rossi MLL, Aricetti JA, Mieczkowski P, Carvalho GG, Cesarino I, Silva SF da, Ribeiro RV, Teixeira PJPL, Silva EM da, Figueira AV de O. Root development of tomato plants infected by the cacao pathogen Moniliophthora perniciosa is affected by limited sugar availability [Internet]. Plant Cell and Environment. 2025 ; 48( 5): 3603-3619.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1111/pce.15385
    • Vancouver

      Paschoal D, Cazetta L, Mendes JVO, Dias NCF, Ometto VM, Carrera E, Rossi MLL, Aricetti JA, Mieczkowski P, Carvalho GG, Cesarino I, Silva SF da, Ribeiro RV, Teixeira PJPL, Silva EM da, Figueira AV de O. Root development of tomato plants infected by the cacao pathogen Moniliophthora perniciosa is affected by limited sugar availability [Internet]. Plant Cell and Environment. 2025 ; 48( 5): 3603-3619.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1111/pce.15385
    GDS 02. Zero hungerGDS 13. Climate action
  • Source: Theoretical and Experimental Plant Physiology. Unidade: IB

    Subjects: LIGNINA, PAREDE CELULAR VEGETAL, METABOLISMO VEGETAL, GRAMÍNEAS

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      CUNHA, Lucas Xavier da e LIMA, Leydson Gabriel Alves de e CESARINO, Igor. Identification of lignin-related WRKY transcription factors in the grass Setaria viridis. Theoretical and Experimental Plant Physiology, v. 37, 2025Tradução . . Disponível em: https://doi.org/10.1007/s40626-024-00354-z. Acesso em: 05 jan. 2026.
    • APA

      Cunha, L. X. da, Lima, L. G. A. de, & Cesarino, I. (2025). Identification of lignin-related WRKY transcription factors in the grass Setaria viridis. Theoretical and Experimental Plant Physiology, 37. doi:10.1007/s40626-024-00354-z
    • NLM

      Cunha LX da, Lima LGA de, Cesarino I. Identification of lignin-related WRKY transcription factors in the grass Setaria viridis [Internet]. Theoretical and Experimental Plant Physiology. 2025 ; 37[citado 2026 jan. 05 ] Available from: https://doi.org/10.1007/s40626-024-00354-z
    • Vancouver

      Cunha LX da, Lima LGA de, Cesarino I. Identification of lignin-related WRKY transcription factors in the grass Setaria viridis [Internet]. Theoretical and Experimental Plant Physiology. 2025 ; 37[citado 2026 jan. 05 ] Available from: https://doi.org/10.1007/s40626-024-00354-z
    GDS 02. Zero hunger
  • Source: LWT. Unidade: IB

    Subjects: METABOLISMO VEGETAL, FISIOLOGIA VEGETAL

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      HE, Feifei et al. Nutritional and antioxidant profiling reveals coffee cherry tea as a health-promoting ingredient retaining the nutraceutical properties of coffee husks. LWT, v. 227, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.lwt.2025.117985. Acesso em: 05 jan. 2026.
    • APA

      He, F., Gao, J., Zhang, J., Ma, R., Lyu, Y., Cesarino, I., & Li, Z. (2025). Nutritional and antioxidant profiling reveals coffee cherry tea as a health-promoting ingredient retaining the nutraceutical properties of coffee husks. LWT, 227. doi:10.1016/j.lwt.2025.117985
    • NLM

      He F, Gao J, Zhang J, Ma R, Lyu Y, Cesarino I, Li Z. Nutritional and antioxidant profiling reveals coffee cherry tea as a health-promoting ingredient retaining the nutraceutical properties of coffee husks [Internet]. LWT. 2025 ; 227[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.lwt.2025.117985
    • Vancouver

      He F, Gao J, Zhang J, Ma R, Lyu Y, Cesarino I, Li Z. Nutritional and antioxidant profiling reveals coffee cherry tea as a health-promoting ingredient retaining the nutraceutical properties of coffee husks [Internet]. LWT. 2025 ; 227[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.lwt.2025.117985
    GDS 12. Responsible consumption and production
  • Source: Jornal da USP. Unidade: IB

    Assunto: UNIVERSIDADE PÚBLICA

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      MARQUES, Antonio Carlos et al. Passou da hora de rever o processo de contratação de professor doutor na USP [Depoimento]. Jornal da USP. São Paulo: Instituto de Biociências, Universidade de São Paulo. Disponível em: https://jornal.usp.br/?p=728200. Acesso em: 05 jan. 2026. , 2024
    • APA

      Marques, A. C., Assis, A. P. A., Navas, C., Floh, E. I. S., Marques, F., Machado, G., et al. (2024). Passou da hora de rever o processo de contratação de professor doutor na USP [Depoimento]. Jornal da USP. São Paulo: Instituto de Biociências, Universidade de São Paulo. Recuperado de https://jornal.usp.br/?p=728200
    • NLM

      Marques AC, Assis APA, Navas C, Floh EIS, Marques F, Machado G, Cesarino I, Visconti MA, Rossi M, Passos-Bueno MR, Sano PT, Grant T. Passou da hora de rever o processo de contratação de professor doutor na USP [Depoimento] [Internet]. Jornal da USP. 2024 ;[citado 2026 jan. 05 ] Available from: https://jornal.usp.br/?p=728200
    • Vancouver

      Marques AC, Assis APA, Navas C, Floh EIS, Marques F, Machado G, Cesarino I, Visconti MA, Rossi M, Passos-Bueno MR, Sano PT, Grant T. Passou da hora de rever o processo de contratação de professor doutor na USP [Depoimento] [Internet]. Jornal da USP. 2024 ;[citado 2026 jan. 05 ] Available from: https://jornal.usp.br/?p=728200
  • Source: Molecular Plant. Unidade: IB

    Subjects: METABOLISMO VEGETAL, LIGNINA

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      OLIVEIRA, Dyoni M e CESARINO, Igor. Finding my way: the role of dirigent proteins in lignin assembly. Molecular Plant, v. 17, n. 2, p. 230-232, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.molp.2023.12.023. Acesso em: 05 jan. 2026.
    • APA

      Oliveira, D. M., & Cesarino, I. (2024). Finding my way: the role of dirigent proteins in lignin assembly. Molecular Plant, 17( 2), 230-232. doi:10.1016/j.molp.2023.12.023
    • NLM

      Oliveira DM, Cesarino I. Finding my way: the role of dirigent proteins in lignin assembly [Internet]. Molecular Plant. 2024 ; 17( 2): 230-232.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.molp.2023.12.023
    • Vancouver

      Oliveira DM, Cesarino I. Finding my way: the role of dirigent proteins in lignin assembly [Internet]. Molecular Plant. 2024 ; 17( 2): 230-232.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.molp.2023.12.023
  • Source: Trends in Plant Science. Unidade: IB

    Subjects: MADEIRA, LIGNINA, POLPAÇÃO

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      OLIVEIRA, Dyoni M e CESARINO, Igor. Genome editing of wood for sustainable pulping. Trends in Plant Science, v. 29, n. 2, p. 111-113, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.tplants.2023.10.007. Acesso em: 05 jan. 2026.
    • APA

      Oliveira, D. M., & Cesarino, I. (2024). Genome editing of wood for sustainable pulping. Trends in Plant Science, 29( 2), 111-113. doi:10.1016/j.tplants.2023.10.007
    • NLM

      Oliveira DM, Cesarino I. Genome editing of wood for sustainable pulping [Internet]. Trends in Plant Science. 2024 ; 29( 2): 111-113.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.tplants.2023.10.007
    • Vancouver

      Oliveira DM, Cesarino I. Genome editing of wood for sustainable pulping [Internet]. Trends in Plant Science. 2024 ; 29( 2): 111-113.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.tplants.2023.10.007
  • Source: Journal of Plant Physiology. Unidade: IB

    Subjects: LIGNINA, PAREDE CELULAR VEGETAL, METABOLISMO VEGETAL

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      LIMA, Leydson Gabriel Alves de et al. Comprehensive expression analyses of the ABCG subfamily reveal SvABCG17 as a potential transporter of lignin monomers in the model C4 grass Setaria viridis. Journal of Plant Physiology, v. 280, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.jplph.2022.153900. Acesso em: 05 jan. 2026.
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      Lima, L. G. A. de, Ferreira, S. S., Simões, M. S., Cunha, L. X. da, Fernie, A. R., & Cesarino, I. (2023). Comprehensive expression analyses of the ABCG subfamily reveal SvABCG17 as a potential transporter of lignin monomers in the model C4 grass Setaria viridis. Journal of Plant Physiology, 280. doi:10.1016/j.jplph.2022.153900
    • NLM

      Lima LGA de, Ferreira SS, Simões MS, Cunha LX da, Fernie AR, Cesarino I. Comprehensive expression analyses of the ABCG subfamily reveal SvABCG17 as a potential transporter of lignin monomers in the model C4 grass Setaria viridis [Internet]. Journal of Plant Physiology. 2023 ; 280[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.jplph.2022.153900
    • Vancouver

      Lima LGA de, Ferreira SS, Simões MS, Cunha LX da, Fernie AR, Cesarino I. Comprehensive expression analyses of the ABCG subfamily reveal SvABCG17 as a potential transporter of lignin monomers in the model C4 grass Setaria viridis [Internet]. Journal of Plant Physiology. 2023 ; 280[citado 2026 jan. 05 ] Available from: https://doi.org/10.1016/j.jplph.2022.153900
  • Source: Theoretical and Experimental Plant Physiology. Unidade: IB

    Subjects: PEROXIDASE, LIGNINA, GRAMÍNEAS

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      SIMÕES, Marcella Siqueira et al. Toward the identification of class III peroxidases potentially involved in lignification in the model C4 grass Setaria viridis. Theoretical and Experimental Plant Physiology, v. 35, p. 111–131, 2023Tradução . . Disponível em: https://doi.org/10.1007/s40626-023-00273-5. Acesso em: 05 jan. 2026.
    • APA

      Simões, M. S., Carvalho, G. G., Ferreira, S. S., & Cesarino, I. (2023). Toward the identification of class III peroxidases potentially involved in lignification in the model C4 grass Setaria viridis. Theoretical and Experimental Plant Physiology, 35, 111–131. doi:10.1007/s40626-023-00273-5
    • NLM

      Simões MS, Carvalho GG, Ferreira SS, Cesarino I. Toward the identification of class III peroxidases potentially involved in lignification in the model C4 grass Setaria viridis [Internet]. Theoretical and Experimental Plant Physiology. 2023 ; 35 111–131.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1007/s40626-023-00273-5
    • Vancouver

      Simões MS, Carvalho GG, Ferreira SS, Cesarino I. Toward the identification of class III peroxidases potentially involved in lignification in the model C4 grass Setaria viridis [Internet]. Theoretical and Experimental Plant Physiology. 2023 ; 35 111–131.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1007/s40626-023-00273-5
  • Source: Frontiers in Plant Science. Unidade: IB

    Subjects: BIOLOGIA CELULAR, PAREDE CELULAR VEGETAL

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      SOUZA, Wagner Rodrigo de e MITCHELL, Rowan A. C e CESARINO, Igor. Editorial: the plant cell wall: advances and current perspectives. Frontiers in Plant Science, v. 14, 2023Tradução . . Disponível em: https://doi.org/10.3389/fpls.2023.1235749. Acesso em: 05 jan. 2026.
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      Souza, W. R. de, Mitchell, R. A. C., & Cesarino, I. (2023). Editorial: the plant cell wall: advances and current perspectives. Frontiers in Plant Science, 14. doi:10.3389/fpls.2023.1235749
    • NLM

      Souza WR de, Mitchell RAC, Cesarino I. Editorial: the plant cell wall: advances and current perspectives [Internet]. Frontiers in Plant Science. 2023 ; 14[citado 2026 jan. 05 ] Available from: https://doi.org/10.3389/fpls.2023.1235749
    • Vancouver

      Souza WR de, Mitchell RAC, Cesarino I. Editorial: the plant cell wall: advances and current perspectives [Internet]. Frontiers in Plant Science. 2023 ; 14[citado 2026 jan. 05 ] Available from: https://doi.org/10.3389/fpls.2023.1235749
  • Source: Plant Physiology. Unidade: IB

    Subjects: METABOLISMO VEGETAL, PAREDE CELULAR VEGETAL

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      RAMAKRISHNA, Priya e CESARINO, Igor. Loosen up!: How lignin manipulations affect biomass molecular assembly and deconstruction. Plant Physiology, v. 191, n. Ja, p. 3–5, 2023Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiac503. Acesso em: 05 jan. 2026.
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      Ramakrishna, P., & Cesarino, I. (2023). Loosen up!: How lignin manipulations affect biomass molecular assembly and deconstruction. Plant Physiology, 191( Ja), 3–5. doi:10.1093/plphys/kiac503
    • NLM

      Ramakrishna P, Cesarino I. Loosen up!: How lignin manipulations affect biomass molecular assembly and deconstruction [Internet]. Plant Physiology. 2023 ; 191( Ja): 3–5.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac503
    • Vancouver

      Ramakrishna P, Cesarino I. Loosen up!: How lignin manipulations affect biomass molecular assembly and deconstruction [Internet]. Plant Physiology. 2023 ; 191( Ja): 3–5.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac503
  • Source: Plant Physiology. Unidade: IB

    Subjects: PAREDE CELULAR VEGETAL, LIGNINA

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      RAMAKRISHNA, Priya e CESARINO, Igor. “Exclusive” update: p-coumaroylation of lignin not restricted to commelinid monocots. Plant Physiology, v. 191, n. 2, p. 811–813, 2023Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiac536. Acesso em: 05 jan. 2026.
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      Ramakrishna, P., & Cesarino, I. (2023). “Exclusive” update: p-coumaroylation of lignin not restricted to commelinid monocots. Plant Physiology, 191( 2), 811–813. doi:10.1093/plphys/kiac536
    • NLM

      Ramakrishna P, Cesarino I. “Exclusive” update: p-coumaroylation of lignin not restricted to commelinid monocots [Internet]. Plant Physiology. 2023 ; 191( 2): 811–813.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac536
    • Vancouver

      Ramakrishna P, Cesarino I. “Exclusive” update: p-coumaroylation of lignin not restricted to commelinid monocots [Internet]. Plant Physiology. 2023 ; 191( 2): 811–813.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac536
  • Source: Plant Physiology. Unidade: IB

    Subjects: FRUTAS, PAREDE CELULAR VEGETAL, METABOLISMO VEGETAL

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      CESARINO, Igor. Killing me softly: a pathogen accelerates fruit ripening and softening to cause disease. Plant Physiology, v. 191, n. Ja 2023, p. 21–23, 2023Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiac469. Acesso em: 05 jan. 2026.
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      Cesarino, I. (2023). Killing me softly: a pathogen accelerates fruit ripening and softening to cause disease. Plant Physiology, 191( Ja 2023), 21–23. doi:10.1093/plphys/kiac469
    • NLM

      Cesarino I. Killing me softly: a pathogen accelerates fruit ripening and softening to cause disease [Internet]. Plant Physiology. 2023 ; 191( Ja 2023): 21–23.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac469
    • Vancouver

      Cesarino I. Killing me softly: a pathogen accelerates fruit ripening and softening to cause disease [Internet]. Plant Physiology. 2023 ; 191( Ja 2023): 21–23.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac469
  • Source: Plant Physiology. Unidade: IB

    Subjects: CAFÉ, LIGNINA, METABOLISMO VEGETAL

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      OLIVEIRA, Dyoni M e CESARINO, Igor. Four is better than one: structure and function of a unique ascorbate peroxidase with four binding sites. Plant Physiology, v. 192, n. 1, p. 4-6, 2023Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiad109. Acesso em: 05 jan. 2026.
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      Oliveira, D. M., & Cesarino, I. (2023). Four is better than one: structure and function of a unique ascorbate peroxidase with four binding sites. Plant Physiology, 192( 1), 4-6. doi:10.1093/plphys/kiad109
    • NLM

      Oliveira DM, Cesarino I. Four is better than one: structure and function of a unique ascorbate peroxidase with four binding sites [Internet]. Plant Physiology. 2023 ; 192( 1): 4-6.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiad109
    • Vancouver

      Oliveira DM, Cesarino I. Four is better than one: structure and function of a unique ascorbate peroxidase with four binding sites [Internet]. Plant Physiology. 2023 ; 192( 1): 4-6.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiad109
  • Source: Plant Physiology (Online). Unidade: IB

    Subjects: PLANTAS PARASITAS, TUBIFLORAE, TOMATE, LIGNINA

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      SOMSSICH, Marc e CESARINO, Igor. Parasite-resistant ketchup! Lignin-based resistance to parasitic plants in tomato. Plant Physiology (Online), v. 189, n. 1, p. 4-6, 2022Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiac067. Acesso em: 05 jan. 2026.
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      Somssich, M., & Cesarino, I. (2022). Parasite-resistant ketchup! Lignin-based resistance to parasitic plants in tomato. Plant Physiology (Online), 189( 1), 4-6. doi:10.1093/plphys/kiac067
    • NLM

      Somssich M, Cesarino I. Parasite-resistant ketchup! Lignin-based resistance to parasitic plants in tomato [Internet]. Plant Physiology (Online). 2022 ; 189( 1): 4-6.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac067
    • Vancouver

      Somssich M, Cesarino I. Parasite-resistant ketchup! Lignin-based resistance to parasitic plants in tomato [Internet]. Plant Physiology (Online). 2022 ; 189( 1): 4-6.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac067
  • Source: Plant Physiology. Unidade: IB

    Subjects: PAREDE CELULAR VEGETAL, LIGNINA, METABOLISMO VEGETAL

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      YE, Yajin e CESARINO, Igor. A feast of consequences: transcriptional and metabolic responses to lignin pathway perturbations. Plant Physiology, v. 190, n. 4, p. 2090–2093, 2022Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiac414. Acesso em: 05 jan. 2026.
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      Ye, Y., & Cesarino, I. (2022). A feast of consequences: transcriptional and metabolic responses to lignin pathway perturbations. Plant Physiology, 190( 4), 2090–2093. doi:10.1093/plphys/kiac414
    • NLM

      Ye Y, Cesarino I. A feast of consequences: transcriptional and metabolic responses to lignin pathway perturbations [Internet]. Plant Physiology. 2022 ; 190( 4): 2090–2093.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac414
    • Vancouver

      Ye Y, Cesarino I. A feast of consequences: transcriptional and metabolic responses to lignin pathway perturbations [Internet]. Plant Physiology. 2022 ; 190( 4): 2090–2093.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiac414
  • Source: Plant Physiology. Unidade: IB

    Subjects: FOTOSSÍNTESE, METABOLISMO VEGETAL

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      CESARINO, Igor. Going red but not mad: efficient astaxanthin production in tobacco without yield penalty. Plant Physiology, v. 188, n. Ja p. 35–37, 2022Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiab482. Acesso em: 05 jan. 2026.
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      Cesarino, I. (2022). Going red but not mad: efficient astaxanthin production in tobacco without yield penalty. Plant Physiology, 188( Ja p. 35–37). doi:10.1093/plphys/kiab482
    • NLM

      Cesarino I. Going red but not mad: efficient astaxanthin production in tobacco without yield penalty [Internet]. Plant Physiology. 2022 ; 188( Ja p. 35–37):[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiab482
    • Vancouver

      Cesarino I. Going red but not mad: efficient astaxanthin production in tobacco without yield penalty [Internet]. Plant Physiology. 2022 ; 188( Ja p. 35–37):[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiab482
  • Source: Food Quality and Safety. Unidade: IB

    Subjects: PAREDE CELULAR VEGETAL, CARBOIDRATOS, FIBRAS NA DIETA

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      AN, Yi et al. Dietary fiber in plant cell walls: the healthy carbohydrates. Food Quality and Safety, v. 6, 2022Tradução . . Disponível em: https://doi.org/10.1093/fqsafe/fyab037. Acesso em: 05 jan. 2026.
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      An, Y., Lu, W., Li, W., Pan, L., Lu, M., Cesarino, I., et al. (2022). Dietary fiber in plant cell walls: the healthy carbohydrates. Food Quality and Safety, 6. doi:10.1093/fqsafe/fyab037
    • NLM

      An Y, Lu W, Li W, Pan L, Lu M, Cesarino I, Li Z, Zeng W. Dietary fiber in plant cell walls: the healthy carbohydrates [Internet]. Food Quality and Safety. 2022 ; 6[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/fqsafe/fyab037
    • Vancouver

      An Y, Lu W, Li W, Pan L, Lu M, Cesarino I, Li Z, Zeng W. Dietary fiber in plant cell walls: the healthy carbohydrates [Internet]. Food Quality and Safety. 2022 ; 6[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/fqsafe/fyab037
  • Source: Plant Physiology. Unidade: IB

    Subjects: FOTOSSÍNTESE, METABOLISMO VEGETAL

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      CESARINO, Igor. Better NOT together: single-cell transcriptomic landscape of leaf tissues. Plant Physiology, v. 188, n. Ja p. 680–682, 2022Tradução . . Disponível em: https://doi.org/10.1093/plphys/kiab562. Acesso em: 05 jan. 2026.
    • APA

      Cesarino, I. (2022). Better NOT together: single-cell transcriptomic landscape of leaf tissues. Plant Physiology, 188( Ja p. 680–682). doi:10.1093/plphys/kiab562
    • NLM

      Cesarino I. Better NOT together: single-cell transcriptomic landscape of leaf tissues [Internet]. Plant Physiology. 2022 ; 188( Ja p. 680–682):[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiab562
    • Vancouver

      Cesarino I. Better NOT together: single-cell transcriptomic landscape of leaf tissues [Internet]. Plant Physiology. 2022 ; 188( Ja p. 680–682):[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/plphys/kiab562
  • Source: Frontiers in Plant Science. Unidade: IB

    Subjects: METABOLISMO VEGETAL, BIOTECNOLOGIA

    Acesso à fonteDOIHow to cite
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    • ABNT

      CESARINO, Igor et al. Editorial: phenylpropanoid systems biology and biotechnology. Frontiers in Plant Science. Lausanne: Instituto de Biociências, Universidade de São Paulo. Disponível em: https://doi.org/10.3389/fpls.2022.866164. Acesso em: 05 jan. 2026. , 2022
    • APA

      Cesarino, I., Eudes, A., Urbanowicz, B., & Xie, M. (2022). Editorial: phenylpropanoid systems biology and biotechnology. Frontiers in Plant Science. Lausanne: Instituto de Biociências, Universidade de São Paulo. doi:10.3389/fpls.2022.866164
    • NLM

      Cesarino I, Eudes A, Urbanowicz B, Xie M. Editorial: phenylpropanoid systems biology and biotechnology [Internet]. Frontiers in Plant Science. 2022 ; 13[citado 2026 jan. 05 ] Available from: https://doi.org/10.3389/fpls.2022.866164
    • Vancouver

      Cesarino I, Eudes A, Urbanowicz B, Xie M. Editorial: phenylpropanoid systems biology and biotechnology [Internet]. Frontiers in Plant Science. 2022 ; 13[citado 2026 jan. 05 ] Available from: https://doi.org/10.3389/fpls.2022.866164
  • Source: Journal of Experimental Botany. Unidade: IB

    Subjects: PAREDE CELULAR VEGETAL, LIGNINA, BIOTECNOLOGIA DE PLANTAS, METABOLISMO VEGETAL

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    • ABNT

      FERREIRA, Sávio Siqueira et al. Transcriptional and metabolic changes associated with internode development and reduced cinnamyl alcohol dehydrogenase activity in sorghum. Journal of Experimental Botany, v. 73, n. 18, p. 6307–6333, 2022Tradução . . Disponível em: https://doi.org/10.1093/jxb/erac300. Acesso em: 05 jan. 2026.
    • APA

      Ferreira, S. S., Goeminne, G., Simões, M. S., Pina, A. V. de A., Lima, L. G. A. de, Pezard, J., et al. (2022). Transcriptional and metabolic changes associated with internode development and reduced cinnamyl alcohol dehydrogenase activity in sorghum. Journal of Experimental Botany, 73( 18), 6307–6333. doi:10.1093/jxb/erac300
    • NLM

      Ferreira SS, Goeminne G, Simões MS, Pina AV de A, Lima LGA de, Pezard J, Gutiérrez A, Rencoret J, Mortimer JC, del Río JC, Boerjan W, Cesarino I. Transcriptional and metabolic changes associated with internode development and reduced cinnamyl alcohol dehydrogenase activity in sorghum [Internet]. Journal of Experimental Botany. 2022 ; 73( 18): 6307–6333.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/jxb/erac300
    • Vancouver

      Ferreira SS, Goeminne G, Simões MS, Pina AV de A, Lima LGA de, Pezard J, Gutiérrez A, Rencoret J, Mortimer JC, del Río JC, Boerjan W, Cesarino I. Transcriptional and metabolic changes associated with internode development and reduced cinnamyl alcohol dehydrogenase activity in sorghum [Internet]. Journal of Experimental Botany. 2022 ; 73( 18): 6307–6333.[citado 2026 jan. 05 ] Available from: https://doi.org/10.1093/jxb/erac300

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