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Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses

NACs are plant-specific transcription factors involved in controlling plant development, stress responses, and senescence. As senescence-associated genes (SAGs), NACs integrate age- and stress-dependent pathways that converge to programmed cell death (PCD). In Arabidopsis, NAC-SAGs belong to well-ch...

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Autores principales: Melo, Bruno Paes, Lourenço-Tessutti, Isabela Tristan, Fraga, Otto Teixeira, Pinheiro, Luanna Bezerra, de Jesus Lins, Camila Barrozo, Morgante, Carolina Vianna, Engler, Janice Almeida, Reis, Pedro Augusto Braga, Grossi-de-Sá, Maria Fátima, Fontes, Elizabeth Pacheco Batista
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8160357/
https://www.ncbi.nlm.nih.gov/pubmed/34045652
http://dx.doi.org/10.1038/s41598-021-90767-6
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author Melo, Bruno Paes
Lourenço-Tessutti, Isabela Tristan
Fraga, Otto Teixeira
Pinheiro, Luanna Bezerra
de Jesus Lins, Camila Barrozo
Morgante, Carolina Vianna
Engler, Janice Almeida
Reis, Pedro Augusto Braga
Grossi-de-Sá, Maria Fátima
Fontes, Elizabeth Pacheco Batista
author_facet Melo, Bruno Paes
Lourenço-Tessutti, Isabela Tristan
Fraga, Otto Teixeira
Pinheiro, Luanna Bezerra
de Jesus Lins, Camila Barrozo
Morgante, Carolina Vianna
Engler, Janice Almeida
Reis, Pedro Augusto Braga
Grossi-de-Sá, Maria Fátima
Fontes, Elizabeth Pacheco Batista
author_sort Melo, Bruno Paes
collection PubMed
description NACs are plant-specific transcription factors involved in controlling plant development, stress responses, and senescence. As senescence-associated genes (SAGs), NACs integrate age- and stress-dependent pathways that converge to programmed cell death (PCD). In Arabidopsis, NAC-SAGs belong to well-characterized regulatory networks, poorly understood in soybean. Here, we interrogated the soybean genome and provided a comprehensive analysis of senescence-associated Glycine max (Gm) NACs. To functionally examine GmNAC-SAGs, we selected GmNAC065, a putative ortholog of Arabidopsis ANAC083/VNI2 SAG, and the cell death-promoting GmNAC085, an ANAC072 SAG putative ortholog, for analyses. Expression analysis of GmNAC065 and GmNAC085 in soybean demonstrated (i) these cell death-promoting GmNACs display contrasting expression changes during age- and stress-induced senescence; (ii) they are co-expressed with functionally different gene sets involved in stress and PCD, and (iii) are differentially induced by PCD inducers. Furthermore, we demonstrated GmNAC065 expression delays senescence in Arabidopsis, a phenotype associated with enhanced oxidative performance under multiple stresses, higher chlorophyll, carotenoid and sugar contents, and lower stress-induced PCD compared to wild-type. In contrast, GmNAC085 accelerated stress-induced senescence, causing enhanced chlorophyll loss, ROS accumulation and cell death, decreased antioxidative system expression and activity. Accordingly, GmNAC065 and GmNAC085 targeted functionally contrasting sets of downstream AtSAGs, further indicating that GmNAC85 and GmNAC065 regulators function inversely in developmental and environmental PCD.
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spelling pubmed-81603572021-06-01 Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses Melo, Bruno Paes Lourenço-Tessutti, Isabela Tristan Fraga, Otto Teixeira Pinheiro, Luanna Bezerra de Jesus Lins, Camila Barrozo Morgante, Carolina Vianna Engler, Janice Almeida Reis, Pedro Augusto Braga Grossi-de-Sá, Maria Fátima Fontes, Elizabeth Pacheco Batista Sci Rep Article NACs are plant-specific transcription factors involved in controlling plant development, stress responses, and senescence. As senescence-associated genes (SAGs), NACs integrate age- and stress-dependent pathways that converge to programmed cell death (PCD). In Arabidopsis, NAC-SAGs belong to well-characterized regulatory networks, poorly understood in soybean. Here, we interrogated the soybean genome and provided a comprehensive analysis of senescence-associated Glycine max (Gm) NACs. To functionally examine GmNAC-SAGs, we selected GmNAC065, a putative ortholog of Arabidopsis ANAC083/VNI2 SAG, and the cell death-promoting GmNAC085, an ANAC072 SAG putative ortholog, for analyses. Expression analysis of GmNAC065 and GmNAC085 in soybean demonstrated (i) these cell death-promoting GmNACs display contrasting expression changes during age- and stress-induced senescence; (ii) they are co-expressed with functionally different gene sets involved in stress and PCD, and (iii) are differentially induced by PCD inducers. Furthermore, we demonstrated GmNAC065 expression delays senescence in Arabidopsis, a phenotype associated with enhanced oxidative performance under multiple stresses, higher chlorophyll, carotenoid and sugar contents, and lower stress-induced PCD compared to wild-type. In contrast, GmNAC085 accelerated stress-induced senescence, causing enhanced chlorophyll loss, ROS accumulation and cell death, decreased antioxidative system expression and activity. Accordingly, GmNAC065 and GmNAC085 targeted functionally contrasting sets of downstream AtSAGs, further indicating that GmNAC85 and GmNAC065 regulators function inversely in developmental and environmental PCD. Nature Publishing Group UK 2021-05-27 /pmc/articles/PMC8160357/ /pubmed/34045652 http://dx.doi.org/10.1038/s41598-021-90767-6 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Melo, Bruno Paes
Lourenço-Tessutti, Isabela Tristan
Fraga, Otto Teixeira
Pinheiro, Luanna Bezerra
de Jesus Lins, Camila Barrozo
Morgante, Carolina Vianna
Engler, Janice Almeida
Reis, Pedro Augusto Braga
Grossi-de-Sá, Maria Fátima
Fontes, Elizabeth Pacheco Batista
Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title_full Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title_fullStr Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title_full_unstemmed Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title_short Contrasting roles of GmNAC065 and GmNAC085 in natural senescence, plant development, multiple stresses and cell death responses
title_sort contrasting roles of gmnac065 and gmnac085 in natural senescence, plant development, multiple stresses and cell death responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8160357/
https://www.ncbi.nlm.nih.gov/pubmed/34045652
http://dx.doi.org/10.1038/s41598-021-90767-6
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