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Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit

Abscisic acid (ABA) is a phytohormone essential for plants to respond to various environmental stresses, and abscisic acid-insensitive 5 (ABI5) is a basic leucine zipper transcription factor of the ABA signaling pathway. Exogenous ABA induces cold tolerance in bananas; however, the role of MaABI5-li...

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Autores principales: Song, Zunyang, Lai, Xiuhua, Chen, Hangcong, Wang, Lihua, Pang, Xuequn, Hao, Yanwei, Lu, Wangjin, Chen, Weixin, Zhu, Xiaoyang, Li, Xueping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10021067/
https://www.ncbi.nlm.nih.gov/pubmed/36936195
http://dx.doi.org/10.1093/hr/uhac130
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author Song, Zunyang
Lai, Xiuhua
Chen, Hangcong
Wang, Lihua
Pang, Xuequn
Hao, Yanwei
Lu, Wangjin
Chen, Weixin
Zhu, Xiaoyang
Li, Xueping
author_facet Song, Zunyang
Lai, Xiuhua
Chen, Hangcong
Wang, Lihua
Pang, Xuequn
Hao, Yanwei
Lu, Wangjin
Chen, Weixin
Zhu, Xiaoyang
Li, Xueping
author_sort Song, Zunyang
collection PubMed
description Abscisic acid (ABA) is a phytohormone essential for plants to respond to various environmental stresses, and abscisic acid-insensitive 5 (ABI5) is a basic leucine zipper transcription factor of the ABA signaling pathway. Exogenous ABA induces cold tolerance in bananas; however, the role of MaABI5-like in ABA-induced cold tolerance remains unexplored. The present study found that exogenous ABA alleviated chilling injury of ‘Fenjiao’ banana, induced the accumulation of endogenous ABA, unsaturated fatty acids, and flavonoid content, and reduced the saturated fatty acid content. Moreover, ABA treatment upregulated the transcription levels of MaABI5-like, fatty acid desaturation genes, and flavonoid synthesis-related genes during cold storage. More interestingly, MaABI5-like directly interacted with the promoter of genes related to fatty acid desaturation (MaFAD3-1, MaFAD3-4, MaFAD3-5, MaFAD6-2, MaFAD6-3) and flavonoid synthesis (MaPAL-like, MaPAL-like1, MaC4H-like3, Ma4CL-like1, Ma4CL-like10, MaCHS6-4-like, and MaFLS) and activated their expressions. Furthermore, the transient overexpression of MaABI5-like in ‘Fenjiao’ banana fruit and ectopic expression in tomato plants enhanced cold tolerance and upregulated fatty acid desaturation and flavonoid synthesis-related gene transcript levels. The reduced expression of MaABI5-like by virus-induced gene silencing in ‘Fenjiao’ banana increased chilling injury and downregulated the expression of fatty acid desaturation and flavonoid synthesis-related genes. Thus, the study indicates that MaABI5-like regulates ABA-induced cold tolerance by increasing unsaturated fatty acid and flavonoid content.
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spelling pubmed-100210672023-03-18 Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit Song, Zunyang Lai, Xiuhua Chen, Hangcong Wang, Lihua Pang, Xuequn Hao, Yanwei Lu, Wangjin Chen, Weixin Zhu, Xiaoyang Li, Xueping Hortic Res Article Abscisic acid (ABA) is a phytohormone essential for plants to respond to various environmental stresses, and abscisic acid-insensitive 5 (ABI5) is a basic leucine zipper transcription factor of the ABA signaling pathway. Exogenous ABA induces cold tolerance in bananas; however, the role of MaABI5-like in ABA-induced cold tolerance remains unexplored. The present study found that exogenous ABA alleviated chilling injury of ‘Fenjiao’ banana, induced the accumulation of endogenous ABA, unsaturated fatty acids, and flavonoid content, and reduced the saturated fatty acid content. Moreover, ABA treatment upregulated the transcription levels of MaABI5-like, fatty acid desaturation genes, and flavonoid synthesis-related genes during cold storage. More interestingly, MaABI5-like directly interacted with the promoter of genes related to fatty acid desaturation (MaFAD3-1, MaFAD3-4, MaFAD3-5, MaFAD6-2, MaFAD6-3) and flavonoid synthesis (MaPAL-like, MaPAL-like1, MaC4H-like3, Ma4CL-like1, Ma4CL-like10, MaCHS6-4-like, and MaFLS) and activated their expressions. Furthermore, the transient overexpression of MaABI5-like in ‘Fenjiao’ banana fruit and ectopic expression in tomato plants enhanced cold tolerance and upregulated fatty acid desaturation and flavonoid synthesis-related gene transcript levels. The reduced expression of MaABI5-like by virus-induced gene silencing in ‘Fenjiao’ banana increased chilling injury and downregulated the expression of fatty acid desaturation and flavonoid synthesis-related genes. Thus, the study indicates that MaABI5-like regulates ABA-induced cold tolerance by increasing unsaturated fatty acid and flavonoid content. Oxford University Press 2022-06-03 /pmc/articles/PMC10021067/ /pubmed/36936195 http://dx.doi.org/10.1093/hr/uhac130 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Song, Zunyang
Lai, Xiuhua
Chen, Hangcong
Wang, Lihua
Pang, Xuequn
Hao, Yanwei
Lu, Wangjin
Chen, Weixin
Zhu, Xiaoyang
Li, Xueping
Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title_full Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title_fullStr Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title_full_unstemmed Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title_short Role of MaABI5-like in abscisic acid-induced cold tolerance of ‘Fenjiao’ banana fruit
title_sort role of maabi5-like in abscisic acid-induced cold tolerance of ‘fenjiao’ banana fruit
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10021067/
https://www.ncbi.nlm.nih.gov/pubmed/36936195
http://dx.doi.org/10.1093/hr/uhac130
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