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A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light

Light quality and intensity can have a significant impact on plant health and crop productivity. Chlorophylls and carotenoids are classes of plant pigments that are responsible for harvesting light energy and protecting plants from the damaging effects of intense light. Our understanding of the role...

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Autores principales: Liu, Zhoubin, Mao, Lianzhen, Yang, Bozhi, Cui, Qingzhi, Dai, Yunhua, Li, Xueqiao, Chen, Yisong, Dai, Xiongze, Zou, Xuexiao, Ou, Lijun, Yang, Sha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10323627/
https://www.ncbi.nlm.nih.gov/pubmed/37426880
http://dx.doi.org/10.1093/hr/uhad098
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author Liu, Zhoubin
Mao, Lianzhen
Yang, Bozhi
Cui, Qingzhi
Dai, Yunhua
Li, Xueqiao
Chen, Yisong
Dai, Xiongze
Zou, Xuexiao
Ou, Lijun
Yang, Sha
author_facet Liu, Zhoubin
Mao, Lianzhen
Yang, Bozhi
Cui, Qingzhi
Dai, Yunhua
Li, Xueqiao
Chen, Yisong
Dai, Xiongze
Zou, Xuexiao
Ou, Lijun
Yang, Sha
author_sort Liu, Zhoubin
collection PubMed
description Light quality and intensity can have a significant impact on plant health and crop productivity. Chlorophylls and carotenoids are classes of plant pigments that are responsible for harvesting light energy and protecting plants from the damaging effects of intense light. Our understanding of the role played by plant pigments in light sensitivity has been aided by light-sensitive mutants that change colors upon exposure to light of variable intensity. In this study, we conducted transcriptomic, metabolomic, and hormone analyses on a novel yellowing mutant of pepper (yl1) to shed light on the molecular mechanism that regulates the transition from green to yellow leaves in this mutant upon exposure to high-intensity light. Our results revealed greater accumulation of the carotenoid precursor phytoene and the carotenoids phytofluene, antheraxanthin, and zeaxanthin in yl1 compared with wild-type plants under high light intensity. A transcriptomic analysis confirmed that enzymes involved in zeaxanthin and antheraxanthin biosynthesis were upregulated in yl1 upon exposure to high-intensity light. We also identified a single basic helix–loop–helix (bHLH) transcription factor, bHLH71-like, that was differentially expressed and positively correlated with light intensity in yl1. Silencing of bHLH71-like in pepper plants suppressed the yellowing phenotype and led to reduced accumulation of zeaxanthin and antheraxanthin. We propose that the yellow phenotype of yl1 induced by high light intensity could be caused by an increase in yellow carotenoid pigments, concurrent with a decrease in chlorophyll accumulation. Our results also suggest that bHLH71-like functions as a positive regulator of carotenoid biosynthesis in pepper.
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spelling pubmed-103236272023-07-07 A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light Liu, Zhoubin Mao, Lianzhen Yang, Bozhi Cui, Qingzhi Dai, Yunhua Li, Xueqiao Chen, Yisong Dai, Xiongze Zou, Xuexiao Ou, Lijun Yang, Sha Hortic Res Article Light quality and intensity can have a significant impact on plant health and crop productivity. Chlorophylls and carotenoids are classes of plant pigments that are responsible for harvesting light energy and protecting plants from the damaging effects of intense light. Our understanding of the role played by plant pigments in light sensitivity has been aided by light-sensitive mutants that change colors upon exposure to light of variable intensity. In this study, we conducted transcriptomic, metabolomic, and hormone analyses on a novel yellowing mutant of pepper (yl1) to shed light on the molecular mechanism that regulates the transition from green to yellow leaves in this mutant upon exposure to high-intensity light. Our results revealed greater accumulation of the carotenoid precursor phytoene and the carotenoids phytofluene, antheraxanthin, and zeaxanthin in yl1 compared with wild-type plants under high light intensity. A transcriptomic analysis confirmed that enzymes involved in zeaxanthin and antheraxanthin biosynthesis were upregulated in yl1 upon exposure to high-intensity light. We also identified a single basic helix–loop–helix (bHLH) transcription factor, bHLH71-like, that was differentially expressed and positively correlated with light intensity in yl1. Silencing of bHLH71-like in pepper plants suppressed the yellowing phenotype and led to reduced accumulation of zeaxanthin and antheraxanthin. We propose that the yellow phenotype of yl1 induced by high light intensity could be caused by an increase in yellow carotenoid pigments, concurrent with a decrease in chlorophyll accumulation. Our results also suggest that bHLH71-like functions as a positive regulator of carotenoid biosynthesis in pepper. Oxford University Press 2023-05-12 /pmc/articles/PMC10323627/ /pubmed/37426880 http://dx.doi.org/10.1093/hr/uhad098 Text en © The Author(s) 2023. 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
Liu, Zhoubin
Mao, Lianzhen
Yang, Bozhi
Cui, Qingzhi
Dai, Yunhua
Li, Xueqiao
Chen, Yisong
Dai, Xiongze
Zou, Xuexiao
Ou, Lijun
Yang, Sha
A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title_full A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title_fullStr A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title_full_unstemmed A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title_short A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
title_sort multi-omics approach identifies bhlh71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10323627/
https://www.ncbi.nlm.nih.gov/pubmed/37426880
http://dx.doi.org/10.1093/hr/uhad098
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