Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation

Chlorophyll is a vital component of photosynthesis and must be produced throughout the plant life cycle. Light-dependent protochlorophyllide oxidoreductase (LPOR) is a pivotal enzyme in the chlorophyll biosynthesis pathway, catalyzing the conversion of Pchlide to Chlide. The presence of different ty...

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出版年:Technology in Agronomy
主要な著者: Qi Wang, Jing Gao, Ji-yu Chen, Xian-ming Tan, Chun-yan Liu, Liang Yu, Feng Yang, Wen-yu Yang
フォーマット: 論文
言語:英語
出版事項: Maximum Academic Press 2024-01-01
主題:
オンライン・アクセス:https://www.maxapress.com/article/doi/10.48130/tia-0024-0019
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author Qi Wang
Jing Gao
Ji-yu Chen
Xian-ming Tan
Chun-yan Liu
Liang Yu
Feng Yang
Wen-yu Yang
author_facet Qi Wang
Jing Gao
Ji-yu Chen
Xian-ming Tan
Chun-yan Liu
Liang Yu
Feng Yang
Wen-yu Yang
author_sort Qi Wang
collection DOAJ
container_title Technology in Agronomy
description Chlorophyll is a vital component of photosynthesis and must be produced throughout the plant life cycle. Light-dependent protochlorophyllide oxidoreductase (LPOR) is a pivotal enzyme in the chlorophyll biosynthesis pathway, catalyzing the conversion of Pchlide to Chlide. The presence of different types of LPOR ensures the efficient synthesis of chlorophyll in photosynthetic organisms during the dark-light transition. In addition to the transcriptional, translational, and post-translational regulation of LPOR function under different abiotic stresses, the nature of the substrate also influences LPOR function. Here, a perspective on chlorophyll synthesis and the development of chloroplasts is offered, the importance of LPOR in safeguarding plant light energy utilization is summarized, the gene expression pattern and structural-functional features of LPOR are outlined, as well as the role of LPOR in abiotic stress tolerance response, the catalytic mechanism of LPOR as well as the modulation of LPOR by light signals and other environmental factors are discussed. The aim is to provide references for the cultivation and innovation of plant germplasm resources with stress tolerance.
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spelling doaj-art-2be7bfdffb3f46dfbb43645c8cc408e52025-08-20T01:20:08ZengMaximum Academic PressTechnology in Agronomy2835-94452024-01-0141819010.48130/tia-0024-0019tia-0024-0019Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptationQi Wang0Jing Gao1Ji-yu Chen2Xian-ming Tan3Chun-yan Liu4Liang Yu5Feng Yang6Wen-yu Yang7College of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaCollege of Agronomy, Sichuan Agricultural University, Chengdu 611130, PR ChinaChlorophyll is a vital component of photosynthesis and must be produced throughout the plant life cycle. Light-dependent protochlorophyllide oxidoreductase (LPOR) is a pivotal enzyme in the chlorophyll biosynthesis pathway, catalyzing the conversion of Pchlide to Chlide. The presence of different types of LPOR ensures the efficient synthesis of chlorophyll in photosynthetic organisms during the dark-light transition. In addition to the transcriptional, translational, and post-translational regulation of LPOR function under different abiotic stresses, the nature of the substrate also influences LPOR function. Here, a perspective on chlorophyll synthesis and the development of chloroplasts is offered, the importance of LPOR in safeguarding plant light energy utilization is summarized, the gene expression pattern and structural-functional features of LPOR are outlined, as well as the role of LPOR in abiotic stress tolerance response, the catalytic mechanism of LPOR as well as the modulation of LPOR by light signals and other environmental factors are discussed. The aim is to provide references for the cultivation and innovation of plant germplasm resources with stress tolerance.https://www.maxapress.com/article/doi/10.48130/tia-0024-0019chlorophyll biosynthesisporlight signalingprotochlorophyllide.
spellingShingle Qi Wang
Jing Gao
Ji-yu Chen
Xian-ming Tan
Chun-yan Liu
Liang Yu
Feng Yang
Wen-yu Yang
Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
chlorophyll biosynthesis
por
light signaling
protochlorophyllide.
title Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
title_full Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
title_fullStr Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
title_full_unstemmed Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
title_short Regulatory mechanism of a light-dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
title_sort regulatory mechanism of a light dependent protochlorophyllide oxidoreductase in chlorophyll biosynthesis and environmental adaptation
topic chlorophyll biosynthesis
por
light signaling
protochlorophyllide.
url https://www.maxapress.com/article/doi/10.48130/tia-0024-0019
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