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Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis

Chlorophyll (Chl) plays a crucial role in plant photosynthesis. The geranylgeraniol reductase gene (CHLP) participates in the terminal hydrogenation of chlorophyll biosynthesis. Although there are many studies related to the genome-wide analysis of Populus trichocarpa, little research has been condu...

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Autores principales: He, Fang, Shi, Yu-Jie, Chen, Qi, Li, Jun-Lin, Niu, Meng-Xue, Feng, Cong-Hua, Lu, Meng-Meng, Tian, Fei-Fei, Zhang, Fan, Lin, Tian-Tian, Chen, Liang-Hua, Liu, Qin-lin, Wan, Xue-Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9127975/
https://www.ncbi.nlm.nih.gov/pubmed/35620683
http://dx.doi.org/10.3389/fpls.2022.870970
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author He, Fang
Shi, Yu-Jie
Chen, Qi
Li, Jun-Lin
Niu, Meng-Xue
Feng, Cong-Hua
Lu, Meng-Meng
Tian, Fei-Fei
Zhang, Fan
Lin, Tian-Tian
Chen, Liang-Hua
Liu, Qin-lin
Wan, Xue-Qin
author_facet He, Fang
Shi, Yu-Jie
Chen, Qi
Li, Jun-Lin
Niu, Meng-Xue
Feng, Cong-Hua
Lu, Meng-Meng
Tian, Fei-Fei
Zhang, Fan
Lin, Tian-Tian
Chen, Liang-Hua
Liu, Qin-lin
Wan, Xue-Qin
author_sort He, Fang
collection PubMed
description Chlorophyll (Chl) plays a crucial role in plant photosynthesis. The geranylgeraniol reductase gene (CHLP) participates in the terminal hydrogenation of chlorophyll biosynthesis. Although there are many studies related to the genome-wide analysis of Populus trichocarpa, little research has been conducted on CHLP family genes, especially those concerning growth and photosynthesis. In this study, three CHLP genes were identified in Populus. The evolutionary tree indicated that the CHLP family genes were divided into six groups. Moreover, one pair of genes was derived from segmental duplications in Populus. Many elements related to growth were detected by cis-acting element analysis of the promoters of diverse PtrCHLPs. Furthermore, PtrCHLPs exhibit different tissue expression patterns. In addition, PtrCHLP3 is preferentially expressed in the leaves and plays an important role in regulating chlorophyll biosynthesis. Silencing of PtrCHLP3 in poplar resulted in a decrease in chlorophyll synthesis in plants, thus blocking electron transport during photosynthesis. Furthermore, inhibition of PtrCHLP3 expression in poplar can inhibit plant growth through the downregulation of photosynthesis. Ultimately, PtrCHLP3 formed a co-expression network with photosynthesis and chlorophyll biosynthesis-related genes, which synergistically affected the growth and photosynthesis of poplars. Thus, this study provides genetic resources for the improved breeding of fast-growing tree traits.
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spelling pubmed-91279752022-05-25 Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis He, Fang Shi, Yu-Jie Chen, Qi Li, Jun-Lin Niu, Meng-Xue Feng, Cong-Hua Lu, Meng-Meng Tian, Fei-Fei Zhang, Fan Lin, Tian-Tian Chen, Liang-Hua Liu, Qin-lin Wan, Xue-Qin Front Plant Sci Plant Science Chlorophyll (Chl) plays a crucial role in plant photosynthesis. The geranylgeraniol reductase gene (CHLP) participates in the terminal hydrogenation of chlorophyll biosynthesis. Although there are many studies related to the genome-wide analysis of Populus trichocarpa, little research has been conducted on CHLP family genes, especially those concerning growth and photosynthesis. In this study, three CHLP genes were identified in Populus. The evolutionary tree indicated that the CHLP family genes were divided into six groups. Moreover, one pair of genes was derived from segmental duplications in Populus. Many elements related to growth were detected by cis-acting element analysis of the promoters of diverse PtrCHLPs. Furthermore, PtrCHLPs exhibit different tissue expression patterns. In addition, PtrCHLP3 is preferentially expressed in the leaves and plays an important role in regulating chlorophyll biosynthesis. Silencing of PtrCHLP3 in poplar resulted in a decrease in chlorophyll synthesis in plants, thus blocking electron transport during photosynthesis. Furthermore, inhibition of PtrCHLP3 expression in poplar can inhibit plant growth through the downregulation of photosynthesis. Ultimately, PtrCHLP3 formed a co-expression network with photosynthesis and chlorophyll biosynthesis-related genes, which synergistically affected the growth and photosynthesis of poplars. Thus, this study provides genetic resources for the improved breeding of fast-growing tree traits. Frontiers Media S.A. 2022-05-10 /pmc/articles/PMC9127975/ /pubmed/35620683 http://dx.doi.org/10.3389/fpls.2022.870970 Text en Copyright © 2022 He, Shi, Chen, Li, Niu, Feng, Lu, Tian, Zhang, Lin, Chen, Liu and Wan. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
He, Fang
Shi, Yu-Jie
Chen, Qi
Li, Jun-Lin
Niu, Meng-Xue
Feng, Cong-Hua
Lu, Meng-Meng
Tian, Fei-Fei
Zhang, Fan
Lin, Tian-Tian
Chen, Liang-Hua
Liu, Qin-lin
Wan, Xue-Qin
Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title_full Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title_fullStr Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title_full_unstemmed Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title_short Genome-Wide Investigation of the PtrCHLP Family Reveals That PtrCHLP3 Actively Mediates Poplar Growth and Development by Regulating Photosynthesis
title_sort genome-wide investigation of the ptrchlp family reveals that ptrchlp3 actively mediates poplar growth and development by regulating photosynthesis
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9127975/
https://www.ncbi.nlm.nih.gov/pubmed/35620683
http://dx.doi.org/10.3389/fpls.2022.870970
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