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Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves

Poplar is an important afforestation and urban greening species. Poplar leaf development occurs in stages, from young to mature and then from mature to senescent; these are accompanied by various phenotypic and physiological changes. However, the associated transcriptional regulatory network is rela...

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Autores principales: Du, Kang, Jiang, Shenxiu, Chen, Hao, Xia, Yufei, Guo, Ruihua, Ling, Aoyu, Liao, Ting, Wu, Wenqi, Kang, Xiangyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10611553/
https://www.ncbi.nlm.nih.gov/pubmed/37899951
http://dx.doi.org/10.1093/hr/uhad186
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author Du, Kang
Jiang, Shenxiu
Chen, Hao
Xia, Yufei
Guo, Ruihua
Ling, Aoyu
Liao, Ting
Wu, Wenqi
Kang, Xiangyang
author_facet Du, Kang
Jiang, Shenxiu
Chen, Hao
Xia, Yufei
Guo, Ruihua
Ling, Aoyu
Liao, Ting
Wu, Wenqi
Kang, Xiangyang
author_sort Du, Kang
collection PubMed
description Poplar is an important afforestation and urban greening species. Poplar leaf development occurs in stages, from young to mature and then from mature to senescent; these are accompanied by various phenotypic and physiological changes. However, the associated transcriptional regulatory network is relatively unexplored. We first used principal component analysis to classify poplar leaves at different leaf positions into two stages: developmental maturity (the stage of maximum photosynthetic capacity); and the stage when photosynthetic capacity started to decline and gradually changed to senescence. The two stages were then further subdivided into five intervals by gene expression clustering analysis: young leaves, the period of cell genesis and functional differentiation (L1); young leaves, the period of development and initial formation of photosynthetic capacity (L3–L7); the period of maximum photosynthetic capacity of functional leaves (L9–L13); the period of decreasing photosynthetic capacity of functional leaves (L15–L27); and the period of senescent leaves (L29). Using a weighted co-expression gene network analysis of regulatory genes, high-resolution spatiotemporal transcriptional regulatory networks were constructed to reveal the core regulators that regulate leaf development. Spatiotemporal transcriptome data of poplar leaves revealed dynamic changes in genes and miRNAs during leaf development and identified several core regulators of leaf development, such as GRF5 and MYB5. This in-depth analysis of transcriptional regulation during leaf development provides a theoretical basis for exploring the biological basis of the transcriptional regulation of leaf development and the molecular design of breeding for delaying leaf senescence.
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spelling pubmed-106115532023-10-29 Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves Du, Kang Jiang, Shenxiu Chen, Hao Xia, Yufei Guo, Ruihua Ling, Aoyu Liao, Ting Wu, Wenqi Kang, Xiangyang Hortic Res Article Poplar is an important afforestation and urban greening species. Poplar leaf development occurs in stages, from young to mature and then from mature to senescent; these are accompanied by various phenotypic and physiological changes. However, the associated transcriptional regulatory network is relatively unexplored. We first used principal component analysis to classify poplar leaves at different leaf positions into two stages: developmental maturity (the stage of maximum photosynthetic capacity); and the stage when photosynthetic capacity started to decline and gradually changed to senescence. The two stages were then further subdivided into five intervals by gene expression clustering analysis: young leaves, the period of cell genesis and functional differentiation (L1); young leaves, the period of development and initial formation of photosynthetic capacity (L3–L7); the period of maximum photosynthetic capacity of functional leaves (L9–L13); the period of decreasing photosynthetic capacity of functional leaves (L15–L27); and the period of senescent leaves (L29). Using a weighted co-expression gene network analysis of regulatory genes, high-resolution spatiotemporal transcriptional regulatory networks were constructed to reveal the core regulators that regulate leaf development. Spatiotemporal transcriptome data of poplar leaves revealed dynamic changes in genes and miRNAs during leaf development and identified several core regulators of leaf development, such as GRF5 and MYB5. This in-depth analysis of transcriptional regulation during leaf development provides a theoretical basis for exploring the biological basis of the transcriptional regulation of leaf development and the molecular design of breeding for delaying leaf senescence. Oxford University Press 2023-09-26 /pmc/articles/PMC10611553/ /pubmed/37899951 http://dx.doi.org/10.1093/hr/uhad186 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
Du, Kang
Jiang, Shenxiu
Chen, Hao
Xia, Yufei
Guo, Ruihua
Ling, Aoyu
Liao, Ting
Wu, Wenqi
Kang, Xiangyang
Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title_full Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title_fullStr Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title_full_unstemmed Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title_short Spatiotemporal miRNA and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
title_sort spatiotemporal mirna and transcriptomic network dynamically regulate the developmental and senescence processes of poplar leaves
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10611553/
https://www.ncbi.nlm.nih.gov/pubmed/37899951
http://dx.doi.org/10.1093/hr/uhad186
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