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OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism

The intine, the inner layer of the pollen wall, is essential for the normal development and germination of pollen. However, the composition and developmental regulation of the intine in rice (Oryza sativa) remain largely unknown. Here, we identify a microRNA, OsmiR528, which regulates the formation...

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Autores principales: Zhang, Yu-Chan, He, Rui-Rui, Lian, Jian-Ping, Zhou, Yan-Fei, Zhang, Fan, Li, Quan-Feng, Yu, Yang, Feng, Yan-Zhao, Yang, Yu-Wei, Lei, Meng-Qi, He, Huang, Zhang, Zhi, Chen, Yue-Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955233/
https://www.ncbi.nlm.nih.gov/pubmed/31871204
http://dx.doi.org/10.1073/pnas.1810968117
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author Zhang, Yu-Chan
He, Rui-Rui
Lian, Jian-Ping
Zhou, Yan-Fei
Zhang, Fan
Li, Quan-Feng
Yu, Yang
Feng, Yan-Zhao
Yang, Yu-Wei
Lei, Meng-Qi
He, Huang
Zhang, Zhi
Chen, Yue-Qin
author_facet Zhang, Yu-Chan
He, Rui-Rui
Lian, Jian-Ping
Zhou, Yan-Fei
Zhang, Fan
Li, Quan-Feng
Yu, Yang
Feng, Yan-Zhao
Yang, Yu-Wei
Lei, Meng-Qi
He, Huang
Zhang, Zhi
Chen, Yue-Qin
author_sort Zhang, Yu-Chan
collection PubMed
description The intine, the inner layer of the pollen wall, is essential for the normal development and germination of pollen. However, the composition and developmental regulation of the intine in rice (Oryza sativa) remain largely unknown. Here, we identify a microRNA, OsmiR528, which regulates the formation of the pollen intine and thus male fertility in rice. The mir528 knockout mutant aborted pollen development at the late binucleate pollen stage, significantly decreasing the seed-setting rate. We further demonstrated that OsmiR528 affects pollen development by directly targeting the uclacyanin gene OsUCL23 (encoding a member of the plant-specific blue copper protein family of phytocyanins) and regulating intine deposition. OsUCL23 overexpression phenocopied the mir528 mutant. The OsUCL23 protein localized in the prevacuolar compartments (PVCs) and multivesicular bodies (MVBs). We further revealed that OsUCL23 interacts with a member of the proton-dependent oligopeptide transport (POT) family of transporters to regulate various metabolic components, especially flavonoids. We propose a model in which OsmiR528 regulates pollen intine formation by directly targeting OsUCL23 and in which OsUCL23 interacts with the POT protein on the PVCs and MVBs to regulate the production of metabolites during pollen development. The study thus reveals the functions of OsmiR528 and an uclacyanin during pollen development.
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spelling pubmed-69552332020-01-14 OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism Zhang, Yu-Chan He, Rui-Rui Lian, Jian-Ping Zhou, Yan-Fei Zhang, Fan Li, Quan-Feng Yu, Yang Feng, Yan-Zhao Yang, Yu-Wei Lei, Meng-Qi He, Huang Zhang, Zhi Chen, Yue-Qin Proc Natl Acad Sci U S A Biological Sciences The intine, the inner layer of the pollen wall, is essential for the normal development and germination of pollen. However, the composition and developmental regulation of the intine in rice (Oryza sativa) remain largely unknown. Here, we identify a microRNA, OsmiR528, which regulates the formation of the pollen intine and thus male fertility in rice. The mir528 knockout mutant aborted pollen development at the late binucleate pollen stage, significantly decreasing the seed-setting rate. We further demonstrated that OsmiR528 affects pollen development by directly targeting the uclacyanin gene OsUCL23 (encoding a member of the plant-specific blue copper protein family of phytocyanins) and regulating intine deposition. OsUCL23 overexpression phenocopied the mir528 mutant. The OsUCL23 protein localized in the prevacuolar compartments (PVCs) and multivesicular bodies (MVBs). We further revealed that OsUCL23 interacts with a member of the proton-dependent oligopeptide transport (POT) family of transporters to regulate various metabolic components, especially flavonoids. We propose a model in which OsmiR528 regulates pollen intine formation by directly targeting OsUCL23 and in which OsUCL23 interacts with the POT protein on the PVCs and MVBs to regulate the production of metabolites during pollen development. The study thus reveals the functions of OsmiR528 and an uclacyanin during pollen development. National Academy of Sciences 2020-01-07 2019-12-23 /pmc/articles/PMC6955233/ /pubmed/31871204 http://dx.doi.org/10.1073/pnas.1810968117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Zhang, Yu-Chan
He, Rui-Rui
Lian, Jian-Ping
Zhou, Yan-Fei
Zhang, Fan
Li, Quan-Feng
Yu, Yang
Feng, Yan-Zhao
Yang, Yu-Wei
Lei, Meng-Qi
He, Huang
Zhang, Zhi
Chen, Yue-Qin
OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title_full OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title_fullStr OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title_full_unstemmed OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title_short OsmiR528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
title_sort osmir528 regulates rice-pollen intine formation by targeting an uclacyanin to influence flavonoid metabolism
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955233/
https://www.ncbi.nlm.nih.gov/pubmed/31871204
http://dx.doi.org/10.1073/pnas.1810968117
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