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Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice

Many rice microRNAs have been identified as fine‐tuning factors in the regulation of agronomic traits and immunity. Among them, Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 14 (OsSPL14) to positively regulate tillers but negatively regulate yield and immunity. Here, we uncovered that Os...

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Autores principales: Zhang, Ling‐Li, Huang, Yan‐Yan, Zheng, Ya‐Ping, Liu, Xin‐Xian, Zhou, Shi‐Xin, Yang, Xue‐Mei, Liu, Shou‐Lan, Li, Yan, Li, Jin‐Lu, Zhao, Sheng‐Li, Wang, He, Ji, Yun‐Peng, Zhang, Ji‐Wei, Pu, Mei, Zhao, Zhi‐Xue, Fan, Jing, Wang, Wen‐Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305248/
https://www.ncbi.nlm.nih.gov/pubmed/34997660
http://dx.doi.org/10.1111/tpj.15663
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author Zhang, Ling‐Li
Huang, Yan‐Yan
Zheng, Ya‐Ping
Liu, Xin‐Xian
Zhou, Shi‐Xin
Yang, Xue‐Mei
Liu, Shou‐Lan
Li, Yan
Li, Jin‐Lu
Zhao, Sheng‐Li
Wang, He
Ji, Yun‐Peng
Zhang, Ji‐Wei
Pu, Mei
Zhao, Zhi‐Xue
Fan, Jing
Wang, Wen‐Ming
author_facet Zhang, Ling‐Li
Huang, Yan‐Yan
Zheng, Ya‐Ping
Liu, Xin‐Xian
Zhou, Shi‐Xin
Yang, Xue‐Mei
Liu, Shou‐Lan
Li, Yan
Li, Jin‐Lu
Zhao, Sheng‐Li
Wang, He
Ji, Yun‐Peng
Zhang, Ji‐Wei
Pu, Mei
Zhao, Zhi‐Xue
Fan, Jing
Wang, Wen‐Ming
author_sort Zhang, Ling‐Li
collection PubMed
description Many rice microRNAs have been identified as fine‐tuning factors in the regulation of agronomic traits and immunity. Among them, Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 14 (OsSPL14) to positively regulate tillers but negatively regulate yield and immunity. Here, we uncovered that Osa‐miR535 targets another SPL gene, OsSPL4, to suppress rice immunity against Magnaporthe oryzae. Overexpression of Osa‐miR535 significantly decreased the accumulation of the fusion protein SPL4(TBS)‐YFP that contains the target site of Osa‐miR535 in OsSPL4. Consistently, Osa‐miR535 mediated the cleavage of OsSPL4 mRNA between the 10th and 11th base pair of the predicted binding site at the 3′ untranslated region. Transgenic rice lines overexpressing OsSPL4 (OXSPL4) displayed enhanced blast disease resistance accompanied by enhanced immune responses, including increased expression of defense‐relative genes and up‐accumulated H(2)O(2). By contrast, the knockout mutant osspl4 exhibited susceptibility. Moreover, OsSPL4 binds to the promoter of GH3.2, an indole‐3‐acetic acid‐amido synthetase, and promotes its expression. Together, these data indicate that Os‐miR535 targets OsSPL4 and OsSPL4‐GH3.2, which may parallel the OsSPL14‐WRKY45 module in rice blast disease resistance.
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spelling pubmed-93052482022-07-28 Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice Zhang, Ling‐Li Huang, Yan‐Yan Zheng, Ya‐Ping Liu, Xin‐Xian Zhou, Shi‐Xin Yang, Xue‐Mei Liu, Shou‐Lan Li, Yan Li, Jin‐Lu Zhao, Sheng‐Li Wang, He Ji, Yun‐Peng Zhang, Ji‐Wei Pu, Mei Zhao, Zhi‐Xue Fan, Jing Wang, Wen‐Ming Plant J Original Articles Many rice microRNAs have been identified as fine‐tuning factors in the regulation of agronomic traits and immunity. Among them, Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 14 (OsSPL14) to positively regulate tillers but negatively regulate yield and immunity. Here, we uncovered that Osa‐miR535 targets another SPL gene, OsSPL4, to suppress rice immunity against Magnaporthe oryzae. Overexpression of Osa‐miR535 significantly decreased the accumulation of the fusion protein SPL4(TBS)‐YFP that contains the target site of Osa‐miR535 in OsSPL4. Consistently, Osa‐miR535 mediated the cleavage of OsSPL4 mRNA between the 10th and 11th base pair of the predicted binding site at the 3′ untranslated region. Transgenic rice lines overexpressing OsSPL4 (OXSPL4) displayed enhanced blast disease resistance accompanied by enhanced immune responses, including increased expression of defense‐relative genes and up‐accumulated H(2)O(2). By contrast, the knockout mutant osspl4 exhibited susceptibility. Moreover, OsSPL4 binds to the promoter of GH3.2, an indole‐3‐acetic acid‐amido synthetase, and promotes its expression. Together, these data indicate that Os‐miR535 targets OsSPL4 and OsSPL4‐GH3.2, which may parallel the OsSPL14‐WRKY45 module in rice blast disease resistance. Blackwell Publishing Ltd 2022-02-08 2022-04 /pmc/articles/PMC9305248/ /pubmed/34997660 http://dx.doi.org/10.1111/tpj.15663 Text en © 2022 The Authors. The Plant Journal published by Society for Experimental Biology and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Zhang, Ling‐Li
Huang, Yan‐Yan
Zheng, Ya‐Ping
Liu, Xin‐Xian
Zhou, Shi‐Xin
Yang, Xue‐Mei
Liu, Shou‐Lan
Li, Yan
Li, Jin‐Lu
Zhao, Sheng‐Li
Wang, He
Ji, Yun‐Peng
Zhang, Ji‐Wei
Pu, Mei
Zhao, Zhi‐Xue
Fan, Jing
Wang, Wen‐Ming
Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title_full Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title_fullStr Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title_full_unstemmed Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title_short Osa‐miR535 targets SQUAMOSA promoter binding protein‐like 4 to regulate blast disease resistance in rice
title_sort osa‐mir535 targets squamosa promoter binding protein‐like 4 to regulate blast disease resistance in rice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305248/
https://www.ncbi.nlm.nih.gov/pubmed/34997660
http://dx.doi.org/10.1111/tpj.15663
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