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High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton

High temperature (HT) causes male sterility and decreases crop yields. Our previous works have demonstrated that sugar and auxin signaling pathways, Gossypium hirsutum Casein kinase I (GhCKI), and DNA methylation are all involved in HT-induced male sterility in cotton. However, the signaling mechani...

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Autores principales: Li, Yanlong, Li, Yaoyao, Su, Qian, Wu, Yuanlong, Zhang, Rui, Li, Yawei, Ma, Yizan, Ma, Huanhuan, Guo, Xiaoping, Zhu, Longfu, Min, Ling, Zhang, Xianlong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9342968/
https://www.ncbi.nlm.nih.gov/pubmed/35522025
http://dx.doi.org/10.1093/plphys/kiac213
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author Li, Yanlong
Li, Yaoyao
Su, Qian
Wu, Yuanlong
Zhang, Rui
Li, Yawei
Ma, Yizan
Ma, Huanhuan
Guo, Xiaoping
Zhu, Longfu
Min, Ling
Zhang, Xianlong
author_facet Li, Yanlong
Li, Yaoyao
Su, Qian
Wu, Yuanlong
Zhang, Rui
Li, Yawei
Ma, Yizan
Ma, Huanhuan
Guo, Xiaoping
Zhu, Longfu
Min, Ling
Zhang, Xianlong
author_sort Li, Yanlong
collection PubMed
description High temperature (HT) causes male sterility and decreases crop yields. Our previous works have demonstrated that sugar and auxin signaling pathways, Gossypium hirsutum Casein kinase I (GhCKI), and DNA methylation are all involved in HT-induced male sterility in cotton. However, the signaling mechanisms leading to distinct GhCKI expression patterns induced by HT between HT-tolerant and HT-sensitive cotton anthers remain largely unknown. Here, we identified a GhCKI promoter (ProGhCKI) region that functions in response to HT in anthers and found the transcription factor GhMYB4 binds to this region to act as an upstream positive regulator of GhCKI. In the tapetum of early-stage cotton anthers, upregulated expression of GhMYB4 under HT and overexpressed GhMYB4 under normal temperature both led to severe male sterility phenotypes, coupled with enhanced expression of GhCKI. We also found that GhMYB4 interacts with GhMYB66 to form a heterodimer to enhance its binding to ProGhCKI. However, GhMYB66 showed an expression pattern similar to GhMYB4 under HT but did not directly bind to ProGhCKI. Furthermore, HT reduced siRNA-mediated CHH DNA methylations in the GhMYB4 promoter, which enhanced the expression of GhMYB4 in tetrad stage anthers and promoted the formation of the GhMYB4/GhMYB66 heterodimer, which in turn elevated the transcription of GhCKI in the tapetum, leading to male sterility. Overall, we shed light on the GhMYB66–GhMYB4–GhCKI regulatory pathway in response to HT in cotton anthers.
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spelling pubmed-93429682022-08-02 High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton Li, Yanlong Li, Yaoyao Su, Qian Wu, Yuanlong Zhang, Rui Li, Yawei Ma, Yizan Ma, Huanhuan Guo, Xiaoping Zhu, Longfu Min, Ling Zhang, Xianlong Plant Physiol Research Articles High temperature (HT) causes male sterility and decreases crop yields. Our previous works have demonstrated that sugar and auxin signaling pathways, Gossypium hirsutum Casein kinase I (GhCKI), and DNA methylation are all involved in HT-induced male sterility in cotton. However, the signaling mechanisms leading to distinct GhCKI expression patterns induced by HT between HT-tolerant and HT-sensitive cotton anthers remain largely unknown. Here, we identified a GhCKI promoter (ProGhCKI) region that functions in response to HT in anthers and found the transcription factor GhMYB4 binds to this region to act as an upstream positive regulator of GhCKI. In the tapetum of early-stage cotton anthers, upregulated expression of GhMYB4 under HT and overexpressed GhMYB4 under normal temperature both led to severe male sterility phenotypes, coupled with enhanced expression of GhCKI. We also found that GhMYB4 interacts with GhMYB66 to form a heterodimer to enhance its binding to ProGhCKI. However, GhMYB66 showed an expression pattern similar to GhMYB4 under HT but did not directly bind to ProGhCKI. Furthermore, HT reduced siRNA-mediated CHH DNA methylations in the GhMYB4 promoter, which enhanced the expression of GhMYB4 in tetrad stage anthers and promoted the formation of the GhMYB4/GhMYB66 heterodimer, which in turn elevated the transcription of GhCKI in the tapetum, leading to male sterility. Overall, we shed light on the GhMYB66–GhMYB4–GhCKI regulatory pathway in response to HT in cotton anthers. Oxford University Press 2022-05-06 /pmc/articles/PMC9342968/ /pubmed/35522025 http://dx.doi.org/10.1093/plphys/kiac213 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Articles
Li, Yanlong
Li, Yaoyao
Su, Qian
Wu, Yuanlong
Zhang, Rui
Li, Yawei
Ma, Yizan
Ma, Huanhuan
Guo, Xiaoping
Zhu, Longfu
Min, Ling
Zhang, Xianlong
High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title_full High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title_fullStr High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title_full_unstemmed High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title_short High temperature induces male sterility via MYB66–MYB4–Casein kinase I signaling in cotton
title_sort high temperature induces male sterility via myb66–myb4–casein kinase i signaling in cotton
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9342968/
https://www.ncbi.nlm.nih.gov/pubmed/35522025
http://dx.doi.org/10.1093/plphys/kiac213
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