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Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines

Soybean cyst nematode (SCN, Heterodera glycines) is an obligate sedentary biotroph that poses major threats to soybean production globally. Recently, multiple miRNAome studies revealed that miRNAs participate in complicated soybean-SCN interactions by regulating their target genes. However, the func...

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Autores principales: Lei, Piao, Qi, Nawei, Zhou, Yuan, Wang, Yuanyuan, Zhu, Xiaofeng, Xuan, Yuanhu, Liu, Xiaoyu, Fan, Haiyan, Chen, Lijie, Duan, Yuxi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658632/
https://www.ncbi.nlm.nih.gov/pubmed/34884977
http://dx.doi.org/10.3390/ijms222313172
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author Lei, Piao
Qi, Nawei
Zhou, Yuan
Wang, Yuanyuan
Zhu, Xiaofeng
Xuan, Yuanhu
Liu, Xiaoyu
Fan, Haiyan
Chen, Lijie
Duan, Yuxi
author_facet Lei, Piao
Qi, Nawei
Zhou, Yuan
Wang, Yuanyuan
Zhu, Xiaofeng
Xuan, Yuanhu
Liu, Xiaoyu
Fan, Haiyan
Chen, Lijie
Duan, Yuxi
author_sort Lei, Piao
collection PubMed
description Soybean cyst nematode (SCN, Heterodera glycines) is an obligate sedentary biotroph that poses major threats to soybean production globally. Recently, multiple miRNAome studies revealed that miRNAs participate in complicated soybean-SCN interactions by regulating their target genes. However, the functional roles of miRNA and target genes regulatory network are still poorly understood. In present study, we firstly investigated the expression patterns of miR159 and targeted GmMYB33 genes. The results showed miR159-3p downregulation during SCN infection; conversely, GmMYB33 genes upregulated. Furthermore, miR159 overexpressing and silencing soybean hairy roots exhibited strong resistance and susceptibility to H. glycines, respectively. In particular, miR159-GAMYB genes are reported to be involve in GA signaling and metabolism. Therefore, we then investigated the effects of GA application on the expression of miR159-GAMYB module and the development of H. glycines. We found that GA directly controls the miR159-GAMYB module, and exogenous GA application enhanced endogenous biologically active GA(1) and GA(3), the abundance of miR159, lowered the expression of GmMYB33 genes and delayed the development of H. glycines. Moreover, SCN infection also results in endogenous GA content decreased in soybean roots. In summary, the soybean miR159-GmMYB33 module was directly involved in the GA-modulated soybean resistance to H. glycines.
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spelling pubmed-86586322021-12-10 Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines Lei, Piao Qi, Nawei Zhou, Yuan Wang, Yuanyuan Zhu, Xiaofeng Xuan, Yuanhu Liu, Xiaoyu Fan, Haiyan Chen, Lijie Duan, Yuxi Int J Mol Sci Article Soybean cyst nematode (SCN, Heterodera glycines) is an obligate sedentary biotroph that poses major threats to soybean production globally. Recently, multiple miRNAome studies revealed that miRNAs participate in complicated soybean-SCN interactions by regulating their target genes. However, the functional roles of miRNA and target genes regulatory network are still poorly understood. In present study, we firstly investigated the expression patterns of miR159 and targeted GmMYB33 genes. The results showed miR159-3p downregulation during SCN infection; conversely, GmMYB33 genes upregulated. Furthermore, miR159 overexpressing and silencing soybean hairy roots exhibited strong resistance and susceptibility to H. glycines, respectively. In particular, miR159-GAMYB genes are reported to be involve in GA signaling and metabolism. Therefore, we then investigated the effects of GA application on the expression of miR159-GAMYB module and the development of H. glycines. We found that GA directly controls the miR159-GAMYB module, and exogenous GA application enhanced endogenous biologically active GA(1) and GA(3), the abundance of miR159, lowered the expression of GmMYB33 genes and delayed the development of H. glycines. Moreover, SCN infection also results in endogenous GA content decreased in soybean roots. In summary, the soybean miR159-GmMYB33 module was directly involved in the GA-modulated soybean resistance to H. glycines. MDPI 2021-12-06 /pmc/articles/PMC8658632/ /pubmed/34884977 http://dx.doi.org/10.3390/ijms222313172 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lei, Piao
Qi, Nawei
Zhou, Yuan
Wang, Yuanyuan
Zhu, Xiaofeng
Xuan, Yuanhu
Liu, Xiaoyu
Fan, Haiyan
Chen, Lijie
Duan, Yuxi
Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title_full Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title_fullStr Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title_full_unstemmed Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title_short Soybean miR159-GmMYB33 Regulatory Network Involved in Gibberellin-Modulated Resistance to Heterodera glycines
title_sort soybean mir159-gmmyb33 regulatory network involved in gibberellin-modulated resistance to heterodera glycines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8658632/
https://www.ncbi.nlm.nih.gov/pubmed/34884977
http://dx.doi.org/10.3390/ijms222313172
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