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SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean

Nitrogen fixation in soybean takes place in root nodules that arise from de novo cell divisions in the root cortex. Although several early nodulin genes have been identified, the mechanism behind the stimulation of cortical cell division during nodulation has not been fully resolved. Here we provide...

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Autores principales: Wang, Chunhua, Li, Meng, Zhao, Yang, Liang, Nengsong, Li, Haiyang, Li, Pengxue, Yang, Liling, Xu, Mengyuan, Bian, Xinxin, Wang, Mengxue, Wu, Shasha, Niu, Xufang, Wang, Mengyao, Li, Xinxin, Sang, Yi, Dong, Wentao, Wang, Ertao, Gallagher, Kimberly L., Wu, Shuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8784155/
https://www.ncbi.nlm.nih.gov/pubmed/35022232
http://dx.doi.org/10.1073/pnas.2108641119
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author Wang, Chunhua
Li, Meng
Zhao, Yang
Liang, Nengsong
Li, Haiyang
Li, Pengxue
Yang, Liling
Xu, Mengyuan
Bian, Xinxin
Wang, Mengxue
Wu, Shasha
Niu, Xufang
Wang, Mengyao
Li, Xinxin
Sang, Yi
Dong, Wentao
Wang, Ertao
Gallagher, Kimberly L.
Wu, Shuang
author_facet Wang, Chunhua
Li, Meng
Zhao, Yang
Liang, Nengsong
Li, Haiyang
Li, Pengxue
Yang, Liling
Xu, Mengyuan
Bian, Xinxin
Wang, Mengxue
Wu, Shasha
Niu, Xufang
Wang, Mengyao
Li, Xinxin
Sang, Yi
Dong, Wentao
Wang, Ertao
Gallagher, Kimberly L.
Wu, Shuang
author_sort Wang, Chunhua
collection PubMed
description Nitrogen fixation in soybean takes place in root nodules that arise from de novo cell divisions in the root cortex. Although several early nodulin genes have been identified, the mechanism behind the stimulation of cortical cell division during nodulation has not been fully resolved. Here we provide evidence that two paralogs of soybean SHORT-ROOT (GmSHR) play vital roles in soybean nodulation. Expression of GmSHR4 and GmSHR5 (GmSHR4/5) is induced in cortical cells at the beginning of nodulation, when the first cell divisions occur. The expression level of GmSHR4/5 is positively associated with cortical cell division and nodulation. Knockdown of GmSHR5 inhibits cell division in outer cortical layers during nodulation. Knockdown of both paralogs disrupts the cell division throughout the cortex, resulting in poorly organized nodule primordia with delayed vascular tissue formation. GmSHR4/5 function by enhancing cytokinin signaling and activating early nodulin genes. Interestingly, D-type cyclins act downstream of GmSHR4/5, and GmSHR4/5 form a feedforward loop regulating D-type cyclins. Overexpression of D-type cyclins in soybean roots also enhanced nodulation. Collectively, we conclude that the GmSHR4/5-mediated pathway represents a vital module that triggers cytokinin signaling and activates D-type cyclins during nodulation in soybean.
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spelling pubmed-87841552022-02-01 SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean Wang, Chunhua Li, Meng Zhao, Yang Liang, Nengsong Li, Haiyang Li, Pengxue Yang, Liling Xu, Mengyuan Bian, Xinxin Wang, Mengxue Wu, Shasha Niu, Xufang Wang, Mengyao Li, Xinxin Sang, Yi Dong, Wentao Wang, Ertao Gallagher, Kimberly L. Wu, Shuang Proc Natl Acad Sci U S A Biological Sciences Nitrogen fixation in soybean takes place in root nodules that arise from de novo cell divisions in the root cortex. Although several early nodulin genes have been identified, the mechanism behind the stimulation of cortical cell division during nodulation has not been fully resolved. Here we provide evidence that two paralogs of soybean SHORT-ROOT (GmSHR) play vital roles in soybean nodulation. Expression of GmSHR4 and GmSHR5 (GmSHR4/5) is induced in cortical cells at the beginning of nodulation, when the first cell divisions occur. The expression level of GmSHR4/5 is positively associated with cortical cell division and nodulation. Knockdown of GmSHR5 inhibits cell division in outer cortical layers during nodulation. Knockdown of both paralogs disrupts the cell division throughout the cortex, resulting in poorly organized nodule primordia with delayed vascular tissue formation. GmSHR4/5 function by enhancing cytokinin signaling and activating early nodulin genes. Interestingly, D-type cyclins act downstream of GmSHR4/5, and GmSHR4/5 form a feedforward loop regulating D-type cyclins. Overexpression of D-type cyclins in soybean roots also enhanced nodulation. Collectively, we conclude that the GmSHR4/5-mediated pathway represents a vital module that triggers cytokinin signaling and activates D-type cyclins during nodulation in soybean. National Academy of Sciences 2022-01-12 2022-01-18 /pmc/articles/PMC8784155/ /pubmed/35022232 http://dx.doi.org/10.1073/pnas.2108641119 Text en Copyright © 2022 the Author(s). Published by PNAS. 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
Wang, Chunhua
Li, Meng
Zhao, Yang
Liang, Nengsong
Li, Haiyang
Li, Pengxue
Yang, Liling
Xu, Mengyuan
Bian, Xinxin
Wang, Mengxue
Wu, Shasha
Niu, Xufang
Wang, Mengyao
Li, Xinxin
Sang, Yi
Dong, Wentao
Wang, Ertao
Gallagher, Kimberly L.
Wu, Shuang
SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title_full SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title_fullStr SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title_full_unstemmed SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title_short SHORT-ROOT paralogs mediate feedforward regulation of D-type cyclin to promote nodule formation in soybean
title_sort short-root paralogs mediate feedforward regulation of d-type cyclin to promote nodule formation in soybean
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8784155/
https://www.ncbi.nlm.nih.gov/pubmed/35022232
http://dx.doi.org/10.1073/pnas.2108641119
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