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AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis

CSLD3, a gene of the cellulose synthase-like D family, affects root hair elongation, but its interactions with ethylene signaling and phosphate-starvation are poorly understood. Here, we aim to understand the role of CSLD3 in the context of the ethylene signaling and phosphate starvation pathways in...

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Autores principales: Hu, Huizhen, Zhang, Ran, Dong, Shuchao, Li, Ying, Fan, Chunfen, Wang, Yanting, Xia, Tao, Chen, Peng, Wang, Lingqiang, Feng, Shengqiu, Persson, Staffan, Peng, Liangcai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6018909/
https://www.ncbi.nlm.nih.gov/pubmed/29253184
http://dx.doi.org/10.1093/jxb/erx470
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author Hu, Huizhen
Zhang, Ran
Dong, Shuchao
Li, Ying
Fan, Chunfen
Wang, Yanting
Xia, Tao
Chen, Peng
Wang, Lingqiang
Feng, Shengqiu
Persson, Staffan
Peng, Liangcai
author_facet Hu, Huizhen
Zhang, Ran
Dong, Shuchao
Li, Ying
Fan, Chunfen
Wang, Yanting
Xia, Tao
Chen, Peng
Wang, Lingqiang
Feng, Shengqiu
Persson, Staffan
Peng, Liangcai
author_sort Hu, Huizhen
collection PubMed
description CSLD3, a gene of the cellulose synthase-like D family, affects root hair elongation, but its interactions with ethylene signaling and phosphate-starvation are poorly understood. Here, we aim to understand the role of CSLD3 in the context of the ethylene signaling and phosphate starvation pathways in Arabidopsis plant growth. Therefore, we performed a comparative analysis of the csld3-1 mutant, CSLD3-overexpressing lines, and ethylene-response mutants, such as the constitutive ethylene-response mutant i-ctr1. We found that CSLD3 overexpression enhanced root and hypocotyl growth by increasing cell elongation, and that the root growth was highly sensitive to ethylene treatment (1 µM ACC), in particular under phosphate starvation. However, the CSLD3-mediated hypocotyl elongation occurred independently of the ethylene signaling pathway. Notably, the typical induction of root hair and root elongation by ethylene and phosphate-starvation was completely abolished in the csld3-1 mutant. Furthermore, i-ctr1 csld3-1 double-mutants were hairless like the csld3-1 parent, confirming that CSLD3 acts downstream of the ethylene signaling pathway during root growth. Moreover, the CSLD3 levels positively correlated with cellulose levels, indicating a role of CSLD3 in cellulose synthesis, which may explain the observed growth effects. Our results establish how CSLD3 works in the context of the ethylene signaling and phosphate-starvation pathways during root hair growth, cell elongation, and cell wall biosynthesis.
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spelling pubmed-60189092018-07-10 AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis Hu, Huizhen Zhang, Ran Dong, Shuchao Li, Ying Fan, Chunfen Wang, Yanting Xia, Tao Chen, Peng Wang, Lingqiang Feng, Shengqiu Persson, Staffan Peng, Liangcai J Exp Bot Research Papers CSLD3, a gene of the cellulose synthase-like D family, affects root hair elongation, but its interactions with ethylene signaling and phosphate-starvation are poorly understood. Here, we aim to understand the role of CSLD3 in the context of the ethylene signaling and phosphate starvation pathways in Arabidopsis plant growth. Therefore, we performed a comparative analysis of the csld3-1 mutant, CSLD3-overexpressing lines, and ethylene-response mutants, such as the constitutive ethylene-response mutant i-ctr1. We found that CSLD3 overexpression enhanced root and hypocotyl growth by increasing cell elongation, and that the root growth was highly sensitive to ethylene treatment (1 µM ACC), in particular under phosphate starvation. However, the CSLD3-mediated hypocotyl elongation occurred independently of the ethylene signaling pathway. Notably, the typical induction of root hair and root elongation by ethylene and phosphate-starvation was completely abolished in the csld3-1 mutant. Furthermore, i-ctr1 csld3-1 double-mutants were hairless like the csld3-1 parent, confirming that CSLD3 acts downstream of the ethylene signaling pathway during root growth. Moreover, the CSLD3 levels positively correlated with cellulose levels, indicating a role of CSLD3 in cellulose synthesis, which may explain the observed growth effects. Our results establish how CSLD3 works in the context of the ethylene signaling and phosphate-starvation pathways during root hair growth, cell elongation, and cell wall biosynthesis. Oxford University Press 2018-02-20 2017-12-14 /pmc/articles/PMC6018909/ /pubmed/29253184 http://dx.doi.org/10.1093/jxb/erx470 Text en © The Author(s) 2017. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Hu, Huizhen
Zhang, Ran
Dong, Shuchao
Li, Ying
Fan, Chunfen
Wang, Yanting
Xia, Tao
Chen, Peng
Wang, Lingqiang
Feng, Shengqiu
Persson, Staffan
Peng, Liangcai
AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title_full AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title_fullStr AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title_full_unstemmed AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title_short AtCSLD3 and GhCSLD3 mediate root growth and cell elongation downstream of the ethylene response pathway in Arabidopsis
title_sort atcsld3 and ghcsld3 mediate root growth and cell elongation downstream of the ethylene response pathway in arabidopsis
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6018909/
https://www.ncbi.nlm.nih.gov/pubmed/29253184
http://dx.doi.org/10.1093/jxb/erx470
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