Cargando…

Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls

Auxin-induced cell elongation relies in part on the acidification of the cell wall, a process known as acid growth that presumably triggers expansin-mediated wall loosening via altered interactions between cellulose microfibrils. Cellulose microfibrils are a major determinant for anisotropic growth...

Descripción completa

Detalles Bibliográficos
Autores principales: Xin, Xiaoran, Lei, Lei, Zheng, Yunzhen, Zhang, Tian, Pingali, Sai Venkatesh, O’Neill, Hugh, Cosgrove, Daniel J, Li, Shundai, Gu, Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260726/
https://www.ncbi.nlm.nih.gov/pubmed/32016356
http://dx.doi.org/10.1093/jxb/eraa063
_version_ 1783540378482245632
author Xin, Xiaoran
Lei, Lei
Zheng, Yunzhen
Zhang, Tian
Pingali, Sai Venkatesh
O’Neill, Hugh
Cosgrove, Daniel J
Li, Shundai
Gu, Ying
author_facet Xin, Xiaoran
Lei, Lei
Zheng, Yunzhen
Zhang, Tian
Pingali, Sai Venkatesh
O’Neill, Hugh
Cosgrove, Daniel J
Li, Shundai
Gu, Ying
author_sort Xin, Xiaoran
collection PubMed
description Auxin-induced cell elongation relies in part on the acidification of the cell wall, a process known as acid growth that presumably triggers expansin-mediated wall loosening via altered interactions between cellulose microfibrils. Cellulose microfibrils are a major determinant for anisotropic growth and they provide the scaffold for cell wall assembly. Little is known about how acid growth depends on cell wall architecture. To explore the relationship between acid growth-mediated cell elongation and plant cell wall architecture, two mutants (jia1-1 and csi1-3) that are defective in cellulose biosynthesis and cellulose microfibril organization were analyzed. The study revealed that cell elongation is dependent on CSI1-mediated cell wall architecture but not on the overall crystalline cellulose content. We observed a correlation between loss of crossed-polylamellate walls and loss of auxin- and fusicoccin-induced cell growth in csi1-3. Furthermore, induced loss of crossed-polylamellate walls via disruption of cortical microtubules mimics the effect of csi1 in acid growth. We hypothesize that CSI1- and microtubule-dependent crossed-polylamellate walls are required for acid growth in Arabidopsis hypocotyls.
format Online
Article
Text
id pubmed-7260726
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-72607262020-06-03 Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls Xin, Xiaoran Lei, Lei Zheng, Yunzhen Zhang, Tian Pingali, Sai Venkatesh O’Neill, Hugh Cosgrove, Daniel J Li, Shundai Gu, Ying J Exp Bot Research Papers Auxin-induced cell elongation relies in part on the acidification of the cell wall, a process known as acid growth that presumably triggers expansin-mediated wall loosening via altered interactions between cellulose microfibrils. Cellulose microfibrils are a major determinant for anisotropic growth and they provide the scaffold for cell wall assembly. Little is known about how acid growth depends on cell wall architecture. To explore the relationship between acid growth-mediated cell elongation and plant cell wall architecture, two mutants (jia1-1 and csi1-3) that are defective in cellulose biosynthesis and cellulose microfibril organization were analyzed. The study revealed that cell elongation is dependent on CSI1-mediated cell wall architecture but not on the overall crystalline cellulose content. We observed a correlation between loss of crossed-polylamellate walls and loss of auxin- and fusicoccin-induced cell growth in csi1-3. Furthermore, induced loss of crossed-polylamellate walls via disruption of cortical microtubules mimics the effect of csi1 in acid growth. We hypothesize that CSI1- and microtubule-dependent crossed-polylamellate walls are required for acid growth in Arabidopsis hypocotyls. Oxford University Press 2020-05-30 2020-02-04 /pmc/articles/PMC7260726/ /pubmed/32016356 http://dx.doi.org/10.1093/jxb/eraa063 Text en © The Author(s) 2020. 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
Xin, Xiaoran
Lei, Lei
Zheng, Yunzhen
Zhang, Tian
Pingali, Sai Venkatesh
O’Neill, Hugh
Cosgrove, Daniel J
Li, Shundai
Gu, Ying
Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title_full Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title_fullStr Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title_full_unstemmed Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title_short Cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in Arabidopsis hypocotyls
title_sort cellulose synthase interactive1- and microtubule-dependent cell wall architecture is required for acid growth in arabidopsis hypocotyls
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7260726/
https://www.ncbi.nlm.nih.gov/pubmed/32016356
http://dx.doi.org/10.1093/jxb/eraa063
work_keys_str_mv AT xinxiaoran cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT leilei cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT zhengyunzhen cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT zhangtian cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT pingalisaivenkatesh cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT oneillhugh cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT cosgrovedanielj cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT lishundai cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls
AT guying cellulosesynthaseinteractive1andmicrotubuledependentcellwallarchitectureisrequiredforacidgrowthinarabidopsishypocotyls