Literature DB >> 31432304

Cotton CSLD3 restores cell elongation and cell wall integrity mainly by enhancing primary cellulose production in the Arabidopsis cesa6 mutant.

Huizhen Hu1, Ran Zhang2, Yiwei Tang1, Chenglang Peng1, Leiming Wu2, Shengqiu Feng2, Peng Chen2, Yanting Wang2, Xuezhu Du3, Liangcai Peng4.   

Abstract

KEY MESSAGE: Overexpression of cotton cellulose synthase like D3 (GhCSLD3) gene partially rescued growth defect of atcesa6 mutant with restored cell elongation and cell wall integrity mainly by enhancing primary cellulose production. Among cellulose synthase like (CSL) family proteins, CSLDs share the highest sequence similarity to cellulose synthase (CESA) proteins. Although CSLD proteins have been implicated to participate in the synthesis of carbohydrate-based polymers (cellulose, pectins and hemicelluloses), and therefore plant cell wall formation, the exact biochemical function of CSLD proteins remains controversial and the function of the remaining CSLD genes in other species have not been determined. In this study, we attempted to illustrate the function of CSLD proteins by overexpressing Arabidopsis AtCSLD2, -3, -5 and cotton GhCSLD3 genes in the atcesa6 mutant, which has a background that is defective for primary cell wall cellulose synthesis in Arabidopsis. We found that GhCSLD3 overexpression partially rescued the growth defect of the atcesa6 mutant during early vegetative growth. Despite the atceas6 mutant having significantly reduced cellulose contents, the defected cell walls and lower dry mass, GhCSLD3 overexpression largely restored cell wall integrity (CWI) and improved the biomass yield. Our result suggests that overexpression of the GhCSLD protein enhances primary cell wall synthesis and compensates for the loss of CESAs, which is required for cellulose production, therefore rescuing defects in cell elongation and CWI.

Entities:  

Keywords:  Atcesa6 mutant; Cell elongation; Cell wall integrity (CWI); Cellulose; GhCSLD3; Transgenic Arabidopsis

Mesh:

Substances:

Year:  2019        PMID: 31432304     DOI: 10.1007/s11103-019-00910-1

Source DB:  PubMed          Journal:  Plant Mol Biol        ISSN: 0167-4412            Impact factor:   4.076


  61 in total

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7.  An integrative analysis of four CESA isoforms specific for fiber cellulose production between Gossypium hirsutum and Gossypium barbadense.

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8.  Regulation of Meristem Morphogenesis by Cell Wall Synthases in Arabidopsis.

Authors:  Weibing Yang; Christoph Schuster; Cherie T Beahan; Varodom Charoensawan; Alexis Peaucelle; Antony Bacic; Monika S Doblin; Raymond Wightman; Elliot M Meyerowitz
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10.  A survey of plant and algal genomes and transcriptomes reveals new insights into the evolution and function of the cellulose synthase superfamily.

Authors:  Yanbin Yin; Mitrick A Johns; Huansheng Cao; Manju Rupani
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3.  A GPAT1 Mutation in Arabidopsis Enhances Plant Height but Impairs Seed Oil Biosynthesis.

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4.  Revealing Genetic Differences in Fiber Elongation between the Offspring of Sea Island Cotton and Upland Cotton Backcross Populations Based on Transcriptome and Weighted Gene Coexpression Networks.

Authors:  Shengmei Li; Shiwei Geng; Bo Pang; Jieyin Zhao; Yajie Huang; Cun Rui; Jinxin Cui; Yang Jiao; Ru Zhang; Wenwei Gao
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5.  A novel rice fragile culm 24 mutant encodes a UDP-glucose epimerase that affects cell wall properties and photosynthesis.

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Review 6.  Advances about the Roles of Membranes in Cotton Fiber Development.

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  6 in total

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