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CSLD2、CSLD3 和 CSLD5 的合作活动对于拟南芥的正常发育是必需的。

The cooperative activities of CSLD2, CSLD3, and CSLD5 are required for normal Arabidopsis development.

机构信息

Department of Plant Biology and Biotechnology, Faculty of Life Sciences, University of Copenhagen, DK-1871 Frederiksberg C, Denmark.

出版信息

Mol Plant. 2011 Nov;4(6):1024-37. doi: 10.1093/mp/ssr026. Epub 2011 Apr 6.

Abstract

Glycosyltransferases of the Cellulose Synthase Like D (CSLD) subfamily have been reported to be involved in tip growth and stem development in Arabidopsis. The csld2 and csld3 mutants are root hair defective and the csld5 mutant has reduced stem growth. In this study, we produced double and triple knockout mutants of CSLD2, CSLD3, and CSLD5. Unlike the single mutants and the csld2/csld3 double mutant, the csld2/csld5, csld3/csld5, and csld2/ csld3/csld5 mutants were dwarfed and showed severely reduced viability. This demonstrates that the cooperative activities of CSLD2, CSLD3, and CSLD5 are required for normal Arabidopsis development, and that they are involved in important processes besides the specialized role in tip growth. The mutant phenotypes indicate that CSLD2 and CSLD3 have overlapping functions with CSLD5 in early plant development, whereas the CSLD2 and CSLD3 proteins are non-redundant. To determine the biochemical function of CSLD proteins, we used transient expression in tobacco leaves. Microsomes containing heterologously expressed CSLD5 transferred mannose from GDP-mannose onto endogenous acceptors. The same activity was detected when CSLD2 and CSLD3 were co-expressed but not when they were expressed separately. With monosaccharides as exogenous acceptors, microsomal preparations from CSLD5-expressing plants mediated the transfer of mannose from GDP-mannose onto mannose. These results were supported by immunodetection studies that showed reduced levels of a mannan epitope in the cell walls of stem interfascicular fibers and xylem vessels of the csld2/csld3/csld5 mutant.

摘要

纤维素合酶类似 D(CSLD)亚家族的糖基转移酶已被报道参与拟南芥的顶端生长和茎发育。csld2 和 csld3 突变体是根毛缺陷的,csld5 突变体的茎生长减少。在这项研究中,我们产生了 CSLD2、CSLD3 和 CSLD5 的双和三敲除突变体。与单个突变体和 csld2/csld3 双突变体不同,csld2/csld5、csld3/csld5 和 csld2/csld3/csld5 突变体矮小,活力严重降低。这表明 CSLD2、CSLD3 和 CSLD5 的协同活性是正常拟南芥发育所必需的,并且它们除了在顶端生长的专门作用之外,还参与了重要的过程。突变体表型表明 CSLD2 和 CSLD3 在早期植物发育中与 CSLD5 具有重叠功能,而 CSLD2 和 CSLD3 蛋白是非冗余的。为了确定 CSLD 蛋白的生化功能,我们使用烟草叶片中的瞬时表达。含有异源表达的 CSLD5 的微粒体将 GDP-甘露糖中的甘露糖转移到内源性受体上。当 CSLD2 和 CSLD3 共表达时检测到相同的活性,但当它们分别表达时则没有。当使用单糖作为外源受体时,来自 CSLD5 表达植物的微粒体制剂介导 GDP-甘露糖上甘露糖向甘露糖的转移。这些结果得到了免疫检测研究的支持,该研究表明 csld2/csld3/csld5 突变体茎间纤维和木质部管细胞壁中的甘露聚糖表位水平降低。

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