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异恶草酮驯化的拟南芥悬浮培养细胞的新型细胞壁结构:全局转录谱分析与细胞分析

Novel cell wall architecture of isoxaben-habituated Arabidopsis suspension-cultured cells: global transcript profiling and cellular analysis.

作者信息

Manfield Iain W, Orfila Caroline, McCartney Lesley, Harholt Jesper, Bernal Adriana J, Scheller Henrik Vibe, Gilmartin Philip M, Mikkelsen Jørn D, Paul Knox J, Willats William G T

机构信息

Centre for Plant Sciences, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Plant J. 2004 Oct;40(2):260-75. doi: 10.1111/j.1365-313X.2004.02208.x.

Abstract

The herbicide isoxaben is a highly specific and potent inhibitor of cellulose synthesis in plants. Nevertheless, suspension-cultured cells can be habituated to grow in high concentrations of isoxaben, and apparently compensate for the disruption of cellulose synthesis by the modulation of other cell wall components. We have habituated Arabidopsis cells to isoxaben and characterized the cellular and genetic consequences. Near whole-genome transcript profiling implicated novel genes in cell wall assembly and extended our understanding of the activity of known cell wall-related genes including glycosyltransferases involved in cellulose and pectin biosynthesis. Habituation does not appear to be mediated by stress response processes, nor by functional redundancy within the cellulose synthase (AtCesA) family. Uniquely, amongst the cellulose synthase superfamily, AtCslD5 was highly upregulated and may play a role in the biosynthesis of the novel walls of habituated cells. In silico analysis of differentially expressed genes with unknown functions identified a putative glycosyltransferase and collagen-like putative cell wall protein.

摘要

除草剂异恶草酮是植物纤维素合成的一种高度特异性且强效的抑制剂。然而,悬浮培养的细胞能够适应在高浓度异恶草酮中生长,并且显然通过调节其他细胞壁成分来补偿纤维素合成的中断。我们已使拟南芥细胞适应异恶草酮,并对其细胞和遗传后果进行了表征。近乎全基因组的转录谱分析揭示了细胞壁组装中的新基因,并扩展了我们对已知细胞壁相关基因活性的理解,包括参与纤维素和果胶生物合成的糖基转移酶。适应似乎不是由应激反应过程介导的,也不是由纤维素合酶(AtCesA)家族内的功能冗余介导的。独特的是,在纤维素合酶超家族中,AtCslD5高度上调,可能在适应细胞新细胞壁的生物合成中发挥作用。对功能未知的差异表达基因进行的电子分析鉴定出一种推定的糖基转移酶和一种胶原样推定细胞壁蛋白。

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