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首页> 外文期刊>Molecular biology reports >In tobacco BY-2 cells xyloglucan oligosaccharides alter the expression of genes involved in cell wall metabolism, signalling, stress responses, cell division and transcriptional control
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In tobacco BY-2 cells xyloglucan oligosaccharides alter the expression of genes involved in cell wall metabolism, signalling, stress responses, cell division and transcriptional control

机译:在烟草BY-2细胞中,木葡聚糖寡糖改变涉及细胞壁代谢,信号传导,应激反应,细胞分裂和转录控制的基因的表达

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Xyloglucan oligosaccharides (XGOs) are breakdown products of XGs, the most abundant hemicelluloses of the primary cell walls of non-Poalean species. Treatment of cell cultures or whole plants with XGOs results in accelerated cell elongation and cell division, changes in primary root growth, and a stimulation of defence responses. They may therefore act as signalling molecules regulating plant growth and development. Previous work suggests an interaction with auxins and effects on cell wall loosening, however their mode of action is not fully understood. The effect of an XGO extract from tamarind (Tamarindus indica) on global gene expression was therefore investigated in tobacco BY-2 cells using microarrays. Over 500 genes were differentially regulated with similar numbers and functional classes of genes up- and down-regulated, indicating a complex interaction with the cellular machinery. Up-regulation of a putative XG endotransglycosylase/hydrolase-related (XTH) gene supports the mechanism of XGO action through cell wall loosening. Differential expression of defence-related genes supports a role for XGOs as elicitors. Changes in the expression of genes related to mitotic control and differentiation also support previous work showing that XGOs are mitotic inducers. XGOs also affected expression of several receptor-like kinase genes and transcription factors. Hence, XGOs have significant effects on expression of genes related to cell wall metabolism, signalling, stress responses, cell division and transcriptional control.
机译:木葡聚糖低聚糖(XGOs)是XGs的分解产物,XGs是非Poalean物种原代细胞壁中最丰富的半纤维素。用XGOs处理细胞培养物或整株植物会加速细胞伸长和细胞分裂,改变初生根的生长,并刺激防御反应。因此,它们可以充当调节植物生长和发育的信号分子。先前的工作表明与生长素的相互作用以及对细胞壁松弛的影响,但是它们的作用方式尚未完全被理解。因此,使用微阵列研究了在烟草BY-2细胞中罗望子(Tamarindus indica)的XGO提取物对全球基因表达的影响。超过500个基因被差异调节,其基因数量和功能类别均被上调和下调,表明与细胞机制的相互作用复杂。假定的XG内转糖基化酶/水解酶相关(XTH)基因的上调支持XGO通过细胞壁松动的作用机制。防御相关基因的差异表达支持XGOs作为激发子的作用。与有丝分裂控制和分化有关的基因表达的变化也支持以前的工作,表明XGOs是有丝分裂诱导剂。 XGOs还影响了几种受体样激酶基因和转录因子的表达。因此,XGOs对与细胞壁代谢,信号传导,应激反应,细胞分裂和转录控制有关的基因表达具有重要影响。

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