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木葡聚糖岩藻糖基化调节拟南芥细胞壁半纤维素的铝结合能力。

Xyloglucan Fucosylation Modulates Arabidopsis Cell Wall Hemicellulose Aluminium binding Capacity.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China.

出版信息

Sci Rep. 2018 Jan 11;8(1):428. doi: 10.1038/s41598-017-18711-1.

Abstract

Although xyloglucan (XyG) is reported to bind Aluminium (Al), the influence of XyG fucosylation on the cell wall Al binding capacity and plant Al stress responses is unclear. We show that Arabidopsis T-DNA insertion mutants with reduced AXY3 (XYLOSIDASE1) function and consequent reduced levels of fucosylated XyG are more sensitive to Al than wild-type Col-0 (WT). In contrast, T-DNA insertion mutants with reduced AXY8 (FUC95A) function and consequent increased levels of fucosylated XyG are more Al resistant. AXY3 transcript levels are strongly down regulated in response to 30 min Al treatment, whilst AXY8 transcript levels also repressed until 6 h following treatment onset. Mutants lacking AXY3 or AXY8 function exhibit opposing effects on Al contents of root cell wall and cell wall hemicellulose components. However, there was no difference in the amount of Al retained in the pectin components between mutants and WT. Finally, whilst the total sugar content of the hemicellulose fraction did not change, the altered hemicellulose Al content of the mutants is shown to be a likely consequence of their different XyG fucosylation levels. We conclude that variation in XyG fucosylation levels influences the Al sensitivity of Arabidopsis by affecting the Al-binding capacity of hemicellulose.

摘要

虽然木葡聚糖(XyG)被报道与铝(Al)结合,但 XyG 岩藻糖基化对细胞壁 Al 结合能力和植物 Al 胁迫反应的影响尚不清楚。我们表明,与野生型 Col-0(WT)相比,AXY3(木聚糖酶 1)功能降低导致岩藻糖基化 XyG 水平降低的拟南芥 T-DNA 插入突变体对 Al 更敏感。相比之下,AXY8(FUC95A)功能降低导致岩藻糖基化 XyG 水平升高的 T-DNA 插入突变体对 Al 具有更强的抗性。AXY3 转录物水平在 30 分钟 Al 处理后强烈下调,而 AXY8 转录物水平在处理开始后 6 小时也受到抑制。缺乏 AXY3 或 AXY8 功能的突变体在根细胞壁和细胞壁半纤维素成分的 Al 含量上表现出相反的效果。然而,在突变体和 WT 之间,果胶成分中保留的 Al 量没有差异。最后,虽然半纤维素部分的总糖含量没有变化,但突变体中改变的半纤维素 Al 含量很可能是由于它们不同的 XyG 岩藻糖基化水平造成的。我们得出结论,XyG 岩藻糖基化水平的变化通过影响半纤维素的 Al 结合能力来影响拟南芥对 Al 的敏感性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6679/5765015/ab409353d735/41598_2017_18711_Fig1_HTML.jpg

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