首页> 外文OA文献 >XTH31, Encoding an in Vitro XEH/XET-Active Enzyme, Regulates Aluminum Sensitivity by Modulating in Vivo XET Action, Cell Wall Xyloglucan Content, and Aluminum Binding Capacity in Arabidopsis
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XTH31, Encoding an in Vitro XEH/XET-Active Enzyme, Regulates Aluminum Sensitivity by Modulating in Vivo XET Action, Cell Wall Xyloglucan Content, and Aluminum Binding Capacity in Arabidopsis

机译:XTH31编码一种体外XEH / XET活性酶,通过调节体内XET的作用,细胞壁木葡聚糖含量和拟南芥中的铝结合能力来调节铝的敏感性。

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摘要

Xyloglucan endohydrolase (XEH) and xyloglucan endotransglucosylase (XET) activities, encoded by xyloglucan endotransglucosylase-hydrolase (XTH) genes, are involved in cell wall extension by cutting or cutting and rejoining xyloglucan chains, respectively. However, the physiological significance of this biochemical activity remains incompletely understood. Here, we find that an XTH31 T-DNA insertion mutant, xth31, is more Al resistant than the wild type. XTH31 is bound to the plasma membrane and the encoding gene is expressed in the root elongation zone and in nascent leaves, suggesting a role in cell expansion. XTH31 transcript accumulation is strongly downregulated by Al treatment. XTH31 expression in yeast yields a protein with an in vitro XEH:XET activity ratio of >5000:1. xth31 accumulates significantly less Al in the root apex and cell wall, shows remarkably lower in vivo XET action and extractable XET activity, has a lower xyloglucan content, and exhibits slower elongation. An exogenous supply of xyloglucan significantly ameliorates Al toxicity by reducing Al accumulation in the roots, owing to the formation of an Al-xyloglucan complex in the medium, as verified by an obvious change in chemical shift of (27)Al-NMR. Taken together, the data indicate that XTH31 affects Al sensitivity by modulating cell wall xyloglucan content and Al binding capacity.
机译:由木葡聚糖内切葡糖苷酶水解酶(XTH)基因编码的木葡聚糖内切酶(XEH)和木葡聚糖内转葡糖基酶(XET)活性分别通过切割或切割和重新结合木葡聚糖链而参与细胞壁的扩展。但是,这种生化活性的生理意义仍然不完全了解。在这里,我们发现XTH31 T-DNA插入突变体xth31比野生型更具抗铝性。 XTH31与质膜结合,编码基因在根伸长区和新生叶片中表达,提示其在细胞扩增中的作用。 Al处理大大降低了XTH31转录物的积累。酵母中XTH31的表达产生的蛋白质的体外XEH:XET活性比> 5000:1。 xth31在根尖和细胞壁中积累的Al少得多,在体内的XET活性和可提取的XET活性显着降低,木葡聚糖含量较低,并且伸长较慢。木葡聚糖的外源供应通过减少铝在根中的积累而显着改善了铝的毒性,这是由于在培养基中形成了铝-木葡聚糖复合物,这一点已由(27)Al-NMR的化学位移发生明显变化所证实。两者合计,数据表明XTH31通过调节细胞壁木葡聚糖含量和Al结合能力影响Al敏感性。

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