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Decreasing methylation of pectin caused by nitric oxide leads to higher aluminium binding in cell walls and greater aluminium sensitivity of wheat roots

机译:一氧化氮引起的果胶甲基化程度降低导致铝在细胞壁中的结合增加小麦根部对铝的敏感性更高

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摘要

Nitric oxide (NO) is an important bioactive molecule involved in cell wall metabolism, which has been recognized as a major target of aluminium (Al) toxicity. We have investigated the effects of Al-induced NO production on cell wall composition and the subsequent Al-binding capacity in roots of an Al-sensitive cultivar of wheat (Triticum aestivum L. cv. Yang-5). We found that Al exposure induced NO accumulation in the root tips. Eliminating NO production with an NO scavenger (cPTIO) significantly alleviated the Al-induced inhibition of root growth and thus reduced Al accumulation. Elimination of NO, however, did not significantly affect malate efflux or rhizosphere pH changes under Al exposure. Levels of cell wall polysaccharides (pectin, hemicelluloses 1, and hemicelluloses 2) and pectin methylesterase activity, as well as pectin demethylation in the root apex, significantly increased under Al treatment. Exogenous cPTIO application significantly decreased pectin methylesterase activity and increased the degree of methylation of pectin in the root cell wall, thus decreasing the Al-binding capacity of pectin. These results suggest that the Al-induced enhanced production of NO decreases cell wall pectin methylation, thus increasing the Al-binding capacity of pectin and negatively regulating Al tolerance in wheat.
机译:一氧化氮(NO)是参与细胞壁代谢的重要生物活性分子,已被认为是铝(Al)毒性的主要目标。我们已经研究了铝诱导的NO产生对细胞壁组成和随后的Al敏感小麦品种(Triticum aestivum L. cv。Yang-5)根中Al结合能力的影响。我们发现铝的暴露引起根尖中NO的积累。用NO清除剂(cPTIO)消除了NO的产生,大大减轻了Al诱导的根生长抑制,从而减少了Al的积累。然而,消除铝不会显着影响铝暴露下的苹果酸外流或根际pH的变化。在铝处理下,细胞壁多糖(果胶,半纤维素1和半纤维素2)的水平和果胶甲基酯酶活性以及根尖中的果胶脱甲基化显着增加。外源性cPTIO的施用显着降低了果胶甲基酯酶的活性,并增加了根细胞壁中果胶的甲基化程度,从而降低了果胶的Al结合能力。这些结果表明,铝诱导的NO生成增加会降低细胞壁果胶的甲基化程度,从而增加果胶的铝结合能力并负面调节小麦的耐铝性。

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