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Inhibition of ethylene production by putrescine alleviates aluminium-induced root inhibition in wheat plants

机译:腐胺抑制乙烯生产可减轻铝诱导的小麦植株根系抑制

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摘要

Inhibition of root elongation is one of the most distinct symptoms of aluminium (Al) toxicity. Although putrescine (Put) has been identified as an important signaling molecule involved in Al tolerance, it is yet unknown how Put mitigates Al-induced root inhibition. Here, the possible mechanism was investigated by using two wheat genotypes differing in Al resistance: Al-tolerant Xi Aimai-1 and Al-sensitive Yangmai-5. Aluminium caused more root inhibition in Yangmai-5 and increased ethylene production at the root apices compared to Xi Aimai-1, whereas the effects were significantly reversed by ethylene biosynthesis inhibitors. The simultaneous exposure of wheat seedlings to Al and ethylene donor, ethephon, or ethylene biosynthesis precursor, 1-aminocyclopropane-1-carboxylic acid (ACC), increased ethylene production and aggravated root inhibition, which was more pronounced in Xi Aimai-1. In contrast, Put treatment decreased ethylene production and alleviated Al-induced root inhibition in both genotypes, and the effects were more conspicuous in Yangmai-5. Furthermore, our results indicated that Al-induced ethylene production was mediated by ACC synthase (ACS) and ACC oxidase, and that Put decreased ethylene production by inhibiting ACS. Altogether, these findings indicate that ethylene is involved in Al-induced root inhibition and this process could be alleviated by Put through inhibiting ACS activity.
机译:根伸长的抑制是铝(Al)毒性最明显的症状之一。尽管腐胺(Put)已被确定为参与Al耐性的重要信号分子,但还不清楚Put如何减轻Al诱导的根抑制。在这里,通过使用两个耐铝性不同的小麦基因型研究了可能的机制:耐铝的喜麦粒1号和铝敏感的扬麦5号。与Xi Aaii-1相比,铝对Yangmai-5的根系抑制作用更大,并且在根尖的乙烯产量增加,而乙烯生物合成抑制剂可明显逆转这种影响。小麦幼苗同时暴露于Al和乙烯供体,乙烯利或乙烯生物合成前体1-氨基环丙烷-1-羧酸(ACC),增加了乙烯的产量,加重了根的抑制,在西爱麦-1中更为明显。相比之下,Put处理降低了两种基因型的乙烯产量并减轻了Al诱导的根系抑制作用,并且在Yangmai-5上效果更明显。此外,我们的结果表明,铝诱导的乙烯产生是由ACC合酶(ACS)和ACC氧化酶介导的,而Put则通过抑制ACS降低了乙烯的产生。总而言之,这些发现表明乙烯参与了铝诱导的根抑制,并且可以通过抑制ACS活性而被Put减轻。

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