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首页> 外文期刊>Tree Physiology >Citrate-release-mediated aluminum resistance is coupled to the inducible expression of mitochondrial citrate synthase gene in Paraserianthes falcataria
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Citrate-release-mediated aluminum resistance is coupled to the inducible expression of mitochondrial citrate synthase gene in Paraserianthes falcataria

机译:柠檬酸释放介导的铝抗性与线虫柠檬酸线粒体中线粒体柠檬酸合酶基因的诱导表达有关

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摘要

Aluminum (Al) resistance in some leguminous plants is achieved by enhanced citrate release from roots. Enhancement requires several hours for complete activation and is postulated to involve Al-responsive genes or components. We examined the mechanism of Al-induced citrate release by studying the relationship between citrate release and expression of the mitochondrial citrate synthase (mCS) gene in three leguminous trees. Root elongation in Leucaena leucocephala (Lam.) de Wit was arrested within 24 h by 30 microM Al, whereas root elongation in Paraserianthes falcataria (L.) Neilson and Acacia mangium Willd. was inhibited < 50% by a 48-h treatment with 100 microM Al in calcium chloride solution. Roots of P. falcataria and A. mangium maintained enhanced release and accumulation of citrate for at least 28 days in response to Al treatment. Aluminum increased the accumulation of mCS transcripts in P. falcataria roots, but not in L. leucocephala roots, and thus up-regulation decreased following removal of Al. Lanthanum did not alter the expression level of mCS. Aluminum increased mCS activity concomitantly with enhanced mCS gene expression in P. falcataria, whereas it did not affect mCS activity in L. leucocephala. Aluminum content in root apices of P. falcataria was increased by cycloheximide, supporting the idea that de novo synthesis of proteins is a prerequisite for Al resistance. Our findings suggest that Al-inducible expression of mCS coupled with enhanced citrate release mediates Al resistance in P. falcataria.
机译:在某些豆科植物中,铝的抗性是通过增强柠檬酸盐​​从根部释放而实现的。增强需要几个小时才能完全激活,并被认为涉及Al反应基因或成分。我们通过研究三株豆科植物中柠檬酸释放与线粒体柠檬酸合酶(mCS)基因表达之间的关系,研究了铝诱导柠檬酸释放的机制。 30 microM Al可以在24小时内阻止白花白术(Lucaena leucocephala(Lam.de Wit))的根伸长,而在恶臭寄生(Paraserianthes falcataria(L.)Neilson和Acacia mangium Willd)中,根伸长被阻止。通过在氯化钙溶液中使用100 microM Al进行48小时处理,可将其抑制<50%。响应于铝处理,恶性疟原虫和马尾曲霉的根保持柠檬酸盐的释放和积累增强了至少28天。铝增加了恶性疟原虫根中mCS转录物的积累,而白带利什曼原虫根中没有,因此去除铝后上调减少。镧不会改变mCS的表达水平。铝在恶性疟原虫中增加了mCS的活性,同时增强了mCS基因的表达,而铝并没有影响白头参的mCS活性。环己酰亚胺增加了恶性疟原虫根尖中铝的含量,支持了从头合成蛋白质是抗铝的前提条件。我们的发现表明,铝诱导的mCS表达与柠檬酸盐释放增强介导了恶性疟原虫的铝抗性。

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