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首页> 外文期刊>Plant and Soil >The physiology, genetics and molecular biology of plant aluminum resistance and toxicity.
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The physiology, genetics and molecular biology of plant aluminum resistance and toxicity.

机译:植物铝抗性和毒性的生理学,遗传学和分子生物学。

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摘要

Aluminum (Al) toxicity is the primary factor limiting crop production on acidic soils (pH values of 5 or below), and because 50% of the world's potentially arable lands are acidic, Al toxicity is a very important limitation to worldwide crop production. This review examines our current understanding of mechanisms of Al toxicity, as well as the physiological, genetic and molecular basis for Al resistance. Al resistance can be achieved by mechanisms that facilitate Al exclusion from the root apex (Al exclusion) and/or by mechanisms that confer the ability of plants to tolerate Al in the plant symplasm (Al tolerance). Compelling evidence has been presented in the literature for a resistance mechanism based on exclusion of Al due to Al-activated carboxylate release from the growing root tip. More recently, researchers have provided support for an additional Al-resistance mechanism involving internal detoxification of Al with carboxylate ligands (deprotonated organic acids) and the sequestration of the Al-carboxylate complexes in the vacuole. This is a field that is entering a phase of new discovery, as researchers are on the verge of identifying some of the genes that contribute to Al resistance in plants. The identification and characterization of Al resistance genes will not only greatly advance our understanding of Al-resistance mechanisms, but more importantly, will be the source of new molecular resources that researchers will use to develop improved crops better suited for cultivation on acid soils..
机译:铝(Al)毒性是限制酸性土壤(pH值为5或更低)上农作物生产的主要因素,并且由于世界上50%的潜在耕地都是酸性的,因此Al毒性是全球农作物生产的重要限制。这篇综述检查了我们目前对铝毒性机理的理解,以及铝抗性的生理,遗传和分子基础。铝抗性可以通过促进铝从根尖排斥的机制(铝排斥)和/或通过赋予植物在植物共生体中耐受铝的能力(铝耐受性)的机制来实现。在文献中已经提出了令人信服的证据,其基于由于铝活化的羧酸盐从生长的根尖释放而排除了铝的抗性机理。最近,研究人员为其他的抗铝机制提供了支持,该机制涉及用羧酸盐配体(去质子化的有机酸)对铝进行内部解毒,以及将铝羧酸盐络合物螯合在液泡中。这是一个进入新发现阶段的领域,因为研究人员正在确定一些有助于植物抗铝的基因。铝抗性基因的鉴定和表征不仅将大大增进我们对铝抗性机理的理解,而且更重要的是,它将成为新的分子资源的来源,研究人员将使用这些新的分子资源来开发更适合在酸性土壤上种植的改良作物。

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