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Manipulation of auxin transport in plant roots during Rhizobium symbiosis and nematode parasitism

机译:根瘤菌共生和线虫寄生过程中植物根系生长素运输的调控

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摘要

The plant rhizosphere harbors many different microorganisms, ranging from plant growth-promoting bacteria to devastating plant parasites. Some of these microbes are able to induce de novo organ formation in infected roots. Certain soil bacteria, collectively called rhizobia, form a symbiotic interaction with legumes, leading to the formation of nitrogen-fixing root nodules. Sedentary endoparasitic nematodes, on the other hand, induce highly specialized feeding sites in infected plant roots from which they withdraw nutrients. In order to establish these new root structures, it is thought that these organisms use and manipulate the endogenous molecular and physiological pathways of their hosts. Over the years, evidence has accumulated reliably demonstrating the involvement of the plant hormone auxin. Moreover, the auxin responses during microbe-induced de novo organ formation seem to be dynamic, suggesting that plant-associated microbes can actively modify their host's auxin transport. In this review, we focus on recent findings in auxin transport mechanisms during plant development and on how plant symbionts and parasites have evolved to manipulate these mechanisms for their own purposes.
机译:植物根际具有许多不同的微生物,从促进植物生长的细菌到破坏性的植物寄生虫。这些微生物中的一些能够在受感染的根中诱导从头形成器官。某些土壤细菌(统称为根瘤菌)与豆类形成共生相互作用,从而导致固氮根瘤的形成。另一方面,久坐的寄生内生线虫在受感染植物的根部诱导高度专门的觅食位点,从中吸取营养。为了建立这些新的根结构,人们认为这些生物利用并操纵了宿主的内源性分子和生理途径。多年以来,已有可靠的证据证明了植物激素生长素的参与。此外,微生物诱导的从头器官形成过程中的生长素反应似乎是动态的,这表明与植物相关的微生物可以主动改变宿主的生长素运输。在这篇综述中,我们重点关注植物发育过程中植物生长素转运机制的最新发现,以及植物共生体和寄生虫如何进化以达到自身目的来操纵这些机制。

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