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The Art of Self-Control – Autoregulation of Plant–Microbe Symbioses

机译:自我控制的艺术–植物-微生物共生体的自动调节

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摘要

Plants interact with diverse microbes including those that result in nutrient-acquiring symbioses. In order to balance the energy cost with the benefit gained, plants employ a systemic negative feedback loop to control the formation of these symbioses. This is particularly well-understood in nodulation, the symbiosis between legumes and nitrogen-fixing rhizobia, and is known as autoregulation of nodulation (AON). However, much less is understood about the autoregulation of the ancient arbuscular mycorrhizal symbioses that form between Glomeromycota fungi and the majority of land plants. Elegant physiological studies in legumes have indicated there is at least some overlap in the genes and signals that regulate these two symbioses but there are major gaps in our understanding. In this paper we examine the hypothesis that the autoregulation of mycorrhizae (AOM) pathway shares some elements with AON but that there are also some important differences. By reviewing the current knowledge of the AON pathway, we have identified important directions for future AOM studies. We also provide the first genetic evidence that CLV2 (an important element of the AON pathway) influences mycorrhizal development in a non-legume, tomato and review the interaction of the autoregulation pathway with plant hormones and nutrient status. Finally, we discuss whether autoregulation may play a role in the relationships plants form with other microbes.
机译:植物与各种微生物相互作用,包括导致获取营养的共生酶。为了在能源成本和收益之间取得平衡,植物采用系统性的负反馈回路来控制这些共生酶的形成。这在结瘤,豆科植物和固氮根瘤菌之间的共生中尤其容易理解,被称为结瘤的自动调节(AON)。然而,人们对球孢菌和大多数陆地植物之间形成的古老丛枝菌根共生体的自动调节了解得很少。在豆类植物中进行的优雅生理研究表明,调节这两种共生酶的基因和信号至少存在一些重叠,但在我们的理解上存在重大差距。在本文中,我们检验了以下假设,即菌根(AOM)通路的自动调节与AON共享某些元素,但也存在一些重要的区别。通过回顾当前对AON途径的了解,我们确定了未来AOM研究的重要方向。我们还提供了第一个遗传证据,证明CLV2(AON途径的重要成分)影响非豆类,番茄的菌根发育,并综述了自动调节途径与植物激素和营养状况之间的相互作用。最后,我们讨论了自动调节是否可能在植物与其他微生物形成的关系中发挥作用。

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