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Nutrient-Responsive Small Signaling Peptides and Their Influence on the Root System Architecture

机译:营养响应小信号肽及其对根系体系结构的影响

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摘要

The root system architecture (RSA) of plants is highly dependent on the surrounding nutrient environment. The uptake of essential nutrients triggers various signaling cascades and fluctuations in plant hormones to elicit physical changes in RSA. These pathways may involve signaling components known as small signaling peptides (SSPs), which have been implicated in a variety of plant developmental processes. This review discusses known nutrient-responsive SSPs with a focus on several subclasses that have been shown to play roles in root development. Most functionally well-characterized cases of SSP-mediated changes in RSA are found in responses to nitrogen (N) and phosphorus (P) availability, but other nutrients have also been known to affect the expression of SSP-encoding genes. These nutrient-responsive SSPs may interact downstream with leucine-rich repeat receptor kinases (LRR-RKs) to modulate hormone signaling and cellular processes impacting plant root development. SSPs responsive to multiple nutrient cues potentially act as mediators of crosstalk between the signaling pathways. Study of SSP pathways is complicated because of functional redundancy within peptide and receptor families and due to their functionality partly associated with post-translational modifications; however, as genomic research and techniques progress, novel SSP-encoding genes have been identified in many plant species. Understanding and characterizing the roles of SSPs influencing the root phenotypes will help elucidate the processes that plants use to optimize nutrient acquisition in the environment.
机译:植物的根系体系结构(RSA)高度依赖于周围的营养环境。摄取必需营养素会触发各种信号级联和植物激素的波动,从而引发RSA的物理变化。这些途径可能涉及被称为小信号肽(SSP)的信号成分,这些信号成分已涉及多种植物发育过程。这篇综述讨论了已知的对养分有反应的SSP,重点是已显示在根发育中起作用的几个亚类。在对氮(N)和磷(P)利用率的响应中,发现了SSP介导的RSA功能变化中功能最完备的案例,但是还已知其他营养物质会影响SSP编码基因的表达。这些对养分敏感的SSP可能在下游与富含亮氨酸的重复受体激酶(LRR-RK)相互作用,从而调节激素信号传导和影响植物根系发育的细胞过程。对多种营养线索有反应的SSP可能充当信号传导途径之间串扰的媒介。由于肽和受体家族中的功能冗余以及它们的功能部分与翻译后修饰有关,因此对SSP途径的研究非常复杂。然而,随着基因组研究和技术的进步,已经在许多植物物种中发现了新颖的SSP编码基因。了解和表征SSP影响根表型的作用,将有助于阐明植物用于优化环境中养分获取的过程。

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