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将活性氧(ROS)与植物微生物组中的非生物和生物反馈联系起来:剂量决定毒性。

Linking Reactive Oxygen Species (ROS) to Abiotic and Biotic Feedbacks in Plant Microbiomes: The Dose Makes the Poison.

机构信息

Department of Biology, Stanford University, Stanford, CA 94305, USA.

Department of Biology, Francis Marion University, Florence, SC 29502, USA.

出版信息

Int J Mol Sci. 2022 Apr 15;23(8):4402. doi: 10.3390/ijms23084402.

Abstract

In nature, plants develop in complex, adaptive environments. Plants must therefore respond efficiently to environmental stressors to maintain homeostasis and enhance their fitness. Although many coordinated processes remain integral for achieving homeostasis and driving plant development, reactive oxygen species (ROS) function as critical, fast-acting orchestrators that link abiotic and biotic responses to plant homeostasis and development. In addition to the suite of enzymatic and non-enzymatic ROS processing pathways that plants possess, they also rely on their microbiota to buffer and maintain the oxidative window needed to balance anabolic and catabolic processes. Strong evidence has been communicated recently that links ROS regulation to the aggregated function(s) of commensal microbiota and plant-growth-promoting microbes. To date, many reports have put forth insightful syntheses that either detail ROS regulation across plant development (independent of plant microbiota) or examine abiotic-biotic feedbacks in plant microbiomes (independent of clear emphases on ROS regulation). Here we provide a novel synthesis that incorporates recent findings regarding ROS and plant development in the context of both microbiota regulation and plant-associated microbes. Specifically, we discuss various roles of ROS across plant development to strengthen the links between plant microbiome functioning and ROS regulation for both basic and applied research aims.

摘要

在自然界中,植物在复杂的、适应性的环境中生长。因此,植物必须有效地应对环境胁迫,以维持体内平衡并增强其适应能力。尽管许多协调的过程仍然是实现体内平衡和驱动植物发育的关键,但活性氧(ROS)作为关键的快速作用协调因子,将非生物和生物响应与植物体内平衡和发育联系起来。除了植物具有的一系列酶促和非酶促 ROS 处理途径外,它们还依赖于其微生物群落来缓冲和维持氧化还原平衡所需的氧化窗口,以平衡合成代谢和分解代谢过程。最近有强有力的证据表明,ROS 调节与共生微生物群落和植物生长促进微生物的聚集功能有关。迄今为止,许多报告都提出了有见地的综合分析,要么详细描述了植物发育过程中的 ROS 调节(不依赖于植物微生物群落),要么研究了植物微生物组中的非生物-生物反馈(不明确强调 ROS 调节)。在这里,我们提供了一个新的综合分析,将 ROS 和植物发育的最新发现纳入微生物群落调节和植物相关微生物的背景下。具体来说,我们讨论了 ROS 在植物发育过程中的各种作用,以加强植物微生物组功能和 ROS 调节之间的联系,以实现基础和应用研究目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f55/9030523/8a3c0003dbdd/ijms-23-04402-g001.jpg

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