光敏色素介导的避荫反应影响拟南芥细菌层球微生物组的结构和组成。

IF 5.4 2区 环境科学与生态学 Q1 GENETICS & HEREDITY
James A O'Rourke, Stacey A Vincent, Isabel E I Williams, Eleanor L Gascoyne, Paul F Devlin
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引用次数: 0

摘要

遮荫回避反应触发了伸长生长的戏剧性促进,伴随着代谢途径的重大重编程,因为植物寻求防止过度生长和适应营养遮荫。在这里,我们证明了模拟植物遮荫导致层球细菌微生物组的结构和组成发生了显著变化。我们的研究揭示了层圈微生物组中细菌的多样性、发生率、丰度和活性的重大变化。野生型植物和光敏色素突变体(固有地表现出避荫表型)的反应比较,揭示了微生物群对宿主植物生理的间接反应和对光的直接反应。响应模式的分层聚类进一步表明,在我们的分析中,超过三分之一的构成核心层球微生物组的分类群对植物荫蔽表现出一定程度的响应。在具有避荫表型的植物上丰度增加的细菌对应于与有益性状相关的属,如增强抗病性和促进生长。我们的研究结果表明,植物在荫蔽条件下操纵它们的层球微生物群,作为一种策略,在竞争光线时优化适应性。我们讨论了我们的研究结果的意义,进一步了解植物-微生物信号在层圈微生物群形成中的作用,以及在高种植密度的农业环境中操纵层圈微生物群促进植物健康的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phytochrome-mediated shade avoidance responses impact the structure and composition of the bacterial phyllosphere microbiome of Arabidopsis.

Phytochrome-mediated shade avoidance responses impact the structure and composition of the bacterial phyllosphere microbiome of Arabidopsis.

Phytochrome-mediated shade avoidance responses impact the structure and composition of the bacterial phyllosphere microbiome of Arabidopsis.

Phytochrome-mediated shade avoidance responses impact the structure and composition of the bacterial phyllosphere microbiome of Arabidopsis.

The shade avoidance response triggers a dramatic promotion of elongation growth, accompanied by a significant reprogramming of metabolic pathways as plants seek to prevent overtopping and adapt to vegetative shade. Here we demonstrate that simulated vegetative shade results in significant changes in the structure and composition of the phyllosphere bacterial microbiome. Our study uncovered significant shifts in the diversity, occurrence, abundance and activity of bacteria within the phyllosphere microbiome. A comparison of responses in both wild-type plants and phytochrome mutants, which inherently exhibit a shade-avoidance phenotype, revealed both indirect responses to host plant physiology and direct responses to light among the microbiota. Hierarchical clustering of response patterns further suggested that over a third of the taxa constituting the core phyllosphere microbiome in our assay show some degree of response to vegetative shade. Bacteria that increased in abundance on plants with a shade-avoidance phenotype corresponded to genera associated with beneficial traits such as enhanced disease resistance and growth promotion. Our findings suggests that plants manipulate their phyllosphere microbiome under shade conditions as a strategy to optimise fitness when competing for light. We discuss the implications of our findings in terms of furthering our understanding of plant-microbe signalling in the shaping of the phyllosphere microbiome and the possibility of manipulating the phyllosphere microbiome for plant health in an agricultural setting at high planting densities.

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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
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