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减轻生长与防御之间权衡的机制。

Mechanisms to Mitigate the Trade-Off between Growth and Defense.

作者信息

Karasov Talia L, Chae Eunyoung, Herman Jacob J, Bergelson Joy

机构信息

Department of Molecular Biology, Max Planck Institute for Developmental Biology, Tübingen 72076, Germany.

Department of Ecology and Evolution, University of Chicago, Chicago, Illinois 60637.

出版信息

Plant Cell. 2017 Apr;29(4):666-680. doi: 10.1105/tpc.16.00931. Epub 2017 Mar 20.

Abstract

Plants have evolved an array of defenses against pathogens. However, mounting a defense response frequently comes with the cost of a reduction in growth and reproduction, carrying critical implications for natural and agricultural populations. This review focuses on how costs are generated and whether and how they can be mitigated. Most well-characterized growth-defense trade-offs stem from antagonistic crosstalk among hormones rather than an identified metabolic expenditure. A primary way plants mitigate such costs is through restricted expression of resistance; this can be achieved through inducible expression of defense genes or by the concentration of defense to particular times or tissues. Defense pathways can be primed for more effective induction, and primed states can be transmitted to offspring. We examine the resistance () genes as a case study of how the toll of defense can be generated and ameliorated. The fine-scale regulation of genes is critical to alleviate the burden of their expression, and the genomic organization of genes into coregulatory modules reduces costs. Plants can also recruit protection from other species. Exciting new evidence indicates that a plant's genotype influences the microbiome composition, lending credence to the hypothesis that plants shape their microbiome to enhance defense.

摘要

植物已经进化出一系列抵御病原体的防御机制。然而,启动防御反应往往伴随着生长和繁殖减少的代价,这对自然种群和农业种群具有至关重要的影响。本综述聚焦于这些代价是如何产生的,以及它们是否能够以及如何得到缓解。大多数已充分表征的生长-防御权衡源于激素之间的拮抗串扰,而非已确定的代谢消耗。植物减轻此类代价的主要方式是通过限制抗性表达;这可以通过防御基因的诱导表达或通过将防御集中在特定时间或组织来实现。防御途径可以被预激发以实现更有效的诱导,并且预激发状态可以传递给后代。我们以抗性()基因作为案例研究,探讨防御代价是如何产生和改善的。基因的精细调控对于减轻其表达负担至关重要,并且基因的基因组组织形成共调控模块可降低成本。植物还可以从其他物种那里获得保护。令人兴奋的新证据表明,植物的基因型会影响微生物组的组成,这支持了植物塑造其微生物组以增强防御的假说。

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本文引用的文献

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Secondary metabolites in plant defence mechanisms.植物防御机制中的次生代谢产物。
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