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Defence on demand: mechanisms behind optimal defence patterns

机译:按需防御:最佳防御模式背后的机制

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Background The optimal defence hypothesis (ODH) predicts that tissues that contribute most to a plant’s tness and have the highest probability of being attacked will be the parts best defended against biotic threats, including herbivores. In general, young sink tissues and reproductive structures show stronger induced defence responses after attack from pathogens and herbivores and contain higher basal levels of specialized defensive metabolites than other plant parts. However, the underlying physiological mechanisms responsible for these developmentally regulated defence patterns remain unknown. Scope This review summarizes current knowledge about optimal defence patterns in above- and below-ground plant tissues, including information on basal and induced defence metabolite accumulation, defensive structures and their regulation by jasmonic acid (JA). Physiological regulations underlying developmental differences of tissues with contrasting defence patterns are highlighted, with a special focus on the role of classical plant growth hormones, including auxins, cytokinins, gibberellins and brassinosteroids, and their interactions with the JA pathway. By synthesizing recent ndings about the dual roles of these growth hormones in plant development and defence responses, this review aims to provide a framework for new discoveries on the molecular basis of patterns predicted by the ODH. Conclusions Almost four decades after its formulation, we are just beginning to understand the underlying molecular mechanisms responsible for the patterns of defence allocation predicted by the ODH. A requirement for future advances will be to understand how developmental and defence processes are integrated.
机译:背景最佳防御假设(ODH)预测,对植物的韧性贡献最大且最容易受到攻击的组织将是最能抵御包括草食动物在内的生物威胁的部分。通常,年轻的汇聚组织和生殖结构在受到病原体和食草动物侵袭后表现出更强的诱导防御反应,并且比其他植物部位具有更高的基础水平的特殊防御性代谢产物。然而,负责这些发育调节的防御模式的潜在生理机制仍然未知。范围这篇综述总结了有关地上和地下植物组织中最佳防御模式的当前知识,包括有关基础和诱导的防御代谢产物积累,防御结构及其受茉莉酸(JA)调控的信息。强调了具有不同防御模式的组织发育差异的生理规律,并特别关注了经典植物生长激素(包括植物生长素,细胞分裂素,赤霉素和油菜素甾体)的作用,以及它们与JA途径的相互作用。通过综述有关这些生长激素在植物发育和防御反应中的双重作用的最新发现,本综述旨在为基于ODH预测模式的分子基础上的新发现提供框架。结论拟定后近四十年,我们才刚刚开始了解造成ODH预测的防御分配模式的潜在分子机制。未来发展的要求将是了解发展与防御流程是如何整合在一起的。

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