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通过光敏色素对茉莉酸敏感性的控制实现植物防御的生态调节。

Ecological modulation of plant defense via phytochrome control of jasmonate sensitivity.

作者信息

Moreno Javier E, Tao Yi, Chory Joanne, Ballaré Carlos L

机构信息

Ifeva, Consejo Nacional de Investigaciones Científicas y Técnicas, and Universidad de Buenos Aires, Avenida San Martín 4453 C1417DSE Buenos Aires, Argentina.

出版信息

Proc Natl Acad Sci U S A. 2009 Mar 24;106(12):4935-40. doi: 10.1073/pnas.0900701106. Epub 2009 Feb 27.

Abstract

For plants, the tradeoff between resource investment in defense and increased growth to out-compete neighbors creates an allocation dilemma. How plants resolve this dilemma, at the mechanistic level, is unclear. We found that Arabidopsis plants produced an attenuated defense phenotype under conditions of crowding and when exposed to far-red (FR) radiation, a light signal that plants use to detect the proximity of neighbors via the photoreceptor phytochrome. This phenotype was detectable through standard bioassays that measured the growth of Spodoptera frugiperda caterpillars. Two possible explanations for the effect of FR are: (i) a simple by-product of the diversion of resources to competition, and (ii) a specific effect of phytochrome on defense signaling. The first possibility was ruled out by the fact that the auxin-deficient sav3 mutant, which fails to induce growth responses to FR, still responded to FR with an attenuated defense phenotype. In support of the second hypothesis, we found that phytochrome inactivation by FR caused a strong reduction of plant sensitivity to jasmonates, which are key regulators of plant immunity. The effects of FR on jasmonate sensitivity were restricted to certain elements of the pathway. Supporting the idea that the FR effects on jasmonate signaling are functionally significant, we found that FR failed to increase tissue quality in jar1, a mutant impaired in jasmonate response. We conclude that the plant modulates its investment in defense as a function of the perceived risk of competition, and that this modulation is effected by phytochrome via selective desensitization to jasmonates.

摘要

对于植物而言,在防御方面投入资源与通过增加生长以胜过邻居之间的权衡产生了一种分配困境。目前尚不清楚植物在机制层面是如何解决这一困境的。我们发现,拟南芥植株在拥挤条件下以及暴露于远红光(FR)辐射时会产生减弱的防御表型,远红光是植物通过光受体光敏色素用来检测邻居接近程度的一种光信号。这种表型可通过测量草地贪夜蛾幼虫生长情况的标准生物测定法检测到。关于远红光效应的两种可能解释是:(i)资源转向竞争的一种简单副产品,以及(ii)光敏色素对防御信号传导的特定效应。第一种可能性被生长素缺陷型sav3突变体排除,该突变体无法诱导对远红光的生长反应,但仍对远红光产生减弱的防御表型反应。为支持第二种假设,我们发现远红光使光敏色素失活会导致植物对茉莉酸的敏感性大幅降低,茉莉酸是植物免疫的关键调节因子。远红光对茉莉酸敏感性的影响仅限于该途径的某些元件。支持远红光对茉莉酸信号传导的影响具有功能重要性这一观点的是,我们发现远红光无法提高jar1(一种茉莉酸反应受损的突变体)的组织质量。我们得出结论,植物根据感知到的竞争风险来调节其在防御方面的投入,并且这种调节是由光敏色素通过对茉莉酸的选择性脱敏来实现的。

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