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避荫反应

Shade avoidance.

作者信息

Franklin Keara A

机构信息

Department of Biology, University of Leicester, Leicester LE2 7RH, UK.

出版信息

New Phytol. 2008;179(4):930-944. doi: 10.1111/j.1469-8137.2008.02507.x. Epub 2008 Jun 5.

Abstract

The threat to plant survival presented by light limitation has driven the evolution of highly plastic adaptive strategies to either tolerate or avoid shading by neighbouring vegetation. When subject to vegetational shading, plants are exposed to a variety of informational signals, which include altered light quality and a reduction in light quantity. The former includes a decrease in the ratio of red to far-red wavelengths (low R : FR) and is detected by the phytochrome family of plant photoreceptors. Monitoring of R : FR ratio can provide an early and unambiguous warning of the presence of competing vegetation, thereby evoking escape responses before plants are actually shaded. The molecular mechanisms underlying physiological responses to alterations in light quality have now started to emerge, with major roles suggested for the PIF (PHYTOCHROME INTERACTING FACTOR) and DELLA families of transcriptional regulators. Such studies suggest a complex interplay between endogenous and exogenous signals, mediated by multiple photoreceptors. The phenotypic similarities between physiological responses habitually referred to as 'the shade avoidance syndrome' and other abiotic stress responses suggest plants may integrate common signalling mechanisms to respond to multiple perturbations in their natural environment.

摘要

光照限制对植物生存构成的威胁促使植物进化出高度可塑性的适应策略,以耐受或避免被邻近植被遮蔽。当受到植被遮荫时,植物会接收到各种信息信号,包括光质改变和光量减少。前者包括红光与远红光波长比值降低(低R:FR),并被植物光受体的光敏色素家族检测到。监测R:FR比值可以为竞争植被的存在提供早期且明确的预警,从而在植物实际被遮荫之前引发逃避反应。现在,光质改变的生理反应背后的分子机制已开始显现,转录调节因子的PIF(光敏色素相互作用因子)和DELLA家族被认为起主要作用。此类研究表明,内源性和外源性信号之间存在复杂的相互作用,由多种光受体介导。通常被称为“避荫综合征”的生理反应与其他非生物胁迫反应之间的表型相似性表明,植物可能整合了共同的信号传导机制来应对自然环境中的多种干扰。

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