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首页> 外文期刊>American Journal of Botany >Physiological mechanism of population differentiation in shade-avoidance responses between woodland and clearing genotypes of Impatiens capensis
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Physiological mechanism of population differentiation in shade-avoidance responses between woodland and clearing genotypes of Impatiens capensis

机译:林地与裸露凤仙基因型之间的避光反应中种群分化的生理机制

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摘要

Forest understory plants often respond less intensely to reduced ratios of red to far red (R : FR) light, an important signal of foliage shade, than conspecific or congeneric plants from open-canopy sites. Reduced responsiveness to low R : FR in plants from closed-canopy sites could be caused by two physiological mechanisms. First, closed-canopy plants could have less sensitive shade-avoidance responses to low R : FR. Second, the high irradiance response to FR (FR-HIR), which allows seedling de-etiolation under low R : FR, might be stronger or persist longer after de-etiolation in closed-canopy plants, thus counteracting shade-avoidance responses to low R : FR. These hypotheses were tested using diodes that emit red and far-red light to distinguish the responses to altered R : FR of genotypes of Impatiens capensis collected from a pair of open- and closed-canopy populations that have previously been shown to differ in sensitivity to R : FR. Genotypes from the open-canopy environment exhibited typical shade-avoidance responses, elongating in response to supplemental FR. However, genotypes from the closed-canopy environment responded to supplemental FR by elongating less than under ambient control conditions, indicating a persistent FR-HIR. Thus, the observed population differentiation in response to low R : FR may be linked to population differences in FR-HIR.
机译:与 sup> 比率的同种或同类植物相比,林下植物对红色至远红色(R:FR)减少的 比率的反应不那么强烈,这是树叶阴影的重要信号。 sup> 开放式顶棚站点。封闭的冠层部位对植物 对低R:FR的响应性降低可能是由两种生理 机制引起的。首先,封闭的冠层植物对低R:FR的避荫反应可能较不敏感。其次,对FR(FR-HIR)的高辐照度 响应使FR在低R:FR下幼苗去异化作用 可能更强或在之后持续更长的时间闭帽植物的去黄化作用,因此抵消了避荫 对低R:FR的响应。使用发射红色和远红色光的 二极管测试了这些假设,以区分对收集到的凤仙花基因型的R:FR的响应 来自先前显示为 的一对开放和封闭林冠种群中,它们对R:FR的敏感性不同。敞篷环境中的基因型 表现出典型的避荫 响应,对补充FR的反应延长。但是,封闭林冠层环境中的 基因型对补充 FR的反应比在环境控制条件下延长的时间短, 表示持久性FR-HIR。因此,观察到的针对低R:FR的种群 分化可能与FR-HIR的种群 差异有关。

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