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Photoconversion and nuclear trafficking cycles determine phytochrome A's response profile to far-red light

机译:光转换和核运输周期决定了植物色素A对远红光的响应曲线

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摘要

Phytochrome A (phyA) is the only photoreceptor in plants, initiating responses in far-red light and, as such, essential for survival in canopy shade. Although the absorption and the ratio of active versus total phyA are maximal in red light, far-red light is the most efficient trigger of phyA-dependent responses. Using a joint experimental-theoretical approach, we unravel the mechanism underlying this shift of the phyA action peak from red to far-red light and show that it relies on specific molecular interactions rather than on intrinsic changes to phyA's spectral properties. According to our model, the dissociation rate of the phyA-FHY1/FHL nuclear import complex is a principle determinant of the phyA action peak. The findings suggest how higher plants acquired the ability to sense far-red light from an ancestral photoreceptor tuned to respond to red light.
机译:植物色素A(phyA)是植物中唯一的感光体,可在远红光下启动反应,因此对于在树冠荫下生存至关重要。尽管在红光下吸收和活性phyA与总phyA的比率最大,但远红光是phyA依赖性反应的最有效触发。使用联合的实验理论方法,我们揭示了phyA作用峰从红光到远红光转变的机理,并表明它依赖于特定的分子相互作用,而不是依赖于phyA光谱特性的内在变化。根据我们的模型,phyA-FHY1 / FHL核输入复合物的解离速率是phyA作用峰的主要决定因素。这些发现表明,高等植物是如何从经过调节以响应红光的祖先感光器获得感知远红光的能力的。

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