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Light-regulated stomatal aperture in Arabidopsis.

机译:拟南芥中的光调节气孔孔径。

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摘要

The stomatal pores of plant leaves, situated in the epidermis and surrounded by a pair of guard cells, allow CO2 uptake for photosynthesis and water loss through transpiration. Blue light is one of the dominant environmental signals that control stomatal movements in leaves of plants in a natural environment. This blue light response is mediated by blue/UV A light-absorbing phototropins (phots) and cryptochromes (crys). Red/far-red light-absorbing phytochromes (phys) also play a role in the control of stomatal aperture. The signaling components that link the perception of light signals to the stomatal opening response are largely unknown. This review discusses a few newly discovered nuclear genes, their function with respect to the phot-, cry-, and phy-mediated signal transduction cascades, and possible involvement of circadian clock.
机译:植物叶片的气孔孔位于表皮中,并被一对保卫细胞包围,可以吸收CO 2 进行光合作用,并通过蒸腾作用使水分流失。蓝光是控制自然环境中植物叶片气孔运动的主要环境信号之一。蓝光响应是由吸收蓝光/ UV A的光蛋白(phots)和隐色染料(crys)介导的。吸收红/远红光的植物色素(phys)在气孔孔径的控制中也起作用。将光信号的感知与气孔打开反应联系起来的信号成分在很大程度上是未知的。这篇综述讨论了一些新发现的核基因,它们在光子,哭声和phy介导的信号转导级联方面的功能,以及昼夜节律的参与。

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