首页> 美国卫生研究院文献>Plant Physiology >Photoresponses of Light-Grown phyA Mutants of Arabidopsis (Phytochrome A Is Required for the Perception of Daylength Extensions).
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Photoresponses of Light-Grown phyA Mutants of Arabidopsis (Phytochrome A Is Required for the Perception of Daylength Extensions).

机译:拟南芥的光生phyA突变体的光响应(感知日间延长时需要光致色素A)。

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摘要

Several aspects of the photophysiology of wild-type Arabidopsis thaliana seedlings were compared with those of a phytochrome A null mutant, phyA-1, and a mutant, fhy1, that is putatively involved in the transduction of light signals from phytochrome A. Although phyA seedlings display a near wild-type phenotype when grown in white light (W), they nevertheless display several photomorphogenic abnormalities. Thus, whereas the germination of wild-type and fhy1 seeds is almost fully promoted by a pulse of red light (R) or by continuous far-red light (FR), phyA seed germination is responsive only to R. Following growth under dayight cycles, but not under continuous W, the hypocotyls of light-grown phyA and fhy1 seedlings are more elongated than those of wild-type seedlings. For seedlings grown under low red/far-red (R/FR) ratio light conditions, phyA and fhy1 seedlings display a more marked promotion of hypocotyl elongation than wild-type seedlings. Similarly, seedlings that are doubly null for phytochrome A and phytochrome B(phyA phyB) also have more elongated hypocotyls under low R/FR ratio conditions than phyB seedlings. This indicates that phytochrome A action in light-grown seedlings is antagonistic to the action of phytochrome B. Although wild-type, fhy1, and phyA seedlings flower at essentially the same time under both short-day and long-day conditions, an obvious consequence of phytochrome A deficiency is a pronounced late flowering under conditions where a short day of 8 h of fluorescent W is extended by 8 h of low-fluence-rate incandescent light. The evidence thus indicates that phytochrome A plays a role in seed germination, in the control of elongation growth of light-grown seedlings, and in the perception of daylength.
机译:将野生型拟南芥幼苗的光生理学的几个方面与植物色素A无效突变体phyA-1和突变体fhy1进行了比较,该突变体被认为参与了植物色素A的光信号的传递。尽管phyA幼苗在白光(W)下生长时,显示出近乎野生型的表型,但是它们仍显示出几种光致形态异常。因此,虽然红脉冲(R)或连续远红光(FR)几乎完全促进了野生型和fhy1种子的发芽,但phyA种子发芽仅对R有响应。夜间周期,但不是连续W,轻度生长的phyA和fhy1幼苗的下胚轴比野生型幼苗的下胚轴更长。对于在低红/远红(R / FR)比率光照条件下生长的幼苗,phyA和fhy1幼苗显示的下胚轴伸长比野生型幼苗更明显。同样,在低R / FR比条件下,对于植物色素A和植物色素B(phyA phyB)无效的幼苗,其下胚轴也比phyB幼苗更长。这表明在光生幼苗中的植物色素A的作用与植物色素B的作用相反。尽管野生型,fhy1和phyA幼苗在短日和长日条件下基本上都在同一时间开花,但后果明显在一定的条件下,植物色素A的缺乏是显着的晚期开花,在这种情况下,短短8天的荧光灯W照射了8小时的低通量白炽灯。因此,证据表明,植物色素A在种子发芽,控制轻生幼苗的伸长生长以及对日长的感知中起作用。

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