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Independent Action of ELF3 and phyB to Control Hypocotyl Elongation and Flowering Time

机译:ELF3和phyB的独立作用控制下胚轴伸长和开花时间

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摘要

Light regulates various aspects of plant growth, and the photoreceptor phytochrome B (phyB) mediates many responses to red light. In a screen for Arabidopsis mutants with phenotypes similar to those of phyB mutants, we isolated two new elf3 mutants. One has weaker morphological phenotypes than previously identified elf3 alleles, but still abolishes circadian rhythms under continuous light. Like phyB mutants, elf3 mutants have elongated hypocotyls and petioles, flower early, and have defects in the red light response. However, we found that elf3 mutations have an additive interaction with a phyB null mutation, with phyA or hy4 null mutations, or with a PHYB overexpression construct, and that an elf3 mutation does not prevent nuclear localization of phyB. These results suggest that either there is substantial redundancy in phyB and elf3 function, or the two genes regulate distinct signaling pathways.
机译:光调节着植物生长的各个方面,而光感受器植物色素B(phyB)介导了许多对红光的反应。在筛选表型与phyB突变体相似的拟南芥突变体中,我们分离了两个新的elf3突变体。一个具有比以前鉴定的elf3等位基因弱的形态表型,但在连续光照下仍废除了昼夜节律。与phyB突变体一样,elf3突变体的下胚轴和叶柄细长,早开花,并且在红光响应方面有缺陷。但是,我们发现elf3突变与phyB无效突变,phyA或hy4无效突变或PHYB过表达构建体具有加性相互作用,而elf3突变不会阻止phyB的核定位。这些结果表明,要么phyB和elf3功能存在大量冗余,要么这两个基因调节不同的信号传导途径。

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