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拟南芥的光敏色素A缺失突变体在白光下表现出野生型表型。

Phytochrome A null mutants of Arabidopsis display a wild-type phenotype in white light.

作者信息

Whitelam G C, Johnson E, Peng J, Carol P, Anderson M L, Cowl J S, Harberd N P

机构信息

Department of Botany, University of Leicester, United Kingdom.

出版信息

Plant Cell. 1993 Jul;5(7):757-68. doi: 10.1105/tpc.5.7.757.

Abstract

Phytochrome is a family of photoreceptors that regulates plant photomorphogenesis; the best-characterized member of this family is phytochrome A. Here, we report the identification of novel mutations at three Arabidopsis loci (fhy1, fhy2, and fhy3) that confer an elongated hypocotyl in far-red but not in white light. fhy2 mutants are phytochrome A deficient, have reduced or undetectable levels of PHYA transcripts, and contain structural alterations within the PHYA gene. When grown in white light, fhy2 mutants are morphologically indistinguishable from wild-type plants. Thus, phytochrome A appears to be dispensable in white light-grown Arabidopsis plants. fhy2 alleles confer partially dominant phenotypes in far-red light, suggesting that the relative abundance of phytochrome A can affect the extent of the far-red-mediated hypocotyl growth inhibition response. Plants homozygous for the recessive fhy1 and fhy3 mutations have normal levels of functional phytochrome A. The FHY1 and FHY3 gene products may be responsible for the transduction of the far-red light signal from phytochrome A to downstream processes involved in hypocotyl growth regulation.

摘要

光敏色素是一类调节植物光形态建成的光受体;该家族中研究最深入的成员是光敏色素A。在此,我们报告了在拟南芥三个位点(fhy1、fhy2和fhy3)发现的新突变,这些突变导致在远红光下但不在白光下胚轴伸长。fhy2突变体缺乏光敏色素A,PHYA转录本水平降低或无法检测到,并且PHYA基因内存在结构改变。在白光下生长时,fhy2突变体在形态上与野生型植物无法区分。因此,光敏色素A在白光下生长的拟南芥植物中似乎是可有可无的。fhy2等位基因在远红光下表现出部分显性表型,这表明光敏色素A的相对丰度可以影响远红光介导的下胚轴生长抑制反应的程度。隐性fhy1和fhy3突变的纯合植物具有正常水平的功能性光敏色素A。FHY1和FHY3基因产物可能负责将远红光信号从光敏色素A传递到参与下胚轴生长调节的下游过程。

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