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EARLY FLOWERING 3 和 CRYPTOCHROME 2 基因的双功能丧失突变会延迟连续光照下的开花,但会加速长日照和短日照下的开花:拟南芥 CRY2 对在连续光照下加速开花时间的重要作用。

Double loss-of-function mutation in EARLY FLOWERING 3 and CRYPTOCHROME 2 genes delays flowering under continuous light but accelerates it under long days and short days: an important role for Arabidopsis CRY2 to accelerate flowering time in continuous light.

机构信息

Gene Research Center, University of Tsukuba, Tennodai 1-1-1, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

J Exp Bot. 2011 May;62(8):2731-44. doi: 10.1093/jxb/erq450. Epub 2011 Feb 4.

Abstract

The photoperiodic response is one of the adaptation mechanisms to seasonal changes of lengths of day and night. The circadian clock plays pivotal roles in this process. In Arabidopsis, LHY, CCA1, ELF3, and other clock proteins play major roles in maintaining circadian rhythms. lhy;cca1 double mutants with severe defects in circadian rhythms showed accelerated flowering under short days (SDs), but delayed flowering under continuous light (LL). The protein level of the floral repressor SVP increased in lhy;cca1 mutants under LL, and the late-flowering phenotype of lhy;cca1 mutants was partially suppressed by svp, flc, or elf3. ELF3 interacted with both CCA1 and SVP, and elf3 suppressed the SVP accumulation in lhy;cca1 under LL. These results suggest that the unique mechanism of the inversion of the flowering response of lhy;cca1 under LL may involve both the ELF3-SVP/FLC-dependent and -independent pathways. In this work, elf3-1 seeds were mutagenized with heavy-ion beams and used to identify mutation(s) that delayed flowering under LL but not long days (LDs) or SDs even without ELF3. In this screening, seven candidate lines named suppressor of elf3 1 (self1), sel3, sel5, sel7, sel14, sel15, and sel20 were identified. Genetic analysis indicated that sel20 was a new deletion allele of a mutation in the blue light receptor, CRY2. A late-flowering phenotype and decrease of FT expression in the elf3;sel20 double mutant was obvious under LL but not under SDs or LDs. These results indicated that the late-flowering phenotype in the double mutant elf3;sel20 as well as in lhy;cca1 was affected by the presence of darkness. The results suggest that CRY2 may play more essential roles in the acceleration of flowering under LL than LDs or SDs.

摘要

光周期反应是适应日夜长度季节性变化的一种适应机制。生物钟在这个过程中起着关键作用。在拟南芥中,LHY、CCA1、ELF3 和其他生物钟蛋白在维持生物钟节律方面发挥着重要作用。lhy;cca1 双突变体由于生物钟节律严重缺陷,在短日照(SD)下开花加速,但在连续光照(LL)下开花延迟。在 lhy;cca1 突变体中,在 LL 下,花抑制物 SVP 的蛋白水平增加,lhy;cca1 突变体的晚花表型部分被 svp、flc 或 elf3 抑制。ELF3 与 CCA1 和 SVP 相互作用,elf3 在 LL 下抑制 lhy;cca1 中 SVP 的积累。这些结果表明,lhy;cca1 在 LL 下开花反应的反转的独特机制可能涉及 ELF3-SVP/FLC 依赖和非依赖途径。在这项工作中,elf3-1 种子用重离子束诱变,并用于鉴定在 LL 下延迟开花但不在长日照(LDs)或短日照(SDs)下延迟开花的突变(s),即使没有 ELF3。在这次筛选中,鉴定了七个候选系,命名为 elf3 1(self1)、sel3、sel5、sel7、sel14、sel15 和 sel20。遗传分析表明,sel20 是蓝光照受体 CRY2 突变的一个新缺失等位基因。elf3;sel20 双突变体在 LL 下表现出晚花表型和 FT 表达减少,但在 SDs 或 LDs 下则不然。这些结果表明,elf3;sel20 双突变体以及 lhy;cca1 中的晚花表型受黑暗的影响。结果表明,CRY2 在 LL 下促进开花的作用可能比 LDs 或 SDs 更为重要。

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