首页> 外文期刊>Journal of Experimental Botany >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
【24h】

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

机译:早期开花3和隐孢子虫2基因的双重功能丧失突变延迟了连续光照下的开花,但在长日短日下加速了开花:拟南芥CRY2在连续光照下加速开花时间的重要作用

获取原文
获取原文并翻译 | 示例
           

摘要

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.
机译:光周期反应是对昼夜长度的季节性变化的适应机制之一。昼夜节律时钟在此过程中起着关键作用。在拟南芥中,LHY,CCA1,ELF3和其他时钟蛋白在维持昼夜节律中起主要作用。昼夜节律严重缺陷的lhy; cca1双突变体在短日(SD)下显示加速开花,但在连续光照(LL)下延迟开花。 LL下的lhy; cca1突变体中,花卉阻遏物SVP的蛋白水平增加,而svp,flc或elf3则部分抑制了lhy; cca1突变体的晚开花表型。 ELF3与CCA1和SVP都相互作用,而elf3抑制LL下lhy; cca1中SVP的积累。这些结果表明,LL下lhy; cca1的开花反应倒置的独特机制可能涉及ELF3–SVP / FLC依赖性和非依赖性途径。在这项工作中,用重离子束诱变了elf3-1种子,并用于鉴定在LL条件下延迟开花但即使没有ELF3也不能长时间(LD)或SD延迟开花的突变。在此筛选中,确定了七个候选序列,命名为elf3 1(self1),sel3,sel5,sel7,sel14,sel15和sel20的抑制子。遗传分析表明,sel20是蓝光受体CRY2中一个新的突变缺失等位基因。在LL下elf3; sel20双重突变体出现迟花表型和FT表达降低,而在SDs或LDs下不明显。这些结果表明,双突变体elf3; sel20以及lhy; cca1中的晚开花表型受到黑暗的影响。结果表明,与LD或SD相比,CRY2在LL下的开花加速中可能起更重要的作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号