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The Arabidopsis sickle Mutant Exhibits Altered Circadian Clock Responses to Cool Temperatures and Temperature-Dependent Alternative Splicing

机译:拟南芥镰刀突变体表现出对凉爽温度和依赖温度的选择性剪接的昼夜节律响应

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摘要

The circadian clock allows plants to anticipate and respond to daily changes in ambient temperature. Mechanisms establishing the timing of circadian rhythms in Arabidopsis thaliana through temperature entrainment remain unclear. Also incompletely understood is the temperature compensation mechanism that maintains consistent period length within a range of ambient temperatures. A genetic screen for Arabidopsis mutants affecting temperature regulation of the PSEUDO-RESPONSE REGULATOR7 promoter yielded a novel allele of the SICKLE (SIC) gene. This mutant, sic-3, and the existing sic-1 mutant both exhibit low-amplitude or arrhythmic expression of core circadian clock genes under cool ambient temperature cycles, but not under light-dark entrainment. sic mutants also lengthen free running period in a manner consistent with impaired temperature compensation. sic mutant alleles accumulate LATE ELONGATED HYPOCOTYL (LHY) and CIRCADIAN CLOCK ASSOCIATED1 (CCA1) splice variants, among other alternatively spliced transcripts, which is exacerbated by cool temperatures. The cca1-1 lhy-20 double mutant is epistatic to sic-3, indicating the LHY and CCA1 splice variants are needed for sic-3 circadian clock phenotypes. It is not expected that SIC is directly involved in the circadian clock mechanism; instead, SIC likely contributes to pre-mRNA metabolism, and the splice variants that accumulate in sic mutants likely affect the circadian clock response to cool ambient temperature.
机译:昼夜节律时钟可使植物预测并响应环境温度的每日变化。通过温度夹带在拟南芥中建立昼夜节律时间的机制尚不清楚。还没有完全理解温度补偿机制,该机制在环境温度范围内保持一致的周期长度。拟南芥突变体的遗传筛选影响PSEUDO-RESPONSE REGULATOR7启动子的温度调节,产生了SICKLE(SIC)基因的新等位基因。该突变体sic-3和现有的sic-1突变体在凉爽的环境温度循环下均表现出核心昼夜节律基因的低幅度或心律失常表达,但在明暗夹带下却不表达。 Sic突变体还以与损害温度补偿一致的方式延长了自由运行时间。 sic突变等位基因积累了其他的剪接的转录本,以及较冷的温度加剧了晚期加长的叶型(LHY)和西卡迪亚时钟关联1(CCA1)的剪接变体。 cca1-1 lhy-20双突变体对sic-3具有上位性,表明 sic-3 昼夜节律表型需要LHY和CCA1剪接变体。预计 SIC 不会直接参与生物钟机制。相反, SIC 可能促进了mRNA之前的代谢,并且积累在 sic 突变体中的剪接变体可能会影响昼夜节律对凉爽的环境温度的响应。

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