首页> 美国卫生研究院文献>Plant Physiology >Differential Expression on a Daily Basis of Plastid Sigma Factor Genes from the Moss Physcomitrella patens. Regulatory Interactions among PpSig5 the Circadian Clock and Blue Light Signaling Mediated by Cryptochromes
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Differential Expression on a Daily Basis of Plastid Sigma Factor Genes from the Moss Physcomitrella patens. Regulatory Interactions among PpSig5 the Circadian Clock and Blue Light Signaling Mediated by Cryptochromes

机译:来自苔藓小立碗藓的质体Sigma因子基因的日常差异表达。 PpSig5昼夜节律和隐色染料介导的蓝光信号之间的调控相互作用

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摘要

The nuclear-encoded plastid sigma factors are supposed to be a regulatory subunit of the multisubunit bacteria-type plastid RNA polymerase. We studied here whether or not three genes, PpSig1, PpSig2, and PpSig5 encoding plastid sigma factors, are controlled by the circadian clock and/or by blue light signaling in the moss Physcomitrella patens. Among the three PpSig genes, only PpSig5 was clearly controlled by the circadian clock. In contrast to the differential regulation on a daily timescale, a pulse of blue light induced the expression of all the three PpSig genes. This induction was significantly reduced in a knockout mutant that lacked the blue light photoreceptor cryptochromes PpCRY1a and PpCRY1b, indicating that PpCRY1a and/or PpCRY1b mediate the blue light signal that induces the expression of the PpSig genes. In a daily cycle of 12-h blue light/12-h dark, the timing of peak expression of PpSig5 and a chloroplast gene psbD, encoding the D2 subunit of photosystem II, advanced in the cryptochrome mutant relative to those in the wild type, suggesting the presence of regulatory interactions among the expression of PpSig5 and psbD, the circadian clock, and the blue light signaling mediated by the cryptochrome(s).
机译:核编码的质体西格玛因子应该是多亚基细菌型质体RNA聚合酶的调节亚基。我们在这里研究了三个基因,PpSig1,PpSig2和PpSig5编码质体sigma因子是否受昼夜节律和/或青苔藓小立碗藓中蓝光信号的控制。在这三个PpSig基因中,只有PpSig5明显受生物钟控制。与每日时间尺度上的差异调节相反,蓝光脉冲诱导了所有三个PpSig基因的表达。在缺少蓝光感光体隐色染料PpCRY1a和PpCRY1b的敲除突变体中,这种诱导显着降低,表明PpCRY1a和/或PpCRY1b介导了诱导PpSig基因表达的蓝光信号。在每天12小时的蓝光/ 12小时的黑夜中,PpSig5和编码光系统II D2亚基的叶绿体基因psbD的峰值表达时间相对于野生型的那些在隐色突变体中提前了,提示PpSig5和psbD的表达,昼夜节律的时钟以及隐色染料介导的蓝光信号之间存在调节相互作用。

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