首页> 外文期刊>American journal of botany >Phytochrome gene expression and phylogenetic analysis in the short-day plant Pharbitis nil (Convolvulaceae): Differential regulation by light and an endogenous clock.
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Phytochrome gene expression and phylogenetic analysis in the short-day plant Pharbitis nil (Convolvulaceae): Differential regulation by light and an endogenous clock.

机译:短日植株无香植物卷柏中植物色素基因的表达和系统发育分析:光照和内源时钟的差异调节。

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To investigate the role of distinct phytochrome pools in photoperiodic timekeeping, we characterized four phytochrome genes in the short-day plant Pharbitis nil. Each PHY gene had different photosensory properties and sensitivity to night break that inhibits flowering. During extended dark periods, PHYE, PHYB, and PHYC mRNA accumulation exhibited a circadian rhythmicity indicative of control by an endogenous clock. Phylogenetic analysis recovered four clades of angiosperm phytochrome genes, phyA, phyB, phyC, and phyE. All except the phyE clade included sequences from both monocots and eudicots. In addition, phyA is sister to phyC and phyE sister to phyB, with gymnosperm sequences sister to either the phyA-phyC clade or to the phyB-phyE clade. These results suggest that a single duplication occurred in an ancestral seed plant before the divergence of extant gymnosperms from angiosperms and that two subsequent duplications occurred in an ancestral angiosperm before the divergence of monocots from eudicots. Thus in P. nil, a multigene family with different patterns of mRNA abundance in light and darkness contributes to the total phytochrome pool: one pool is light labile (phyA), whereas the other is light stable (phyB and phyE). In addition, PHYC mRNA represents a third phytochrome pool with intermediate photosensory properties.
机译:为了调查不同的植物色素库在光周期计时中的作用,我们在短日植物无头氏疟原虫中鉴定了四个植物色素基因。每个PHY基因具有不同的光敏特性和对抑制开花的夜间休息的敏感性。在延长的黑暗周期中,PHYE,PHYB和PHYC mRNA积累表现出昼夜节律,表明受内源时钟控制。系统发育分析回收了四个被子植物的植物色素基因phyA,phyB,phyC和phyE。除phyE进化枝外,所有都包括单子叶植物和双子叶植物的序列。此外,phyA是phyC的姐妹,而phyE是phyB的姐妹,裸子植物序列是phyA-phyC分支或phyB-phyE分支的姐妹。这些结果表明,在现有的裸子植物与被子植物发散之前,祖先的种子植物发生了一次重复,而在单子叶植物与双子叶植物发散之前,在祖先被子植物中发生了两次随后的重复。因此,在无疟原虫中,在光明和黑暗中具有不同mRNA丰度模式的多基因家族有助于总的植物色素库:一个库是光不稳定(phyA),而另一个是光稳定的(phyB和phyE)。另外,PHYC mRNA代表具有中间光敏特性的第三个植物色素库。

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