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Different Roles for Phytochrome in Etiolated and Green Plants Deduced from Characterization of Arabidopsis thaliana Mutants.

机译:根据拟南芥突变体的特性推导,植物色素在黄化和绿色植物中的不同作用。

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摘要

We have isolated a new complementation group of Arabidopsis thaliana long hypocotyl mutant (hy6) and have characterized a variety of light-regulated phenomena in hy6 and other previously isolated A. thaliana hy mutants. Among six complementation groups that define the HY phenotype in A. thaliana, three (hy1, hy2, and hy6) had significantly lowered levels of photoreversibly detectable phytochrome, although near wild-type levels of the phytochrome apoprotein were present in all three mutants. When photoregulation of chlorophyll a/b binding protein (cab) gene expression was examined, results obtained depended dramatically on the light regime employed. Using the red/far-red photoreversibility assay on etiolated plants, the accumulation of cab mRNAs was considerably less in the phytochrome-deficient mutants than in wild-type A. thaliana seedlings. When grown in high-fluence rate white light, however, the mutants accumulated wild-type levels of cab mRNAs and other mRNAs thought to be regulated by phytochrome. An examination of the light-grown phenotypes of the phytochrome-deficient mutants, using biochemical, molecular, and morphological techniques, revealed that the mutants displayed incomplete chloroplast and leaf development under conditions where wild-type chloroplasts developed normally. Thus, although phytochrome may play a role in gene expression in etiolated plants, a primary role for phytochrome in green plants is likely to be in modulating the amount of chloroplast development, rather than triggering the initiation of events (e.g., gene expression) associated with chloroplast development.
机译:我们已经分离出一个新的拟南芥长下胚轴突变体(hy6)的互补组,并在hy6和其他先前分离的拟南芥hy突变体中表征了多种光调节现象。在六个拟南芥中HY表型的互补组中,三个(hy1,hy2和hy6)的光可逆性检测到的植物色素水平显着降低,尽管在所有三个突变体中都存在接近野生型水平的植物色素载脂蛋白。当检查叶绿素a / b结合蛋白(cab)基因表达的光调节时,获得的结果在很大程度上取决于所采用的光照方案。使用黄化/远红光可逆性分析对黄化的植物,cab mRNA的积累在植物色素缺乏的突变体中要比野生型拟南芥幼苗少得多。然而,当在高通量率白光下生长时,这些突变体会积累cab mRNA和被认为受植物色素调节的其他mRNA的野生型水平。使用生化,分子和形态学技术对植物色素缺乏型突变体的光生表型进行了检查,结果表明,在野生型叶绿体正常发育的条件下,该突变体显示出不完整的叶绿体和叶片发育。因此,尽管植物色素可能在黄化植物的基因表达中起作用,但绿色植物中植物色素的主要作用可能在于调节叶绿体的发育量,而不是触发与之相关的事件(例如基因表达)的启动。叶绿体发育。

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