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Mutations in the DET1 gene affect cell-type-specific expression of light-regulated genes and chloroplast development in Arabidopsis

机译:DET1基因中的突变影响拟南芥中光调节基因的细胞类型特异性表达和叶绿体发育

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摘要

When grown in the absence of light, the det1 mutant of Arabidopsis thaliana develops characteristics of a light-grown plant by morphological, cellular, and molecular criteria. Here, we show that recessive mutations at the DET1 locus also result in cell-type inappropriate accumulation of RNAs for light-regulated nuclear and chloroplast genes. det1 root plastids are differentiated into chloroplasts and are present in very high numbers in root cortex cells in contrast to the few starch-containing amyloplasts normally found in Arabidopsis roots. To assay the effect of the det1 mutation on the expression of photoregulated promoters, we used fusion constructs to stably transform wild-type and det1 mutants. We show that the three red-light-regulated chlorophyll a/b binding protein promoters are inappropriately expressed in the roots of det1 seedlings and the blue-light-controlled anthocyanin biosynthetic gene, chalcone synthase, is expressed ectopically in leaf mesophyll cells. These results, together with out previous findings, suggest that the DET1 gene product is a negatively acting regulatory molecule that is used in common by the light stimulus transduction pathway and by temporal or spatial regulatory signals in plants.
机译:当在没有光照的条件下生长时,拟南芥的det1突变体通过形态,细胞和分子标准形成了轻生植物的特征。在这里,我们显示DET1基因座处的隐性突变也导致光调节的核和叶绿体基因的RNA的细胞类型不适当的积累。与通常在拟南芥属根中发现的少数含淀粉的淀粉质体相反,det1根质体分化为叶绿体,并且在根皮层细胞中以很高的数量存在。为了测定det1突变对光调节启动子表达的影响,我们使用融合构建体稳定转化了野生型和det1突变体。我们显示,三个红光调节叶绿素a / b结合蛋白启动子在det1幼苗的根中不适当地表达,而蓝光控制的花色苷生物合成基因查尔酮合酶在叶肉细胞中异位表达。这些结果,加上以前的发现,表明DET1基因产物是负作用的调节分子,在光刺激转导途径和植物的时间或空间调节信号中普遍使用。

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