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首页> 外文期刊>Plant and cell physiology >The Plastidic DEAD-box RNA Helicase 22, HS3, is Essential for Plastid Functions Both in Seed Development and in Seedling Growth
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The Plastidic DEAD-box RNA Helicase 22, HS3, is Essential for Plastid Functions Both in Seed Development and in Seedling Growth

机译:Plastidic DEAD-box RNA解旋酶22,HS3,对于种子发育和幼苗生长中的质体功能至关重要

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Plants accumulate large amounts of storage products in seeds to provide an energy reserve and to supply nutrients for germination and post-germinative growth. Arabidopsis thaliana belongs to the Brassica family, and oil is the main storage product in Arabidopsis seeds. To elucidate the regulatory mechanisms of oil biosynthesis in seeds, we screened for high density seeds (heavy seed) that have a low oil content. HS3 (heavy seed 3) encodes the DEAD-box RNA helicase 22 that is localized to plastids. The triacylglycerol (TAG) content of hs3-1 seeds was 10% lower than that of wild-type (WT) seeds, while the protein content was unchanged. The hs3-1 plants displayed a pale-green phenotype in developing seeds and seedlings, but not in adult leaves. The HS3 expression level was high in developing seeds and seedlings, but was low in stems, rosette leaves and flowers. The plastid gene expression profile of WT developing seeds and seedlings differed from that of hs3-1 developing seeds and seedlings. The expression of several genes was reduced in developing hs3-1 seeds, including accD, a gene that encodes the beta subunit of carboxyltransferase, which is one component of acetyl-CoA carboxylase in plastids. In contrast, no differences were observed between the expression profiles of WT and hs3-1 rosette leaves. These results show that HS3 is essential for proper mRNA accumulation of plastid genes during seed development and seedling growth, and suggest that HS3 ensures seed oil biosynthesis by maintaining plastid mRNA levels.
机译:植物会在种子中积累大量的存储产品,以提供能量储备并为发芽和发芽后生长提供营养。拟南芥属于芸苔属,油是拟南芥种子的主要储存产品。为了阐明种子中油脂生物合成的调控机制,我们筛选了含油量低的高密度种子(重种子)。 HS3(重种子3)编码位于质体中的DEAD-box RNA解旋酶22。 hs3-1种子的三酰基甘油(TAG)含量比野生型(WT)种子低10%,而蛋白质含量没有变化。 hs3-1植物在发育中的种子和幼苗中显示出淡绿色的表型,但在成年叶片中则没有。在发育中的种子和幼苗中,HS3表达水平高,而在茎,莲座叶和花中,HS3表达水平低。 WT发育的种子和幼苗的质体基因表达谱不同于hs3-1发育的种子和幼苗。在发育中的hs3-1种子中,一些基因的表达降低了,其中包括accD,该基因编码羧化酶β亚基,后者是质体中乙酰辅酶A羧化酶的一个组成部分。相反,在WT和hs3-1莲座叶的表达谱之间未观察到差异。这些结果表明,HS3对于种子发育和幼苗生长期间质体基因的适当mRNA积累是必不可少的,并且表明HS3通过维持质体mRNA水平来确保种子油的生物合成。

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