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首页> 外文期刊>Rice >REL2, A Gene Encoding An Unknown Function Protein which Contains DUF630 and DUF632 Domains Controls Leaf Rolling in Rice
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REL2, A Gene Encoding An Unknown Function Protein which Contains DUF630 and DUF632 Domains Controls Leaf Rolling in Rice

机译:REL2,一种编码包含DUF630和DUF632结构域的未知功能蛋白的基因,控制水稻的卷叶

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BackgroundRice leaves are important energy source for the whole plant. An optimal structure will be beneficial for rice leaves to capture light energy and exchange gas, thus increasing the yield of rice. Moderate leaf rolling and relatively erect plant architecture may contribute to high yield of rice, but the relevant molecular mechanism remains unclear. ResultsIn this study, we identified and characterized a rolling and erect leaf mutant in rice and named it as rel2 . Histological analysis showed that the rel2 mutant has increased number of bulliform cells and reduced size of middle bulliform cells. We firstly mapped REL2 to a 35-kb physical region of chromosome 10 by map-based cloning strategy. Further analysis revealed that REL2 encodes a protein containing DUF630 and DUF632 domains. In rel2 mutant, the mutation of two nucleotide substitutions in DUF630 domain led to the loss-of-function of REL2 locus and the function of REL2 could be confirmed by complementary expression of REL2 in rel2 mutant. Further studies showed that REL2 protein is mainly distributed along the plasma membrane of cells and the REL2 gene is relatively higher expressed in younger leaves of rice. The results from quantitative RT-PCR analysis indicated that REL2 functioning in the leaf shape formation might have functional linkage with many genes associated with the bulliform cells development, auxin synthesis and transport, etc. ConclusionsREL2 is the DUF domains contained protein which involves in the control of leaf rolling in rice. It is the plasma membrane localization and its functions in the control of leaf morphology might involve in multiple biological processes such as bulliform cell development and auxin synthesis and transport.
机译:背景稻米是整个植物的重要能源。最佳的结构将有利于水稻叶片捕获光能并交换气体,从而提高水稻的产量。适度的卷叶和相对直立的植物结构可能有助于水稻的高产,但相关的分子机制仍不清楚。结果在这项研究中,我们鉴定并鉴定了水稻中滚动和直立的叶片突变体,并将其命名为rel2。组织学分析表明,rel2突变体具有增加的疱状细胞数量和减小的中间疱状细胞大小。我们首先通过基于图的克隆策略将REL2映射到10号染色体的35kb物理区域。进一步分析表明,REL2编码包含DUF630和DUF632结构域的蛋白质。在rel2突变体中,DUF630结构域中两个核苷酸取代的突变导致REL2基因座的功能丧失,并且REL2的功能可以通过REL2突变体中REL2的互补表达来证实。进一步的研究表明,REL2蛋白主要分布在细胞的质膜上,而REL2基因在水稻幼叶中的表达相对较高。定量RT-PCR分析结果表明,REL2在叶片形状形成中的功能可能与许多与大疱状细胞发育,生长素的合成和转运等相关的基因具有功能性连锁。结论REL2是DUF结构域中所含的蛋白质,参与调控在水稻中滚动的叶子。它是质膜的定位,其在控制叶片形态中的功能可能涉及多种生物学过程,例如大疱状细胞发育以及生长素的合成和运输。

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