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首页> 外文期刊>Nature Communications >Molecular variation in a functionally divergent homolog of FCA regulates flowering time in Arabidopsis thaliana
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Molecular variation in a functionally divergent homolog of FCA regulates flowering time in Arabidopsis thaliana

机译:FCA功能性不同同源物中的分子变异调节拟南芥的开花时间

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The identification and functional characterization of natural variants in plants are essential for understanding phenotypic adaptation. Here we identify a molecular variation in At2g47310 that contributes to the natural variation in flowering time in Arabidopsis thaliana accessions. This gene, which we term SISTER of FCA (SSF), functions in an antagonistic manner to its close homolog FCA. Genome-wide association analysis screens two major haplotypes of SSF associated with the natural variation in FLC expression, and a single polymorphism, SSF-N414D, is identified as a main contributor. The SSF414N protein variant interacts more strongly with CUL1, a component of the E3 ubiquitination complex, than the SSF414D form, mediating differences in SSF protein degradation and FLC expression. FCA and SSF appear to have arisen through gene duplication after dicot-monocot divergence, with the SSF-N414D polymorphism emerging relatively recently within A. thaliana. This work provides a good example for deciphering the functional importance of natural polymorphisms in different organisms. Natural variation represents valuable source for gene discovery. Here, the authors show that a homolog of Flowering Control Locus A (FCA) functions in an antagonistic manner to FCA in regulating Arabidopsis flowering time through interacting with CUL1-E3 and modulating FLC expression.
机译:植物中天然变体的鉴定和功能表征对于了解表型适应是必不可少的。在这里,我们鉴定了AT2G47310的分子变异,这有助于拟南芥的开花时间的自然变化。这个基因,其FCA(SSF)的我们术语SISTER,以对抗方式与其接近的同源物FCA功能。基因组 - 范围的关联分析筛分与FLC表达的自然变化相关的SSF的两个主要单倍型,以及单一多态性SSF-N414D被鉴定为主要贡献者。 SSF414N蛋白变体与CUL1,E3泛素化复合物的组分相互作用,比SSF414D形式,介导SSF蛋白质降解和FLC表达的差异。通过Dicot-Monocot分歧后,FCA和SSF似乎通过基因复制而产生,SSF-N414D多态性最近在A. Thaliana内出现。这项工作提供了解密不同生物中天然多态性的功能重要性的一个很好的例子。自然变化代表基因发现的宝贵来源。在这里,作者表明,通过与CuL1-E3的相互作用和调节FLC表达,在调节拟南芥开花时间中,开花控制基因座A(FCA)的同源物以拮抗的方式起到FCA。

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