首页> 外文期刊>Journal of Experimental Botany >A naturally occurring splicing site mutation in the Brassica rapa FLC1 gene is associated with variation in flowering time.
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A naturally occurring splicing site mutation in the Brassica rapa FLC1 gene is associated with variation in flowering time.

机译:甘蓝型油菜FLC1基因中自然发生的剪接位点突变与开花时间的变化有关。

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摘要

FLOWERING LOCUS C (FLC), encoding a MADS-domain transcription factor in Arabidopsis, is a repressor of flowering involved in the vernalization pathway. This provides a good reference for Brassica species. Genomes of Brassica species contain several FLC homologues and several of these colocalize with flowering-time QTL. Here the analysis of sequence variation of BrFLC1 in Brassica rapa and its association with the flowering-time phenotype is reported. The analysis revealed that a G[rightward arrow]A polymorphism at the 5' splice site in intron 6 of BrFLC1 is associated with flowering phenotype. Three BrFLC1 alleles with alternative splicing patterns, including two with different parts of intron 6 retained and one with the entire exon 6 excluded from the transcript, were identified in addition to alleles with normal splicing. It was inferred that aberrant splicing of the pre-mRNA leads to loss-of-function of BrFLC1. A CAPS marker was developed for this locus to distinguish Pi6+1(G) and Pi6+1(A). The polymorphism detected with this marker was significantly associated with flowering time in a collection of 121 B. rapa accessions and in a segregating Chinese cabbage doubled-haploid population. These findings suggest that a naturally occurring splicing mutation in the BrFLC1 gene contributes greatly to flowering-time variation in B. rapa.
机译:拟南芥中编码MADS结构域转录因子的FLOWERING LOCUS C(FLC)是抑制春化途径中开花的阻遏物。这为芸苔属物种提供了很好的参考。芸苔属的基因组包含多个FLC同源物,其中一些与开花期QTL共同定位。在这里,对芸苔BrBrC1的序列变异及其与开花时间表型的关系进行了分析。分析显示,BrFLC1的内含子6中5'剪接位点的G [A向右]多态性与开花表型有关。除了具有正常剪接的等位基因外,还鉴定了三个具有可变剪接模式的BrFLC1等位基因,其中两个保留了内含子6的不同部分,一个保留了整个外显子6。推测前mRNA的异常剪接导致BrFLC1的功能丧失。为此部位开发了CAPS标记,以区分Pi6 + 1(G)和Pi6 + 1(A)。用此标记物检测到的多态性与121个芜菁种质和分离的大白菜双单倍体种群的开花时间显着相关。这些发现表明,BrFLC1基因中自然发生的剪接突变大大促进了B. rapa的开花时间变化。

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