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Quantitative trait locus mapping and DNA array hybridization identify an FLM deletion as a cause for natural flowering-time variation

机译:数量性状基因座作图和DNA阵列杂交确定FLM缺失是自然开花时间变化的原因

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摘要

Much of the flowering time variation in wild strains of Arabidopsis thaliana is due to allelic variation at two epistatically acting loci, FRIGIDA (FRI) and FLOWERING LOCUS C (FLC). FLC encodes a MADS (MCM1/AGAMOUS/DEFICIENS/SRF1) domain transcription factor that directly represses a series of flowering-promoting genes. FRI and FLC, however, do not explain all of the observed variation, especially when plants are grown in short days. To identify loci that act in addition to FRI and FLC in controlling flowering of natural accessions, we have analyzed a recombinant inbred line population derived from crosses of accession Niederzenz (Nd) to Columbia, both of which contain natural FRI lesions. Quantitative trait locus mapping and genomic DNA analysis by microarray hybridization were used to identify candidate genes affecting variation in flowering behavior. In both long and short days, the quantitative trait locus of largest effect, termed FLOWERING 1 (FLW1), was found to be associated with a Nd-specific deletion of FLOWERING LOCUS M (FLM), which encodes a floral repressor closely related to FLC. Analysis of near isogenic lines and quantitative transgenic complementation experiments confirmed that the FLM deletion is, in large part, responsible for the early flowering of the Nd accession.
机译:野生拟南芥菌株的开花时间大部分是由于两个上位性基因座FRIGIDA(FRI)和LOWERING LOCUS C(FLC)等位基因的变异所致。 FLC编码直接抑制一系列促花基因的MADS(MCM1 / AGAMOUS / DEFICIENS / SRF1)域转录因子。但是,FRI和FLC不能解释所有观察到的变异,特别是当植物在短时间内生长时。为了确定除FRI和FLC之外还可以控制自然种质开花的基因座,我们分析了从Niederzenz(Nd)到哥伦比亚的种质杂交得到的重组自交系种群,这两个种均含有天然FRI病变。定量性状基因座作图和通过微阵列杂交的基因组DNA分析被用于鉴定影响开花行为变化的候选基因。在漫长的短时间内,发现最大的数量性状位点被称为FLOWERING 1(FLW1)与Nd特异性缺失的FLOWERING LOCUS M(FLM)有关,后者编码与FLC密切相关的花卉阻遏物。对近等基因系的分析和定量转基因互补实验证实,FLM缺失在很大程度上负责Nd的早期开花。

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