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Analysis of natural allelic variation at flowering time loci in the Landsberg erecta and Cape Verde Islands ecotypes of Arabidopsis thaliana.

机译:拟南芥Landsberg erecta和佛得角群岛生态型开花期基因座的自然等位基因变异分析。

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摘要

We have analyzed the flowering behavior of two Arabidopsis ecotypes: the laboratory strain Landsberg erecta (Ler) and an ecotype from the tropical Cape Verde Islands (Cvi). They differ little in their flowering phenotypes and in their responses to photoperiod length changes and to vernalization treatment. However, segregating populations derived from crosses between them showed a much larger variation. An approach of quantitative trait locus (QTL) mapping in recombinant inbred lines (RILs) grown under three environments differing in day-length and/or vernalization treatment has been used to detect and locate flowering loci. Four main QTLs were identified, designated early day-length insensitive (EDI), flowering F, G, and H (FLF, FLG, and FLH, respectively), to which most of the flowering behavior differences could be attributed. To further characterize the individual loci, near isogenic lines were constructed by introgressing Cvi early alleles of EDI and FLH into the Ler genetic background. EDI-Cvi alleles produce earliness under both long- and short-day photoperiods, rendering Ler plants almost day-length neutral. In addition, RILs were selected to analyze FLF and FLG. These loci interact epistatically and RILs carrying late alleles at FLF and FLG were very responsive to vernalization and showed an increased response to photoperiod length changes. The possible role of these loci for the control of flowering is discussed in the context of the current Arabidopsis model.
机译:我们已经分析了两种拟南芥生态型的开花行为:实验室菌株Landsberg erecta(Ler)和热带佛得角群岛(Cvi)的生态型。它们的开花表型,对光周期长度变化和对春化处理的反应差异不大。但是,从它们之间的杂交中分离出的种群显示出更大的变化。在日间长度和/或春化处理不同的三种环境下生长的重组近交系(RIL)中定量性状基因座(QTL)定位的方法已用于检测和定位开花位点。鉴定了四个主要的QTL,命名为早期长度不敏感(EDI),开花F,G和H(分别为FLF,FLG和FLH),这可以归因于大多数开花行为差异。为了进一步表征单个基因座,通过将EDI和FLH的Cvi早期等位基因渗入Ler遗传背景,构建了近等基因系。 EDI-Cvi等位基因在长日和短日光周期下均能产生早期,使Ler植物几乎全天都是中性的。另外,选择了RIL来分析FLF和FLG。这些位点在上位相互作用,并且在FLF和FLG携带较晚等位基因的RIL对春化反应非常敏感,并且显示出对光周期长度变化的响应增加。在当前的拟南芥模型的背景下讨论了这些基因座在控制开花中的可能作用。

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