首页> 外文期刊>The New Phytologist >Genome scans reveal candidate domestication and improvement genes in cultivated sunflower, as well as post-domestication introgression with wild relatives
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Genome scans reveal candidate domestication and improvement genes in cultivated sunflower, as well as post-domestication introgression with wild relatives

机译:基因组扫描显示栽培向日葵中的候选驯化和改良基因,以及野生亲本的驯化后渗入

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The development of modern crops typically involves both selection and hybridization, but to date most studies have focused on the former. In the present study, we explore how bothprocesses, and their interactions, have molded the genome of the cultivated sunflower (Helianthus annuus), a globally important oilseed. To identify genes targeted by selection during the domestication and improvement of sunflower, and to detect post-domestication hybridization with wild species, we analyzed transcriptome sequences of 80 genotypes, including wild, landrace, and modern lines of H.annuus, as well as two cross-compatible wild relatives, Helianthusargophyllus and Helianthuspetiolaris. Outlier analyses identified 122 and 15 candidate genes associated with domestication and improvement, respectively. As in several previous studies, genes putatively involved in oil biosynthesis were the most extreme outliers. Additionally, several promising associations were observed with previously mapped quantitative trait loci (QTLs), such as branching. Admixture analyses revealed that all the modern cultivar genomes we examined contained one or more introgressions from wild populations, with every chromosome having evidence of introgression in at least one modern line. Cumulatively, introgressions cover c. 10% of the cultivated sunflower genome. Surprisingly, introgressions do not avoid candidate domestication genes, probably because of the reintroduction of branching.
机译:现代农作物的开发通常涉及选择和杂交,但迄今为止,大多数研究都集中在前者上。在本研究中,我们探索了这两个过程及其相互作用如何塑造了全球重要油籽栽培向日葵(Helianthus annuus)的基因组。为了鉴定向日葵驯化和改良过程中选择的目标基因,并检测与野生物种的驯化后杂交,我们分析了80种基因型的转录组序列,包括野生,地方品种和现代的H.annuus,以及两个交叉兼容的野生亲缘种Helianthusargophyllus和Helianthuspetiolaris。异常值分析分别确定了122个和15个与驯化和改良相关的候选基因。与先前的几项研究一样,推定参与石油生物合成的基因是最极端的异常值。此外,观察到与以前映射的数量性状基因座(QTL)的一些有希望的关联,例如分支。混合分析显示,我们检查的所有现代品种基因组均包含一种或多种来自野生种群的基因渗入,且每个染色体至少在一个现代系中均具有基因渗入的证据。累计覆盖了c。栽培向日葵基因组的10%。出乎意料的是,基因渗入不能避免候选驯化基因,这可能是由于分支的重新引入。

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