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Quantitative trait locus mapping identifies candidate alleles involved in adaptive introgression and range expansion in a wild sunflower

机译:数量性状位点作图可鉴定与野生向日葵的适应性基因渗入和范围扩展有关的候选等位基因

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The wild North American sunflowers Helianthus annuus and H.debilis are participants in one of the earliest identified examples of adaptive trait introgression, and the exchange is hypothesized to have triggered a range expansion in H.annuus. However, the genetic basis of the adaptive exchange has not been examined. Here, we combine quantitative trait locus (QTL) mapping with field measurements of fitness to identify candidate H.debilis QTL alleles likely to have introgressed into H.annuus to form the natural hybrid lineage H.a.texanus. Two 500-individual BC1 mapping populations were grown in central Texas, genotyped for 384 single nucleotide polymorphism (SNP) markers and then phenotyped in the field for two fitness and 22 herbivore resistance, ecophysiological, phenological and architectural traits. We identified a total of 110 QTL, including at least one QTL for 22 of the 24 traits. Over 75% of traits exhibited at least one H.debilis QTL allele that would shift the trait in the direction of the wild hybrid H.a.texanus. We identified three chromosomal regions where H.debilis alleles increased both female and male components of fitness; these regions are expected to be strongly favoured in the wild. QTL for a number of other ecophysiological, phenological and architectural traits colocalized with these three regions and are candidates for the actual traits driving adaptive shifts. GxE interactions played a modest role, with 17% of the QTL showing potentially divergent phenotypic effects between the two field sites. The candidate adaptive chromosomal regions identified here serve as explicit hypotheses for how the genetic architecture of the hybrid lineage came into existence.
机译:北美野生向日葵向日葵和H.debilis是最早发现的适应性基因渗入实例之一,据推测,这种交换触发了H.annuus的范围扩展。但是,尚未研究自适应交换的遗传基础。在这里,我们将定量性状基因座(QTL)映射与适应性的田间测量相结合,以识别可能已渗入到黄H中以形成天然杂交谱系H.a.texanus的候选H.debilis QTL等位基因。在得克萨斯州中部种植了两个500个单独的BC1作图种群,对384个单核苷酸多态性(SNP)标记进行了基因分型,然后在田间对两个适应性和22种草食动物抗性,生态生理,物候和建筑性状进行了表型分析。我们共鉴定了110个QTL,其中包括24个性状中的22个的至少一个QTL。超过75%的性状表现出至少一个H.debilis QTL等位基因,它将使性状向野生杂种H.a.texanus的方向移动。我们鉴定了三个染色体区域,其中H.debilis等位基因增加了女性和男性的适应性;预计这些地区将受到野外强烈青睐。与这三个区域共存的其他许多生态,物候和建筑特征的QTL,也是驱动适应性转变的实际特征的候选者。 GxE相互作用起了适度的作用,有17%的QTL显示了两个田间位点之间潜在的表型差异。此处确定的候选自适应染色体区域可作为明确的假设,说明杂种谱系的遗传结构是如何形成的。

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