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PNAS Plus: Genome diversity of tuber-bearing Solanum uncovers complex evolutionary history and targets of domestication in the cultivated potato

机译:PNAS Plus:带有马铃薯的马铃薯的基因组多样性揭示了栽培马铃薯的复杂进化史和驯化目标

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摘要

Cultivated potatoes (Solanum tuberosum L.), domesticated from wild Solanum species native to the Andes of southern Peru, possess a diverse gene pool representing more than 100 tuber-bearing relatives (Solanum section Petota). A diversity panel of wild species, landraces, and cultivars was sequenced to assess genetic variation within tuber-bearing Solanum and the impact of domestication on genome diversity and identify key loci selected for cultivation in North and South America. Sequence diversity of diploid and tetraploid S. tuberosum exceeded any crop resequencing study to date, in part due to expanded wild introgressions following polyploidy that captured alleles outside of their geographic origin. We identified 2,622 genes as under selection, with only 14–16% shared by North American and Andean cultivars, showing that a limited gene set drove early improvement of cultivated potato, while adaptation of upland (S. tuberosum group Andigena) and lowland (S. tuberosum groups Chilotanum and Tuberosum) populations targeted distinct loci. Signatures of selection were uncovered in genes controlling carbohydrate metabolism, glycoalkaloid biosynthesis, the shikimate pathway, the cell cycle, and circadian rhythm. Reduced sexual fertility that accompanied the shift to asexual reproduction in cultivars was reflected by signatures of selection in genes regulating pollen development/gametogenesis. Exploration of haplotype diversity at potato’s maturity locus (StCDF1) revealed introgression of truncated alleles from wild species, particularly S. microdontum in long-day–adapted cultivars. This study uncovers a historic role of wild Solanum species in the diversification of long-day–adapted tetraploid potatoes, showing that extant natural populations represent an essential source of untapped adaptive potential.
机译:从秘鲁南部安第斯山脉原生的野生茄属植物驯化的栽培马铃薯(Solanum tuberosum L.)拥有代表100多个带有块茎亲属的多样性基因库(Solanum section Petota)。对野生物种,地方品种和栽培品种的多样性小组进行了测序,以评估带有块茎的茄属植物内的遗传变异以及驯化对基因组多样性的影响,并确定在北美和南美选择种植的关键基因座。迄今为止,二倍体和四倍体马铃薯的序列多样性超过了任何农作物重测序研究,部分原因是由于多倍体捕获了等位基因以外的多态性,导致野生基因渗入扩大。我们确定了2,622个处于选择中的基因,北美和安第斯品种仅共享14–16%的基因,这表明有限的基因组可以推动栽培马铃薯的早期改良,同时适应高地(马铃薯块茎Andigena)和低地(S马铃薯群Chilotanum和Tuberosum)的种群针对不同的基因座。在控制碳水化合物代谢,糖生物碱生物合成,sh草酸途径,细胞周期和昼夜节律的基因中发现了选择的特征。在调节花粉发育/配子发生的基因中选择的特征反映了伴随着品种向无性繁殖转变的性育能力的降低。在马铃薯成熟位点(StCDF1)上对单倍型多样性的探索表明,在长期适应的栽培品种中,野生物种特别是小齿南沙门氏菌的截短等位基因渗入。这项研究揭示了野生茄属物种在适应长期适应的四倍体马铃薯的多样化中的历史性作用,表明现有的自然种群是未开发的适应潜力的重要来源。

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