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A genomic variation map provides insights into the genetic basis of cucumber domestication and diversity.

Jianjian QiXin LiuDi ShenHan MiaoBingyan XieXixiang LiPeng ZengShenhao WangYi ShangXingfang GuYongchen DuYing LiTao LinJinhong YuanXueyong YangJinfeng ChenHuiming ChenXingyao XiongKe HuangZhangjun FeiLinyong MaoLi TianThomas StädlerSusanne S RennerSophien KamounWilliam J LucasZhonghua ZhangSanwen Huang
Published in: Nature genetics (2013)
Most fruits in our daily diet are the products of domestication and breeding. Here we report a map of genome variation for a major fruit that encompasses ~3.6 million variants, generated by deep resequencing of 115 cucumber lines sampled from 3,342 accessions worldwide. Comparative analysis suggests that fruit crops underwent narrower bottlenecks during domestication than grain crops. We identified 112 putative domestication sweeps; 1 of these regions contains a gene involved in the loss of bitterness in fruits, an essential domestication trait of cucumber. We also investigated the genomic basis of divergence among the cultivated populations and discovered a natural genetic variant in a β-carotene hydroxylase gene that could be used to breed cucumbers with enhanced nutritional value. The genomic history of cucumber evolution uncovered here provides the basis for future genomics-enabled breeding.
Keyphrases
  • copy number
  • genome wide
  • dna methylation
  • physical activity
  • gene expression
  • weight loss