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Genomic analyses provide insights into the history of tomato breeding

机译:基因组分析可提供有关番茄育种历史的见解

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摘要

The histories of crop domestication and breeding are recorded in genomes. Although tomato is a model species for plant biology and breeding, the nature of human selection that altered its genome remains largely unknown. Here we report a comprehensive analysis of tomato evolution based on the genome sequences of 360 accessions. We provide evidence that domestication and improvement focused on two independent sets of quantitative trait loci (QTLs), resulting in modern tomato fruit a 1/4100 times larger than its ancestor. Furthermore, we discovered a major genomic signature for modern processing tomatoes, identified the causative variants that confer pink fruit color and precisely visualized the linkage drag associated with wild introgressions. This study outlines the accomplishments as well as the costs of historical selection and provides molecular insights toward further improvement.
机译:作物驯化和育种的历史记录在基因组中。尽管番茄是植物生物学和育种的典范物种,但人类选择改变其基因组的性质仍然未知。在这里,我们报告了基于360种材料的基因组序列对番茄进化的全面分析。我们提供的证据表明,驯化和改良集中在两个独立的数量性状基因座(QTL)集上,从而导致现代番茄果实比其祖先大1/4100倍。此外,我们发现了现代加工番茄的主要基因组特征,确定了赋予粉红色水果颜色的致病变异,并精确显示了与野生渗入有关的连锁阻力。这项研究概述了历史选择的成就和成本,并提供了进一步改进的分子见解。

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