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From the Cover: Whole-genome sequencing of cultivated and wild peppers provides insights into Capsicum domestication and specialization

机译:从封面开始:栽培和野生辣椒的全基因组测序提供了有关辣椒驯化和专业化的见解

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摘要

As an economic crop, pepper satisfies people’s spicy taste and has medicinal uses worldwide. To gain a better understanding of Capsicum evolution, domestication, and specialization, we present here the genome sequence of the cultivated pepper Zunla-1 (C. annuum L.) and its wild progenitor Chiltepin (C. annuum var. glabriusculum). We estimate that the pepper genome expanded ∼0.3 Mya (with respect to the genome of other Solanaceae) by a rapid amplification of retrotransposons elements, resulting in a genome comprised of ∼81% repetitive sequences. Approximately 79% of 3.48-Gb scaffolds containing 34,476 protein-coding genes were anchored to chromosomes by a high-density genetic map. Comparison of cultivated and wild pepper genomes with 20 resequencing accessions revealed molecular footprints of artificial selection, providing us with a list of candidate domestication genes. We also found that dosage compensation effect of tandem duplication genes probably contributed to the pungent diversification in pepper. The Capsicum reference genome provides crucial information for the study of not only the evolution of the pepper genome but also, the Solanaceae family, and it will facilitate the establishment of more effective pepper breeding programs.
机译:作为一种经济作物,胡椒满足人们的辛辣口味,并在全球范围内具有药用价值。为了更好地了解辣椒的进化,驯化和专业化,我们在这里介绍了栽培的胡椒Zunla-1(C. annuum L.)及其野生祖先Chiltepin(C. annuum var。glabriusculum)的基因组序列。我们估计,通过逆转录转座子元件的快速扩增,辣椒的基因组扩大了〜0.3 Mya(相对于其他茄科的基因组),从而形成了一个由〜81%重复序列组成的基因组。通过高密度遗传图谱,大约79%的包含34,476个蛋白编码基因的3.48 Gb支架被固定在染色体上。栽培和野生辣椒基因组与20个重测序材料的比较显示出人工选择的分子足迹,从而为我们提供了候选驯化基因的列表。我们还发现串联重复基因的剂量补偿作用可能有助于辣椒的辛辣多样化。辣椒参考基因组不仅为研究辣椒基因组的进化提供了重要信息,而且为茄科提供了重要的信息,它将有助于建立更有效的辣椒育种计划。

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