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大薯的染色体进化和农艺重要性状的遗传基础。

Chromosome evolution and the genetic basis of agronomically important traits in greater yam.

机构信息

Department of Molecular & Cell Biology, University of California, Berkeley, CA, 94720, USA.

Innovative Genomics Institute, Berkeley, CA, USA.

出版信息

Nat Commun. 2022 Apr 14;13(1):2001. doi: 10.1038/s41467-022-29114-w.

Abstract

The nutrient-rich tubers of the greater yam, Dioscorea alata L., provide food and income security for millions of people around the world. Despite its global importance, however, greater yam remains an orphan crop. Here, we address this resource gap by presenting a highly contiguous chromosome-scale genome assembly of D. alata combined with a dense genetic map derived from African breeding populations. The genome sequence reveals an ancient allotetraploidization in the Dioscorea lineage, followed by extensive genome-wide reorganization. Using the genomic tools, we find quantitative trait loci for resistance to anthracnose, a damaging fungal pathogen of yam, and several tuber quality traits. Genomic analysis of breeding lines reveals both extensive inbreeding as well as regions of extensive heterozygosity that may represent interspecific introgression during domestication. These tools and insights will enable yam breeders to unlock the potential of this staple crop and take full advantage of its adaptability to varied environments.

摘要

富含营养的大薯(Dioscorea alata L.)块茎为全球数百万人提供了食物和收入保障。然而,尽管大薯具有全球重要性,但它仍然是一种孤儿作物。在这里,我们通过呈现一个高度连续的染色体规模基因组组装和一个源自非洲育种群体的密集遗传图谱来解决这个资源缺口。基因组序列揭示了薯蓣属中的一个古老的异源四倍化,随后是广泛的全基因组重组。利用基因组工具,我们找到了对炭疽病(一种破坏大薯的真菌病原体)的抗性和几个块茎品质性状的数量性状位点。对育种系的基因组分析揭示了广泛的近亲繁殖以及广泛的杂合区域,这可能代表了在驯化过程中的种间渐渗。这些工具和见解将使大薯育种者能够挖掘这种主食作物的潜力,并充分利用其对不同环境的适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a25a/9010478/0aa863d4cf57/41467_2022_29114_Fig1_HTML.jpg

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