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栽培棉地理分化和纤维改良的基因组基础。

The genomic basis of geographic differentiation and fiber improvement in cultivated cotton.

机构信息

State Key Laboratory of Cotton Biology, Institute of Cotton Research of the Chinese Academy of Agricultural Sciences, Anyang, China.

School of Computer Science & Information Engineering, Anyang Institute of Technology, Anyang, China.

出版信息

Nat Genet. 2021 Jun;53(6):916-924. doi: 10.1038/s41588-021-00844-9. Epub 2021 Apr 15.

Abstract

Large-scale genomic surveys of crop germplasm are important for understanding the genetic architecture of favorable traits. The genomic basis of geographic differentiation and fiber improvement in cultivated cotton is poorly understood. Here, we analyzed 3,248 tetraploid cotton genomes and confirmed that the extensive chromosome inversions on chromosomes A06 and A08 underlies the geographic differentiation in cultivated Gossypium hirsutum. We further revealed that the haplotypic diversity originated from landraces, which might be essential for understanding adaptative evolution in cultivated cotton. Introgression and association analyses identified new fiber quality-related loci and demonstrated that the introgressed alleles from two diploid cottons had a large effect on fiber quality improvement. These loci provided the potential power to overcome the bottleneck in fiber quality improvement. Our study uncovered several critical genomic signatures generated by historical breeding effects in cotton and a wealth of data that enrich genomic resources for the research community.

摘要

大规模的作物种质基因组调查对于理解有利性状的遗传结构很重要。栽培棉地理分化和纤维改良的基因组基础知之甚少。在这里,我们分析了 3248 个四倍体棉基因组,证实了 A06 和 A08 染色体上广泛的染色体倒位是栽培棉 Gossypium hirsutum 地理分化的基础。我们进一步揭示了来自地方品种的单倍型多样性,这可能对于理解栽培棉的适应性进化至关重要。基因渗入和关联分析鉴定了新的纤维品质相关基因座,并表明来自两个二倍体棉的渗入等位基因对纤维品质改良有很大影响。这些基因座为克服纤维品质改良的瓶颈提供了潜在的力量。我们的研究揭示了棉花历史育种效应产生的几个关键基因组特征,并为研究界丰富了基因组资源。

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