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两个栽培的异源四倍体棉花(陆地棉和海岛棉)的参考基因组序列。

Reference genome sequences of two cultivated allotetraploid cottons, Gossypium hirsutum and Gossypium barbadense.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Nat Genet. 2019 Feb;51(2):224-229. doi: 10.1038/s41588-018-0282-x. Epub 2018 Dec 3.

Abstract

Allotetraploid cotton species (Gossypium hirsutum and Gossypium barbadense) have long been cultivated worldwide for natural renewable textile fibers. The draft genome sequences of both species are available but they are highly fragmented and incomplete. Here we report reference-grade genome assemblies and annotations for G. hirsutum accession Texas Marker-1 (TM-1) and G. barbadense accession 3-79 by integrating single-molecule real-time sequencing, BioNano optical mapping and high-throughput chromosome conformation capture techniques. Compared with previous assembled draft genomes, these genome sequences show considerable improvements in contiguity and completeness for regions with high content of repeats such as centromeres. Comparative genomics analyses identify extensive structural variations that probably occurred after polyploidization, highlighted by large paracentric/pericentric inversions in 14 chromosomes. We constructed an introgression line population to introduce favorable chromosome segments from G. barbadense to G. hirsutum, allowing us to identify 13 quantitative trait loci associated with superior fiber quality. These resources will accelerate evolutionary and functional genomic studies in cotton and inform future breeding programs for fiber improvement.

摘要

异源四倍体棉花物种(陆地棉和海岛棉)长期以来一直被世界各地广泛种植,以获取天然可再生的纺织纤维。这两个物种的基因组草图序列已经公布,但它们高度碎片化且不完整。在此,我们通过整合单分子实时测序、生物纳米光学图谱和高通量染色体构象捕获技术,报告了陆地棉 TM-1 品系和海岛棉 3-79 品系的参考级基因组组装和注释。与之前组装的基因组草图相比,这些基因组序列在着丝粒等富含重复序列的区域的连续性和完整性方面有了显著提高。比较基因组学分析鉴定了大量可能发生在多倍化之后的结构变异,14 条染色体上存在大片段的臂间/臂内倒位。我们构建了一个渐渗系群体,将海岛棉的有利染色体片段导入陆地棉,从而鉴定出与纤维品质相关的 13 个数量性状位点。这些资源将加速棉花的进化和功能基因组研究,并为未来的纤维改良育种计划提供信息。

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