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Extensive intraspecific gene order and gene structural variations in upland cotton cultivars

机译:高地棉花种类的广泛的拆放基因秩序和基因结构变化

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Multiple cotton genomes (diploid and tetraploid) have been assembled. However, genomic variations between cultivars of allotetraploid upland cotton (Gossypium hirsutum L.), the most widely planted cotton species in the world, remain unexplored. Here, we use single-molecule long read and Hi-C sequencing technologies to assemble genomes of the two upland cotton cultivars TM-1 and zhongmiansuo24 (ZM24). Comparisons among TM-1 and ZM24 assemblies and the genomes of the diploid ancestors reveal a large amount of genetic variations. Among them, the top three longest structural variations are located on chromosome A08 of the tetraploid upland cotton, which account for ~30% total length of this chromosome. Haplotype analyses of the mapping population derived from these two cultivars and the germplasm panel show suppressed recombination rates in this region. This study provides additional genomic resources for the community, and the identified genetic variations, especially the reduced meiotic recombination on chromosome A08, will help future breeding.
机译:组装了多种棉基因组(二倍体和四倍体)。然而,同种异体一种倍性普通棉(Gossypium hirsutum L)的品种之间的基因组变异,世界上种植最广泛的棉花种类仍然是未开发的。在这里,我们使用单分子长读取和Hi-C测序技术来组装两种旱棉品种TM-1和中模24(ZM24)的基因组。 TM-1和ZM24组件中的比较和二倍体祖先的基因组揭示了大量的遗传变异。其中,前三个最长结构变化位于四倍体普通棉的染色体A08上,该染色体的总长度为约30%。从这两个品种的映射群和种质组的单倍型分析显示该区域中的抑制重组率。本研究为社区提供了额外的基因组资源,并且鉴定的遗传变异,特别是染色体A08上的减少的减数分子重组将有助于未来的繁殖。

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