首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Extensive haplotypes are associated with population differentiation and environmental adaptability in Upland cotton (Gossypium hirsutum)
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Extensive haplotypes are associated with population differentiation and environmental adaptability in Upland cotton (Gossypium hirsutum)

机译:广泛的单倍型与高于棉花(Gossypium hirsutum)的人口分化和环境适应性有关

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Key message Three extensive eco-haplotypes associated with population differentiation and environmental adaptability in Upland cotton were identified, with A06_85658585, A08_43734499 and A06_113104285 considered the eco-loci for environmental adaptability. Population divergence is suggested to be the primary force driving the evolution of environmental adaptability in various species. Chromosome inversion increases reproductive isolation between subspecies and accelerates population divergence to adapt to new environments. Although modern cultivated Upland cotton (Gossypium hirsutumL.) has spread worldwide, the noticeable phenotypic differences still existed among cultivars grown in different areas. In recent years, the long-distance migration of cotton cultivation areas throughout China has demanded that breeders better understand the genetic basis of environmental adaptability in Upland cotton. Here, we integrated the genotypes of 419 diverse accessions, long-term environment-associated variables (EAVs) and environment-associated traits (EATs) to evaluate subgroup differentiation and identify adaptive loci in Upland cotton. Two highly divergent genomic regions were found on chromosomes A06 and A08, which likely caused by extensive chromosome inversions. The subgroups could be geographically classified based on distinct haplotypes in the divergent regions. A genome-wide association study (GWAS) also confirmed that loci located in these regions were significantly associated with environmental adaptability in Upland cotton. Our study first revealed the cause of population divergence in Upland cotton, as well as the consequences of variation in its environmental adaptability. These findings provide new insights into the genetic basis of environmental adaptability in Upland cotton, which could accelerate the development of molecular markers for adaptation to climate change in future cotton breeding.
机译:关键消息鉴定了与人口分化和普通棉中种群分化和环境适应性相关的三种广泛的生态单型,A08_43734499和A06_113104285认为是环境适应性的生态基因座。建议人口分歧是推动各种物种环境适应性演变的主要力量。染色体反演增加了亚种之间的生殖隔离,并加速人口分歧以适应新环境。虽然现代栽培高地棉花(Gossypium hirsutuml。)在全球范围内传播,但在不同区域种植的品种中仍然存在明显的表型差异。近年来,中国棉花种植区的长途迁移要求育种者更好地了解高地棉花环境适应性的遗传基础。在这里,我们综合了419个不同的进入,长期环境相关变量(EAV)和环境相关性状(EATS)的基因型,以评估普通棉中的子组分化并识别自适应基因座。在染色体A06和A08上发现了两个高度分歧的基因组区域,这可能由广泛的染色体反转引起。基于分歧区域中的不同的单倍型,亚组可以在地理上分类。基因组 - 范围的协会研究(GWAS)还证实,位于这些区域的基因座与Upland棉中的环境适应性显着相关。我们的研究首先揭示了旱地棉花的人口分歧,以及环境适应性变化的后果。这些调查结果为高地棉花的环境适应性的遗传基础提供了新的见解,这可以加速对未来棉育种的气候变化的分子标记的发展。

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