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首页> 外文期刊>The Journal of Heredity >Composite linkage map and enhanced genome map for Culex pipiens complex mosquitoes
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Composite linkage map and enhanced genome map for Culex pipiens complex mosquitoes

机译:淡色库蚊的复合连锁图谱和增强基因组图谱

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We report here the development of 65 novel microsatellite loci and construction of a composite genetic linkage map for Culex pipiens complex mosquitoes. Microsatellites were identified by in silico screening of the Culex quinquefasciatus genome assembly. Cross-species utility of 73 microsatellites for population studies in C. pipiens sensu stricto and C. quinquefasciatus was evaluated by genotyping a subset of samples collected in Indiana, United States, and Point Fortin, Trinidad. Allele frequencies of 67 microsatellites were within Hardy-Weinberg expectations in both population subsets. A composite linkage map was constructed based on restriction fragment length polymorphism and microsatellite polymorphisms in 12 independent F1 intercross mapping populations. The composite map consists of 61 marker loci totaling 183.9 cM distributed across the 3 linkage groups. These loci cover 29.5, 88.8, and 65.6 cM on chromosomes I-III, respectively, and allow for assignment of 10.4% of the genome assembly and 13.5% of the protein coding genes to chromosome position. Our results suggest that these microsatellites will be useful for mapping and population studies of 2 pervasive species in the C. pipiens complex. Moreover, the composite map presented here will serve as a basis for the construction of high-resolution genetic and physical maps, as well as detection of quantitative trait loci to aid in the investigation of complex genetic traits influencing phenotypes of interest.
机译:我们在这里报告65个新型微卫星基因座的发展和库蚊(Pilexens pipiens)复杂蚊子的复合遗传连锁图的建设。通过计算机筛选库克斯库克斯(Culex quinquefasciatus)基因组组装鉴定微卫星。通过对在美国印第安纳州和特立尼达的福廷角收集的一部分样本进行基因分型,评估了73种微卫星在种间研究中的应用。在这两个种群中,67个微卫星的等位基因频率均在Hardy-Weinberg的预期之内。基于限制性片段长度多态性和微卫星多态性在12个独立的F1交叉作图群体中构建了一个复合连锁图。复合图谱由分布在3个连锁组中的61个标记基因座组成,总计183.9 cM。这些基因座分别覆盖I-III染色体上的29.5、88.8和65.6 cM,并允许将10.4%的基因组装配体和13.5%的蛋白质编码基因分配给染色体位置。我们的研究结果表明,这些微卫星将有助于对C. pipiens复合体中2个无处不在的物种进行作图和种群研究。此外,这里介绍的合成图谱将作为构建高分辨率遗传图谱和物理图谱的基础,以及检测定量性状位点的基础,以协助研究影响目标表型的复杂遗传性状。

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