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Fine-Scale Mapping of the Nasonia Genome to Chromosomes Using a High-Density Genotyping Microarray

机译:使用高密度基因分型微阵列的Nasonia基因组到染色体的精细比例图。

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摘要

Nasonia, a genus of four closely related parasitoid insect species, is a model system for genetic research. Their haplodiploid genetics (haploid males and diploid females) and interfertile species are advantageous for the genetic analysis of complex traits and the genetic basis of species differences. A fine-scale genomic map is an important tool for advancing genetic studies in this system. We developed and used a hybrid genotyping microarray to generate a high-resolution genetic map that covers 79% of the sequenced genome of Nasonia vitripennis. The microarray is based on differential hybridization of species-specific oligos between N. vitripennis and Nasonia giraulti at more than 20,000 markers spanning the Nasonia genome. The map places 729 scaffolds onto the five linkage groups of Nasonia, including locating many smaller scaffolds that would be difficult to map by other means. The microarray was used to characterize 26 segmental introgression lines containing chromosomal regions from one species in the genetic background of another. These segmental introgression lines have been used for rapid screening and mapping of quantitative trait loci involved in species differences. Finally, the microarray is extended to bulk-segregant analysis and genotyping of other Nasonia species combinations. These resources should further expand the usefulness of Nasonia for studies of the genetic basis and architecture of complex traits and speciation.
机译:Nasonia是四个密切相关的类寄生昆虫物种的属,是遗传研究的模型系统。他们的单倍体遗传学(单倍体雄性和二倍体雌性)和不育物种有利于复杂性状的遗传分析和物种差异的遗传基础。精细的基因组图谱是在该系统中推进遗传研究的重要工具。我们开发并使用了杂交基因分型微阵列来生成高分辨率遗传图谱,该图谱涵盖了Nasonia vitripennis测序基因组的79%。该微阵列基于在整个Nasonia基因组上的20,000多个标记上,在N. vitripennis和Nasonia giraulti之间物种特异性寡核苷酸的差异杂交。该地图将729个脚手架放置在Nasonia的五个链接组上,包括定位了许多较小的脚手架,这些脚手架将很难通过其他方式进行绘制。该微阵列用于表征26种节段性渗入系,其中含有一种在另一种遗传背景下的染色体区域。这些节段渐渗系已用于快速筛选和定位涉及物种差异的数量性状基因座。最终,微阵列扩展到了整体分离分析和其他纳索尼亚物种组合的基因分型。这些资源应进一步扩大纳索尼亚用于研究复杂性状和物种形成的遗传基础和结构的有用性。

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