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具有染色体重排的非模式物种的微卫星图谱绘制:以棘胸蛙(无尾目:叉舌蛙科)为例的研究

Microsatellites mapping for non-model species with chromosomal rearrangement: a case study in the frog Quasipaa boulengeri (Anura: Dicroglossidae).

作者信息

Yuan Xiuyun, Yuan Siqi, Liu Ya, Xia Yun, Zeng Xiaomao

机构信息

a Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu, China.

b University of Chinese Academy of Sciences, Beijing, China.

出版信息

Genome. 2017 Aug;60(8):707-711. doi: 10.1139/gen-2016-0200. Epub 2017 Jul 20.

Abstract

Gene mapping is an important resource for understanding the evolution of genes and cytogenetics. Model species with a known genetic map or genome sequence allow for the selection of genetic markers on a desired chromosome, while it is hard to locate these markers on chromosomes of non-model species without such references. A frog species, Quasipaa boulengeri, shows chromosomal rearrangement polymorphisms, making itself a fascinating model for chromosomal speciation mediated by suppressed recombination. However, no markers have been located on its rearranged chromosomes. We present a complete protocol to map microsatellites based on mechanical microdissection and chromosome amplification techniques. Following this protocol, we mapped 71 microsatellites of Q. boulengeri at the chromosome level. In total, eight loci were assigned to rearranged chromosomes, and the other 63 loci might attach to other chromosomes. These microsatellites could be used to compare the gene flow and verify the chromosomal suppressed recombination hypothesis in Q. boulengeri. This integrated protocol could be effectively used to map genes to chromosomes for non-model species.

摘要

基因定位是理解基因进化和细胞遗传学的重要资源。具有已知遗传图谱或基因组序列的模式物种能够在所需染色体上选择遗传标记,而在没有此类参考的情况下,很难在非模式物种的染色体上定位这些标记。一种蛙类物种,棘腹蛙(Quasipaa boulengeri),表现出染色体重排多态性,使其成为由抑制重组介导的染色体物种形成的一个引人入胜的模型。然而,尚未在其重排染色体上定位到任何标记。我们提出了一个基于机械显微切割和染色体扩增技术的完整方案来定位微卫星。按照这个方案,我们在染色体水平上定位了棘腹蛙的71个微卫星。总共,8个位点被定位到重排染色体上,另外63个位点可能附着在其他染色体上。这些微卫星可用于比较基因流并验证棘腹蛙中染色体抑制重组假说。这个综合方案可有效地用于将非模式物种的基因定位到染色体上。

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