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非洲爪蟾的基因图谱绘制:已确定八个连锁群。

Genetic mapping in Xenopus laevis: eight linkage groups established.

作者信息

Graf J D

机构信息

Station de Zoologie Expérimentale, Université de Genève, Switzerland.

出版信息

Genetics. 1989 Oct;123(2):389-98. doi: 10.1093/genetics/123.2.389.

Abstract

Inheritance of alleles at 29 electrophoretically detected protein loci and one pigment locus (albinism) was analyzed in Xenopus laevis by backcrossing multiply heterozygous individuals generated by intersubspecies hybridization. Pairwise linkage tests revealed eight classical linkage groups. These groups have been provisionally numbered from 1 to 8 in an arbitrarily chosen order. Linkage group 1 includes ALB-2 (albumin), ADH-1 (alcohol dehydrogenase), NP (nucleoside phosphorylase), and ap (periodic albinism). Linkage group 2 contains ALB-1 and ADH-2, and probably is homeologous to group 1. Linkage group 3 comprises PEP-B (peptidase B), MPI-1 (mannosephosphate isomerase), SORD (sorbitol dehydrogenase), and mIDH-2 (mitochondrial isocitrate dehydrogenase). Linkage group 4 contains GPI-1 (glucosephosphate isomerase) and EST-4 (esterase 4). Linkage group 5 contains GPI-2 and PEP-D (peptidase D). Linkage group 6 comprises ACP-3 (acid phosphatase), sME (cytosolic malic enzyme), and GLO-2 (glyoxalase). Linkage group 7 consists of sSOD-1 (cytosolic superoxide dismutase), GPD-2 (glycerol-3-phosphate dehydrogenase), mME (mitochondrial malic enzyme), and the sex determining locus. Linkage group 8 includes FH (fumarate hydratase) and TRF (transferrin). Recombination frequencies between linked loci showed differences related to the genomic constitution (parental subspecies) and to the sex of the heterozygous parent. Independent assortment was observed between the duplicate ALB loci. This is true for the duplicate ADH, GLO, and MPI loci as well, supporting the view that these genes have been duplicated as part of a genome duplication that occurred in the evolutionary history of X. laevis. Comparative analysis of genetic maps reveals a possible conservation of several linkages from the Xenopus genome to the human genome.

摘要

通过对亚种间杂交产生的多重杂合个体进行回交,分析了非洲爪蟾29个经电泳检测的蛋白质位点和一个色素位点(白化病)的等位基因遗传情况。成对连锁测试揭示了8个经典连锁群。这些连锁群已按任意选定的顺序临时编号为1至8。连锁群1包括ALB - 2(白蛋白)、ADH - 1(乙醇脱氢酶)、NP(核苷磷酸化酶)和ap(周期性白化病)。连锁群2包含ALB - 1和ADH - 2,可能与连锁群1同源。连锁群3包括PEP - B(肽酶B)、MPI - 1(磷酸甘露糖异构酶)、SORD(山梨醇脱氢酶)和mIDH - 2(线粒体异柠檬酸脱氢酶)。连锁群4包含GPI - 1(葡萄糖磷酸异构酶)和EST - 4(酯酶4)。连锁群5包含GPI - 2和PEP - D(肽酶D)。连锁群6包括ACP - 3(酸性磷酸酶)、sME(胞质苹果酸酶)和GLO - 2(乙二醛酶)。连锁群7由sSOD - 1(胞质超氧化物歧化酶)、GPD - 2(甘油 - 3 - 磷酸脱氢酶)、mME(线粒体苹果酸酶)和性别决定位点组成。连锁群8包括FH(延胡索酸水合酶)和TRF(转铁蛋白)。连锁位点之间的重组频率显示出与基因组构成(亲本亚种)以及杂合亲本性别相关的差异。在重复的ALB位点之间观察到独立分配。对于重复的ADH、GLO和MPI位点也是如此,这支持了这样一种观点,即这些基因作为非洲爪蟾进化历史中发生的基因组复制的一部分而被复制。遗传图谱的比较分析揭示了从非洲爪蟾基因组到人类基因组可能存在的几种连锁保守情况。

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