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对鹿鼠杂交过度生长相关候选基因座的定位与鉴定。

Mapping and identification of candidate loci responsible for Peromyscus hybrid overgrowth.

作者信息

Loschiavo Maria, Nguyen Quang K, Duselis Amanda R, Vrana Paul B

机构信息

Department of Biological Chemistry, School of Medicine, University of California Irvine, Irvine, CA 92799, USA.

出版信息

Mamm Genome. 2007 Jan;18(1):75-85. doi: 10.1007/s00335-006-0083-x. Epub 2007 Jan 22.

Abstract

Crosses between two recently diverged rodent species of the genus Peromyscus result in dramatic parent-of-origin effects on growth and development. P. maniculatus females crossed with P. polionotus males yield growth-retarded conceptuses, whereas the reciprocal cross results in overgrowth and lethality. These hybrid effects are particularly pronounced in the placenta. We previously detected linkage to two regions of the genome involved in the overgrowth effects. One locus, termed Peal, is a paternally expressed autosomal locus mapping to a domain whose house mouse equivalent contains several clusters of imprinted genes. The other locus, termed Mexl, maps to a gene-poor region of the X chromosome. Here we use an advanced intercross line to verify and narrow the regions of linkage and identify candidate genes for Mexl and Peal. While we have previously shown that Mexl affects both pre-and postnatal growth, we show here that Peal affects only prenatal growth. Utilizing criteria such as mutant phenotypes and allelic expression, we identify the loci encoding the homeobox protein Esx1 and the zinc-finger protein Pw1/Peg3 as candidates. Both loci exhibit expression changes in the hybrids.

摘要

两个最近分化的鹿鼠属啮齿动物物种之间的杂交,会对生长和发育产生显著的亲本来源效应。曼氏鹿鼠(Peromyscus maniculatus)雌性与北美鹿鼠(P. polionotus)雄性杂交产生生长迟缓的胚胎,而反交则导致过度生长和致死性。这些杂交效应在胎盘中尤为明显。我们之前检测到与基因组中两个参与过度生长效应的区域存在连锁关系。一个位点称为Peal,是一个父本表达的常染色体位点,定位于一个区域,其小家鼠对应区域包含几个印记基因簇。另一个位点称为Mexl,定位于X染色体上基因贫乏的区域。在这里,我们使用一个高级杂交系来验证并缩小连锁区域,并确定Mexl和Peal的候选基因。虽然我们之前已经表明Mexl会影响产前和产后生长,但我们在此表明Peal仅影响产前生长。利用突变体表型和等位基因表达等标准,我们确定编码同源盒蛋白Esx1和锌指蛋白Pw1/Peg3的位点为候选基因。这两个位点在杂种中均表现出表达变化。

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