Cristina P Vieira, André Almeida, João Daniel Dias, Jorge Vieira
{"title":"On the location of the gene(s) harbouring the advantageous variant that maintains the X/4 fusion of Drosophila americana.","authors":"Cristina P Vieira, André Almeida, João Daniel Dias, Jorge Vieira","doi":"10.1017/S0016672306008147","DOIUrl":null,"url":null,"abstract":"<p><p>Weak selection is maintaining the Drosophila americana X/4 fusion chromosomal frequency cline. The gene(s) harbouring the advantageous variant(s) that is responsible for the establishment and maintenance of this chromosomal frequency gradient must be located in a region of the X and/or 4th chromosome that is genetically isolated between the X/4 fusion and non-fusion forms. The limits of these regions must thus be determined before an attempt is made to identify these genes. For this purpose, the correspondence between the D. virilis X and 4th chromosome genome scaffolds sequence and the D. americana gene order was established. Polymorphism levels and patterns at seven genes located at the base of the D. americana X chromosome, as well as three genes located at the base of the 4th chromosome, were analysed. The data suggest that the D. americana X/4 fusion is no more than 29,000 years old. At the base of the X chromosome, there is suppression of recombination within X/4 fusion and non-fusion chromosomes, and little recombination between the two chromosomal forms. Apparent fixed silent and replacement differences are found in three of seven genes analysed located at the base of the X chromosome. There is no evidence for suppression of recombination between fusion and non-fusion chromosomes at the base of the 4th chromosome. The advantageous variant responsible for the establishment in frequency and maintenance of the X/4 fusion is thus inferred to be in the D. americana X centromere-inversion Xc basal breakpoint region.</p>","PeriodicalId":12777,"journal":{"name":"Genetical research","volume":"87 3","pages":"163-74"},"PeriodicalIF":0.0000,"publicationDate":"2006-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1017/S0016672306008147","citationCount":"19","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Genetical research","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1017/S0016672306008147","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 19
Abstract
Weak selection is maintaining the Drosophila americana X/4 fusion chromosomal frequency cline. The gene(s) harbouring the advantageous variant(s) that is responsible for the establishment and maintenance of this chromosomal frequency gradient must be located in a region of the X and/or 4th chromosome that is genetically isolated between the X/4 fusion and non-fusion forms. The limits of these regions must thus be determined before an attempt is made to identify these genes. For this purpose, the correspondence between the D. virilis X and 4th chromosome genome scaffolds sequence and the D. americana gene order was established. Polymorphism levels and patterns at seven genes located at the base of the D. americana X chromosome, as well as three genes located at the base of the 4th chromosome, were analysed. The data suggest that the D. americana X/4 fusion is no more than 29,000 years old. At the base of the X chromosome, there is suppression of recombination within X/4 fusion and non-fusion chromosomes, and little recombination between the two chromosomal forms. Apparent fixed silent and replacement differences are found in three of seven genes analysed located at the base of the X chromosome. There is no evidence for suppression of recombination between fusion and non-fusion chromosomes at the base of the 4th chromosome. The advantageous variant responsible for the establishment in frequency and maintenance of the X/4 fusion is thus inferred to be in the D. americana X centromere-inversion Xc basal breakpoint region.
弱选择维持了美洲果蝇X/4融合染色体的频率变化。负责建立和维持这种染色体频率梯度的有利变异的基因必须位于X和/或第4染色体的区域,该区域在X/4融合和非融合形式之间被遗传隔离。因此,在试图鉴定这些基因之前,必须先确定这些区域的界限。为此,建立了美洲蓟马X和第4染色体基因组支架序列与美洲蓟马基因序列的对应关系。分析了美洲蓟马X染色体基部的7个基因和4染色体基部的3个基因的多态性水平和模式。数据表明,D. americana X/4融合的历史不超过29000年。在X染色体的底部,X/4融合染色体和非融合染色体内的重组受到抑制,两种染色体形式之间的重组很少。在分析的位于X染色体底部的七个基因中,有三个发现了明显的固定沉默和替代差异。在第4染色体基部,没有证据表明融合染色体和非融合染色体之间的重组受到抑制。因此,对X/4融合频率的建立和维持负责的有利变异被推断为位于D. americana X着丝粒-反转Xc基底断点区域。