Genetic architecture of variation in sex-comb tooth number in Drosophila simulans.

Haruki Tatsuta, Toshiyuki Takano-Shimizu
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引用次数: 16

Abstract

The sex comb on the forelegs of Drosophila males is a secondary sexual trait, and the number of teeth on these combs varies greatly within and between species. To understand the relationship between the intra- and interspecific variation, we performed quantitative trait locus (QTL) analyses of the intraspecific variation in sex-comb tooth number. We used five mapping populations derived from two inbred Drosophila simulans strains that were divergent in the number of sex-comb teeth. Although no QTLs were detected on the X chromosome, we identified four QTLs on the second chromosome and three QTLs on the third chromosome. While identification and estimated effects of the second-chromosome QTLs depend on genetic backgrounds, significant and consistent effects of the two third-chromosome QTLs were found in two genetic backgrounds. There were significant epistatic interactions between a second-chromosome QTL and a third-chromosome QTL, as well as between two second-chromosome QTLs. The third-chromosome QTLs are concordant with the locations of the QTLs responsible for the previously observed differences in sex-comb tooth number between D. simulans and D. mauritiana.

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拟果蝇性别变异的遗传结构。
雄性果蝇前腿上的性梳是第二性征,这些梳上的齿数在物种内部和不同物种之间差异很大。为了解种内变异与种间变异之间的关系,本研究采用数量性状位点(QTL)对种内变异进行了分析。我们使用了来自两个近亲繁殖的拟果蝇菌株的5个绘制种群,这些菌株在性别梳齿数量上存在差异。虽然在X染色体上没有检测到qtl,但我们在第二染色体上发现了4个qtl,在第三染色体上发现了3个qtl。虽然第二染色体qtl的鉴定和估计效应依赖于遗传背景,但在两个遗传背景下发现了两个第三染色体qtl的显著和一致的效应。第二染色体QTL与第三染色体QTL之间以及两个第二染色体QTL之间存在显著的上位性相互作用。第三染色体的qtl与先前观察到的D. simulans和D. mauritiana在性别梳齿数上的差异的qtl的位置一致。
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