首页> 美国卫生研究院文献>Genetics >Contrasting molecular population genetics of four hexokinases in Drosophila melanogaster D. simulans and D. yakuba.
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Contrasting molecular population genetics of four hexokinases in Drosophila melanogaster D. simulans and D. yakuba.

机译:不同的分子种群遗传学的四个果糖果蝇D. simulans和D. yakuba。

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摘要

As part of a larger study contrasting patterns of variation in regulatory and nonregulatory enzymes of the central metabolic pathways we have examined the molecular variation in four uncharacterized hexokinase genes unique to muscle, fat body, and testis in Drosophila melanogaster, D. simulans, and D. yakuba. Earlier isoenzyme studies had designated these genes as Hex-A, Hex-C, and Hex-t. There are two tightly linked testes-specific genes designated here as Hex-t1 and Hex-t2. Substantial and concordant differences across species are seen in levels of both amino acid and silent polymorphism. The flight muscle form Hex-A is the most conserved followed by the fat body hexokinase Hex-C and testis-specific hexokinases Hex-t1 and Hex-t2. While constraints acting at the amino acid level are expected, the silent polymorphisms follow this pattern as well. All genes are in regions of normal recombination, therefore hitchhiking and background selection are not likely causes of interlocus differences. In D. melanogaster latitudinal clines are seen for amino acid polymorphisms at the Hex-C and Hex-t2 loci. There is evidence for accelerated amino acid substitution in Hex-t1 that has lost residues known to be associated with glucose and glucose-6-phosphate binding. D. simulans shows substantial linkage phase structuring that suggests historical population subdivision.
机译:作为一项较大研究的一部分,对比了中央代谢途径的调节酶和非调节酶变化模式,我们研究了果蝇,拟蝇和拟南芥中肌肉,脂肪体和睾丸特有的四个未表征的己糖激酶基因的分子变异。 yakuba。早期的同工酶研究已将这些基因指定为Hex-A,Hex-C和Hex-t。有两个紧密相连的睾丸特异性基因,在这里称为Hex-t1和Hex-t2。氨基酸和沉默多态性的水平在物种间存在显着和一致的差异。飞行肌肉形式Hex-A最保守,其次是脂肪体己糖激酶Hex-C和睾丸特异性己糖激酶Hex-t1和Hex-t2。虽然预期会在氨基酸水平上起作用,但沉默多态性也遵循这种模式。所有基因都在正常重组区域内,因此搭便车和背景选择不太可能引起基因间差异。在D. melanogaster经纬系中,在Hex-C和Hex-t2位点发现了氨基酸多态性。有证据表明,Hex-t1中加速的氨基酸取代丢失了与葡萄糖和6-磷酸葡萄糖结合相关的残基。 D. simulans显示出实质性的连锁相结构,表明历史人口细分。

著录项

  • 期刊名称 Genetics
  • 作者

    D D Duvernell; W F Eanes;

  • 作者单位
  • 年(卷),期 2000(156),3
  • 年度 2000
  • 页码 1191–1201
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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