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拟暗果蝇中苹果酸脱氢酶-2(Mdh-2)基因座的密度依赖和频率依赖选择

Density- and frequency-dependent selection at the Mdh-2 locus in Drosophila pseudoobscura.

作者信息

Tosić M, Ayala F J

出版信息

Genetics. 1981 Mar-Apr;97(3-4):679-701. doi: 10.1093/genetics/97.3-4.679.

Abstract

We have studied differences in the number of Drosophila pseudoobscura produced in a culture when the flies differ with respect to two alleles (F and S) at the Mdh-2 locus, which codes for a malate dehydrogenase enzyme. The studies were done at low and at high density in two- and three-genotype combinations (S/S, F/F and S/F), with one-genotype cultures as controls.--Density affects the fitness of the Mdh-2 genotypes. Different genotypes are differently affected, and the genotype of the competitors also makes a difference on the fitness of a given genotype. When three genotypes are present in a culture, particularly at high density, intergenotypic competition is less intense than intragenotypic competition at several frequency combinations. That is, there is "overcompensation": the three genotypes together exploit the environmental resources better than one genotype alone.--The fitness of the genotypes is frequency dependent in both two-genotype and three-genotype combinations. An inverse relationship between frequency and fitness is observed at high density. This may lead to a stable polymorphism, because the fitness of a genotype increases as its frequency decreases.--Forty independent strains, sampled from a natural population, were used in the experiments. This ensures that more than 95% of the variation present in the genome in the natural population is also present in the experimental cultures. It also ensures that the genetic background on the Mdh-2 alleles is randomized in the same way as it is in nature. However, the possibility remains that Mdh-2 alleles in nature are nonrandomly associated with alleles at closely linked loci. If linkage disequilibrium is present in the experiments because it exists in nature, then the observed effects (such as frequency-dependent selection) would affect the Mdh-2 locus in nature as well.

摘要

我们研究了在培养物中,当果蝇在编码苹果酸脱氢酶的Mdh - 2位点上的两个等位基因(F和S)存在差异时,黑腹果蝇的产生数量差异。研究在低密度和高密度条件下,以两基因型组合(S/S、F/F和S/F)和三基因型组合进行,单基因型培养作为对照。——密度影响Mdh - 2基因型的适合度。不同基因型受到的影响不同,竞争者的基因型也会对给定基因型的适合度产生影响。当培养物中存在三种基因型时,特别是在高密度情况下,在几种频率组合下,基因型间竞争比基因型内竞争强度小。也就是说,存在“超补偿”现象:三种基因型共同利用环境资源的能力比单一基因型更好。——在两基因型和三基因型组合中,基因型的适合度都依赖于频率。在高密度下观察到频率与适合度呈负相关。这可能导致稳定的多态性,因为基因型的适合度会随着其频率的降低而增加。——实验中使用了从自然种群中采样得到的40个独立菌株。这确保了自然种群基因组中超过95%的变异也存在于实验培养物中。同时也确保了Mdh - 2等位基因的遗传背景在实验中与在自然中一样是随机化的。然而,仍然存在一种可能性,即自然中的Mdh - 2等位基因与紧密连锁位点上的等位基因存在非随机关联。如果实验中存在连锁不平衡是因为自然中存在这种情况,那么观察到的效应(如频率依赖选择)也会影响自然中的Mdh - 2位点。

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