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Frequency-dependent selection: Minority male mating advantage in Drosophila [Review]

机译:频率依赖性选择:果蝇中少数男性交配优势[综述]

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In frequency-dependent selection the fitness of a given genotype depends on its frequency. Frequency dependence may be positive or negative. In the positive case any rare variant is at a disadvantage, whereas rare forms are favoured in the negative case, One of the best-studied examples of frequency-dependent selection is the rare male mating advantage or minority male mating advantage (negative frequency-dependent selection). This could be of considerable evolutionary significance as it can maintain high levels of genetic polymorphism without any genetic load at equilibrium. Rare male mating advantage has been extensively studied in the genus Drosophila where its existence has been proved in twelve species. It has also been demonstrated in other insects and vertebrates, It has been shown to occur in morphological mutants, inversion karyotypes, isozyme variants, geographic strains, strains reared at different temperatures and those having behavioural differences. Rare male mating advantage has been shown to occur in inversion karyotypes of natural populations of certain species of Drosophila, In certain cases, the rare male mating advantage was tested for, but its existence could not be proved. The expression of rare male mating advantage may be affected by age of the females, temperature or experimental protocol, exposure to other flies, previous mating experience and sex ratio, The generality of this phenomenon where rare males are favoured in mating has been accepted, but there is still much discussion and controversy concerning its causes, A number of explanations have been proposed to account for the rare male effect. [References: 116]
机译:在频率依赖性选择中,给定基因型的适应性取决于其频率。频率依赖性可以是正的或负的。在积极的情况下,任何稀有变异都处于劣势,而在消极的情况下则倾向于稀有形式,频率依赖选择的最佳研究实例之一是罕见的雄性交配优势或少数雄性交配优势(负性依赖频率)选择)。这可能具有相当大的进化意义,因为它可以维持高水平的遗传多态性而没有任何遗传负载处于平衡状态。在果蝇属中已经广泛研究了罕见的雄性交配优势,在十二个物种中已证明了它的存在。它也已在其他昆虫和脊椎动物中得到证实。已证明它发生在形态突变,反转核型,同工酶变异,地理菌株,在不同温度下饲养的菌株以及行为差异的菌株。事实证明,某些果蝇自然种群的反向染色体核型中存在罕见的雄性交配优势,在某些情况下,对罕见的雄性交配优势进行了测试,但无法证明其存在。稀有雄性交配优势的表达可能会受到雌性年龄,温度或实验规程,接触其他蝇类,以前的交配经验和性别比的影响。这种现象的普遍性已被接受,其中稀有雄性倾向于交配,但关于其成因仍存在许多讨论和争议。已提出了许多解释来解释这种罕见的男性效应。 [参考:116]

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