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首页> 外文期刊>Behavioral Ecology and Sociobiology >Mate choice games, context-dependent good genes, and genetic cycles in the side-blotched lizard, Uta stansburiana
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Mate choice games, context-dependent good genes, and genetic cycles in the side-blotched lizard, Uta stansburiana

机译:侧斑蜥蜴(Uta stansburiana)的伴侣选择游戏,背景相关的优良基因和遗传周期

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According to mate choice models, a female should prefer males with traits that are reliable indicators of genetic quality which the sire can pass on to their progeny. However: good genes may depend on the social environment, and female choice for good genes should be context dependent. The side-blotched lizard, Uta stansburiana, exhibits genetically based throat colors (orange, blue, or yellow) that could be used as a sexually selected signal since they reliably predict the genetic quality of mates. The frequencies of male and female morphs cycle between years, and both male and female morphs have an advantage when rare; thus genetic quality will depend on morph frequency. A female should choose a sire that maximizes the reproductive success of both male and female progeny. We examine a game theoretical model that predicts female mate choice as a function of morph frequency and population density. The model predicts the following flexible mate choice rule: both female morphs should prefer rare males in 'boom years' of the female cycle (e.g., 'rarest-of-N rule'), but prefer orange males in 'crash years' of the female cycle ('orange-male rule'). Cues from the current social environment should be used by females to choose a mate that maximizes the future reproductive success of progeny, given the social environment of the next generation. We predict that the cue is the density of aggressive orange females. In the side-blotched lizard, cycling mate choice games and context-dependent mate choice are predicted to maintain genetic variation in the presence of choice for good genes.
机译:根据配偶选择模型,雌性应优先选择具有可遗传的品质特征的雄性,这些特征可将其遗传给后代。但是:良好的基因可能取决于社会环境,女性对良好基因的选择应该取决于环境。侧面印迹的蜥蜴Uta stansburiana具有基于遗传的喉咙颜色(橙色,蓝色或黄色),可以用作有性选择的信号,因为它们可以可靠地预测伴侣的遗传质量。雄性和雌性变体的频率在数年之间循环,而雄性和雌性变体在罕见时都有优势。因此遗传质量将取决于形态频率。雌性应选择能最大程度提高雄性和雌性后代生殖成功的父亲。我们研究了一种游戏理论模型,该模型预测女性伴侣的选择作为变态频率和种群密度的函数。该模型预测了以下灵活的配偶选择规则:在雌性周期的“繁荣时期”,两个雌性变体都应该偏爱稀有雄性(例如,“ N稀少规则”),而在“崩溃年限”中,更喜欢橙色雄性。女性周期(“橙色-男性规则”)。鉴于下一代的社会环境,女性应利用当前社会环境中的线索来选择能够最大化未来子代生殖成功的伴侣。我们预测提示是侵略性橙色雌性的密度。在侧面印迹的蜥蜴中,预计在选择好基因的情况下,自行车伴侣的选择游戏和背景依赖的伴侣选择将维持遗传变异。

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