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Genetic Architecture of Sexual Selection: QTL Mapping of Male Song and Female Receiver Traits in an Acoustic Moth

机译:性选择的遗传结构:在声蛾男曲和女接收机性状的QTL定位

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摘要

Models of indirect (genetic) benefits sexual selection predict linkage disequilibria between genes that influence male traits and female preferences, owing to non-random mate choice or physical linkage. Such linkage disequilibria can accelerate the evolution of traits and preferences to exaggerated levels. Both theory and recent empirical findings on species recognition suggest that such linkage disequilibria may result from physical linkage or pleiotropy, but very little work has addressed this possibility within the context of sexual selection. We studied the genetic architecture of sexually selected traits by analyzing signals and preferences in an acoustic moth, Achroia grisella, in which males attract females with a train of ultrasound pulses and females prefer loud songs and a fast pulse rhythm. Both male signal characters and female preferences are repeatable and heritable traits. Moreover, female choice is based largely on male song, while males do not appear to provide direct benefits at mating. Thus, some genetic correlation between song and preference traits is expected. We employed a standard crossing design between inbred lines and used AFLP markers to build a linkage map for this species and locate quantitative trait loci (QTL) that influence male song and female preference. Our analyses mostly revealed QTLs of moderate strength that influence various male signal and female receiver traits, but one QTL was found that exerts a major influence on the pulse-pair rate of male song, a critical trait in female attraction. However, we found no evidence of specific co-localization of QTLs influencing male signal and female receiver traits on the same linkage groups. This finding suggests that the sexual selection process would proceed at a modest rate in A. grisella and that evolution toward exaggerated character states may be tempered. We suggest that this equilibrium state may be more the norm than the exception among animal species.
机译:间接(遗传)收益性选择的模型预测,由于非随机的配偶选择或身体连锁,影响男性特征和女性偏好的基因之间的连锁不平衡。这种连锁不平衡可以使特质和偏好的进化加速到夸大的水平。关于物种识别的理论和最近的经验发现都表明,这种连锁不平衡可能是由于物理连锁或多效性引起的,但是很少有工作在性选择的背景下解决了这种可能性。通过分析声蛾(Achroia grisella)中的信号和偏好,我们研究了性选择性状的遗传结构,其中雄性用一系列超声波脉冲吸引雌性,而雌性则喜欢大声的歌曲和快速的节奏。男性的信号特征和女性的喜好都是可重复和可遗传的特征。而且,女性的选择很大程度上取决于男性的歌声,而男性似乎并没有在交配时提供直接的好处。因此,歌曲和喜好特征之间存在一些遗传相关性。我们在自交系之间采用了标准的杂交设计,并使用AFLP标记为该物种建立了连锁图,并定位了影响雄性和雌性偏好的数量性状基因座(QTL)。我们的分析大部分揭示了强度中等的QTL,这些强度影响各种男性信号和女性接受者的性格,但发现一个QTL对男性歌曲的脉动对速率有重要影响,这是女性吸引力的关键特征。但是,我们发现没有证据表明QTL的特定共定位会影响同一连锁群上的男性信号和女性接受者特征。这一发现表明,性选择过程将在灰穗曲霉中以适度的速度进行,并且可能会抑制向过分性格状态的进化。我们建议,这种平衡状态可能比动物物种中的例外更为规范。

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