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首页> 外文期刊>Behavioral Ecology and Sociobiology >Evolution of extreme-mating behaviour: patterns of extrapair paternity in a species with forced extrapair copulation
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Evolution of extreme-mating behaviour: patterns of extrapair paternity in a species with forced extrapair copulation

机译:极端交配行为的演变:强迫配对的物种中配对的父子模式

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摘要

Sexual conflict can result in the evolution of extreme mating strategies, including forced copulation. Forced extrapair copulation (FEPC) is generally rare among birds, but is common in re-introduced populations of the hihi (Notiomystis cincta), a socially monogamous, New Zealand endemic, endangered passerine. The aim of this study was to understand the patterns of extrapair paternity in a population where the majority of EPC is forced and to examine the factors, in particular female-specific, influencing the proportion of offspring fathered by extrapair males (EPP-extrapair paternity) and the number of males siring extrapair offspring within a brood (EPM) in this species. Using 8 years of comprehensive paternity, life-history and demographic information for 485 breeding attempts, we show that the frequency of EPP is dependent on (1) social male and female age, (2) the month the female fledged, (3) breeding density and (4) whether it was their first or second reproductive event of the season. In addition, we show that both EPP and EPM are negatively associated with breeding synchrony and clutch size is the most important predictor of EPM. Understanding the drivers of EPP and EPM in species with FECP is important because these are strong determinants of variance in reproductive success and the maintenance of extreme mating behaviour.
机译:性冲突可能导致极端交配策略的演变,包括强迫交配。强迫的超配对交配(FEPC)通常在鸟类中很少见,但在重新引入的hihi(Notiomystis cincta)(一种社会一夫一妻制,新西兰特有种,濒临灭绝的雀形目)中很常见。这项研究的目的是了解大多数EPC被迫的人群中父母双亲的模式,并研究影响由父母双亲所生后代的比例的因素,尤其是女性特异性因素(EPP-双亲亲子关系)以及该物种在一个巢内(EPM)内生一对超配对后代的雄性数量。使用8年的全面父亲身份,生活史和人口统计信息进行485次育种尝试,我们发现EPP的发生频率取决于(1)男性和女性的年龄,(2)雌性成年的月份,(3)育种密度和(4)是该季节的第一个还是第二个繁殖事件。此外,我们表明EPP和EPM均与繁殖同步性负相关,而离合大小是EPM的最重要预测指标。了解FECP物种中EPP和EPM的驱动因素很重要,因为它们是生殖成功和维持极端交配行为方差的有力决定因素。

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