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Determinants of male floating behaviour and floater reproduction in a threatened population of the hihi (Notiomystis cincta)

机译:在受到威胁的hihi(Notiomystis cincta)种群中雄性漂浮行为和漂浮物繁殖的决定因素

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摘要

Floating males are usually thought of as nonbreeders. However, some floating individuals are able to reproduce through extra-pair copulations. Floater reproductive success can impact breeders’ sex ratio, reproductive variance, multiple paternity and inbreeding, particularly in small populations. Changes in reproductive variance alter the rate of genetic drift and loss of genetic diversity. Therefore, genetic management of threatened species requires an understanding of floater reproduction and determinants of floating behaviour to effectively conserve species. Here, we used a pedigreed, free-living population of the endangered New Zealand hihi (Notiomystis cincta) to assess variance in male reproductive success and test the genetic (inbreeding and heritability) and conditional (age and size) factors that influence floater behaviour and reproduction. Floater reproduction is common in this species. However, floater individuals have lower reproductive success and variance in reproductive success than territorial males (total and extra-pair fledglings), so their relative impact on the population's reproductive performance is low. Whether an individual becomes a floater, and if so then how successful they are, is determined mainly by individual age (young and old) and to lesser extents male size (small) and inbreeding level (inbred). Floating males have a small, but important role in population reproduction and persistence of threatened populations.
机译:流动的雄性通常被认为是非繁殖者。但是,一些流动的个体能够通过超配对交配繁殖。流动生殖的成功会影响育种者的性别比,生殖变异,多重亲子关系和近交,特别是在小种群中。生殖方差的变化会改变遗传漂移的速度和遗传多样性的丧失。因此,对受威胁物种的遗传管理需要了解漂浮物繁殖和漂浮行为的决定因素,以有效地保护物种。在这里,我们使用了濒临灭绝的新西兰hihi(Notiomystis cincta)的纯种,自由生活种群来评估雄性生殖成功的差异,并测试影响漂浮物行为的遗传(近亲和遗传)和条件(年龄和大小)因素。再生产。浮游动物繁殖在该物种中很常见。但是,流浪者的生殖成功率和生殖成功率均低于领地男性(总数和成对雏鸟),因此它们对人口生殖性能的相对影响较低。一个人是否成为流动人口,以及是否如此成才,主要取决于个人的年龄(年轻人和年龄),以及程度较小的男性大小(近交)和近交水平(近交)。流动的男性在人口繁殖和受威胁人口的持久性中起着很小但重要的作用。

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