History, environment and social behaviour: experimentally induced cooperative breeding in the carrion crow

V. Baglione, D. Canestrari, J. Martin Marcos, M. Griesser, J. Ekman
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引用次数: 60

Abstract

Kin–based cooperative breeding, where grown offspring delay natal dispersal and help their parents to rear new young, has a long history in some avian lineages. Family formation and helping behaviour in extant populations may therefore simply represent the retention of ancestral features, tolerated under current conditions, rather than a current adaptive process driven by environmental factors. Separating these two possibilities challenges evolutionary biologists because of the tight coupling that normally exists between phylogeny and the environmental distribution of species and populations. The carrion crow Corvus corone corone, which exhibits extreme interpopulational variation in the extent of cooperative breeding, with populations showing no delayed dispersal and helping at all, provides a unique opportunity for an experimental approach. Here we show that offspring of non–cooperative carrion crows from Switzerland will remain on the natal territory and express helping behaviour when raised in a cooperative population in Spain. When we transferred carrion crow eggs from Switzerland to Spain, five out of six transplanted juveniles delayed dispersal, and two of those became helpers in the following breeding season. Our results provide compelling experimental evidence of the causal relationship between current environmental conditions and expression of cooperative behaviour.
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历史、环境和社会行为:实验诱导的腐肉乌鸦的合作繁殖
在一些鸟类谱系中,以亲缘关系为基础的合作繁殖有着悠久的历史,在这种合作繁殖中,成年的后代推迟了出生的分散,并帮助它们的父母抚养新的后代。因此,现存种群的家庭形成和帮助行为可能只是代表了祖先特征的保留,在当前条件下可以容忍,而不是当前由环境因素驱动的适应过程。分离这两种可能性对进化生物学家来说是一个挑战,因为系统发育与物种和种群的环境分布之间通常存在着紧密的耦合。腐食乌鸦Corvus corone corone在合作繁殖的程度上表现出极端的种群间差异,种群没有延迟扩散,根本没有帮助,这为实验方法提供了一个独特的机会。在这里,我们展示了来自瑞士的非合作腐肉乌鸦的后代将留在出生地,并在西班牙的合作种群中饲养时表现出帮助行为。当我们将腐肉乌鸦的蛋从瑞士转移到西班牙时,6只移植的幼鸟中有5只推迟了扩散,其中2只在接下来的繁殖季节成为了帮手。我们的结果为当前环境条件和合作行为表达之间的因果关系提供了令人信服的实验证据。
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Thermal processing. 'Affinity'. Correction for Durant et al., Trophic interactions under climate fluctuations: the Atlantic puffin as an example Correction for Johnstone and Bshary, Evolution of spite through indirect reciprocity Correction for Frönicke et al., Towards the delineation of the ancestral eutherian genome organization: comparative genome maps of human and the African elephant (Loxodonta africana) generated by chromosome painting
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