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Lions, hyenas and mobs (oh my!)

机译:狮子,鬣狗和小怪(哦,我的天!)

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摘要

Understanding the factors that facilitate the emergence of cooperation among organisms is central to the study of social evolution.Spotted hyenas Crocuta crocuta frequently cooperate to mob lions Panthera leo,approaching the lions as a tightknit group while vocalizing loudly in an attempt to overwhelm them and drive them away.Whereas cooperative mobbing behavior has been well documented in birds and some mammals,to our knowledge it has never been described during interactions between 2 apex predators.Using a 27-year dataset,we characterize lion-hyena encounters,assess rates of mobbing behavior observed during these interactions,and inquire whether mobbing results in successful acquisition of food.Lions and hyenas interacted most often at fresh kills,especially as prey size and the number of hyenas present increased.Possession of food at the beginning of an interaction positively affected retention of that food by each predator species.The presence of male lions increased the probability of an interspecific interaction but decreased the likelihood of hyenas obtaining or retaining possession of the food.Hyena mobbing rates were highest at fresh kills,but lower when adult male lions were present.The occurrence of mobbing was predicted by an increase in the number of hyenas present.Whether or not mobbing resulted in acquisition of food from lions was predicted by an increase in the number of mobs formed by the hyenas present,suggesting that cooperation among hyenas enhances their fitness.
机译:了解促进有机体之间合作的因素是研究社会进化的核心。斑鬣狗Crocuta crocuta经常与生物狮子Panthera leo合作,将狮子作为一个紧密的群体,同时大声发声,试图压倒它们并驱使它们前进。尽管在鸟类和某些哺乳动物中有很好的合作围捕行为,但据我们所知,这在两个先食者之间的相互作用中从未被描述过。使用27年的数据集,我们对狮子-鬣狗的遭遇进行了特征描述,评估了围攻率在这些互动中观察到的行为,并询问是否通过围攻来成功获取食物。狮子和鬣狗在新杀害时最频繁地互动,尤其是随着猎物的大小和鬣狗数量的增加。互动开始时对食物的拥有积极影响每种捕食物种都保留这种食物。雄狮的存在增加了概率种间相互作用,但降低了鬣狗获取或保留食物的可能性。在新鲜杀死处,鬣狗的围攻率最高,但在成年雄狮出现时则低。存在的鬣狗。根据存在的鬣狗形成的暴徒数量的增加,可以预测是否围攻导致了从狮子那里获取食物,这表明鬣狗之间的合作增强了它们的适应性。

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  • 来源
    《动物学报(英文版)》 |2017年第3期|313-322|共10页
  • 作者单位

    Department of Integrative Biology, Michigan State University, 288 Farm Lane, Room 203 East Lansing, MI 48824,USA;

    Ecology, Evolutionary Biology and Behavior, Michigan State University, 293 Farm Lane, Room 103 East Lansing, MI 48824, USA;

    Department of Integrative Biology, Michigan State University, 288 Farm Lane, Room 203 East Lansing, MI 48824,USA;

    Ecology, Evolutionary Biology and Behavior, Michigan State University, 293 Farm Lane, Room 103 East Lansing, MI 48824, USA;

    Department of Integrative Biology, Michigan State University, 288 Farm Lane, Room 203 East Lansing, MI 48824,USA;

    Department of Fish, Wildlife and Conservation Biology, Colorado State University, 1474 Campus Delivery Fort Collins, CO 80523, USA;

    Conservation Ecology and Environmental Informatics, School of Natural Resources and Environment, University of Michigan, 440 Church St.Ann Arbor, MI 48109, USA;

    Department of Integrative Biology, Michigan State University, 288 Farm Lane, Room 203 East Lansing, MI 48824,USA;

    Institute for Cyber Enabled Research, Michigan State University, Biomedical & Physical Sciences Building 567 Wilson Road, Room 1440 East Lansing, MI 48824, USA;

    Department of Integrative Biology, Michigan State University, 288 Farm Lane, Room 203 East Lansing, MI 48824,USA;

    Ecology, Evolutionary Biology and Behavior, Michigan State University, 293 Farm Lane, Room 103 East Lansing, MI 48824, USA;

  • 收录信息 北京大学中文核心期刊目录(北大核心);中国科学引文数据库(CSCD);
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