在印度半岛,苍鹭和一种潜在的蛋捕食者——印度家鸦(Corvus splendens)的交配

IF 3.1 3区 环境科学与生态学 Q2 ECOLOGY Ecological Complexity Pub Date : 2021-03-01 DOI:10.1016/j.ecocom.2021.100922
R. Roshnath, Palatty Allesh Sinu
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引用次数: 0

摘要

鸟类在繁殖地和觅食地相互结合的现象并不罕见。然而,与潜在的卵子捕食者有关的物种并不常见。本研究报道了在城市条件下同步繁殖印度家鸦(Corvus splendens)和印度塘鹭(Ardeola grayii)。随着鹭巢数量的增加,鸦群丰度和巢群丰度均呈增加趋势。乌鸦主要是在飞过或在附近休息时被观察到,但它们也试图从鹭巢中捕食蛋。乌鸦还利用苍鹭的栖息地收集筑巢资源,比如树枝,觅食死去的雏鸟,偷取喂雏鸟的食物。在城市环境中缺乏合适的筑巢地点和食物可能是这些鸟共用筑巢树的原因。警惕的繁殖乌鸦,尽管它们有能力掠夺苍鹭的巢穴,但可能对苍鹭更有利,因为它们被认为会骚扰和分散苍鹭捕食者的注意力,但需要进行全面的成本效益分析。
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Co-breeding involving herons and a potential egg predator, the Indian House Crow (Corvus splendens), in Peninsular India

Association between species may strengthen the fitness of the species involved It is not rare that avian species associate on the breeding and feeding grounds. However, a species associated with a potential egg predator is less common. In this study, a synchronized breeding of Indian House Crow (Corvus splendens) and breeding Indian Pond Herons (Ardeola grayii) in urban conditions is reported. Both the crow abundance and the crow nest abundance increased with the number of heronry nests on sites. Crows were mostly observed when flying over or when resting nearby, but they also attempted egg predation from heronry nests. Crows also used the heronry sites for collecting nesting resources, such as twigs, scavenging dead chicks and for stealing the food brought to feed the heronry chicks. A dearth of suitable nesting places and provisions in an urban environment may be the reason why these birds share nesting trees. Vigilant breeding crows, despite their ability to depredate heron nests, may be more beneficial to herons as they are known to mob and distract heron predators, but a full cost-benefit analysis needs to be undertaken.

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来源期刊
Ecological Complexity
Ecological Complexity 环境科学-生态学
CiteScore
7.10
自引率
0.00%
发文量
24
审稿时长
3 months
期刊介绍: Ecological Complexity is an international journal devoted to the publication of high quality, peer-reviewed articles on all aspects of biocomplexity in the environment, theoretical ecology, and special issues on topics of current interest. The scope of the journal is wide and interdisciplinary with an integrated and quantitative approach. The journal particularly encourages submission of papers that integrate natural and social processes at appropriately broad spatio-temporal scales. Ecological Complexity will publish research into the following areas: • All aspects of biocomplexity in the environment and theoretical ecology • Ecosystems and biospheres as complex adaptive systems • Self-organization of spatially extended ecosystems • Emergent properties and structures of complex ecosystems • Ecological pattern formation in space and time • The role of biophysical constraints and evolutionary attractors on species assemblages • Ecological scaling (scale invariance, scale covariance and across scale dynamics), allometry, and hierarchy theory • Ecological topology and networks • Studies towards an ecology of complex systems • Complex systems approaches for the study of dynamic human-environment interactions • Using knowledge of nonlinear phenomena to better guide policy development for adaptation strategies and mitigation to environmental change • New tools and methods for studying ecological complexity
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