温度和降水的年变化过程是鸟类对物种和群落水平气候变化反应的最接近预测因素

Pub Date : 2021-07-01 DOI:10.2478/foecol-2021-0013
O. Koshelev, V. Koshelev, M. Fedushko, O. Zhukov
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引用次数: 8

摘要

摘要这项研究是在1988年至2018年的筑巢季节在乌克兰东南部的景观中进行的。在与莫洛奇尼河口相关的景观系统中,调查了十种最重要的生态系统类型,包括以下类型:农业用地、植被带、草地、岛屿和洼地、芦苇床、城市地区、盐沼、草原、悬崖、人工林。鸟类对温度和降水梯度有反应。使用Huisman、Olff和Fresco,通过Jansen-Oksanen层次模型扩展,呈现了反应模式。物种在温度或降水条件梯度中的反应性质取决于特定生态系统的类型,并且对于居住在不同景观类型中的所有种群来说并不一致。随着时间的推移,鸟类群落表现出突然的动态。外部环境因素引发的群落结构的持续变化与内部生物相互作用的改变相结合,可能导致群落的突然重组。
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Annual course of temperature and precipitation as proximal predictors of birds’ responses to climatic changes on the species and community level
Abstract The study was conducted in the landscapes of south-eastern Ukraine during the nesting seasons 1988–2018. Within the landscape system associated with the Molochny Estuary, the ten most important ecosystem types were investigated, including the following: agricultural land, vegetated strips, meadows, islands and spits, reedbeds, urban areas, salt marshes, steppe, cliffs, artificial forests. Bird species responded to temperature and precipitation gradients. The patterns of responses were presented using Huisman, Olff and Fresco expanded by the Jansen-Oksanen hierarchical models. The nature of species response in the gradient of temperature or precipitation conditions depends on the type of particular ecosystem and is not uniform for all populations inhabiting the different landscape types. The bird communities were revealed to demonstrate an abrupt dynamic over time. The continuous changes in community structure initiated by the external environmental factors are combined with modifications of internal biotic interactions, which may lead to abrupt reorganization of the community.
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