中国梵净山保护区同域有蹄类动物的日活动节律

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-24 DOI:10.1016/j.gecco.2024.e03271
Dan Xiang , Bingshun Meng , Bo Xie , Xiaolong Huang , Cheng Wang , Jingcheng Ran , Haijun Su , Mingming Zhang
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引用次数: 0

摘要

栖息在类似生态位的同域物种可以通过对可用生态资源(如时间、空间和营养位)的分配而共存。有蹄类动物经常在同一栖息地共存,导致时间上的分区以及觅食策略和空间利用上的分化。为了解同域有蹄类动物生态分化的时间模式和共存机制,我们分析了中国贵州梵净山国家级自然保护区2017年至2022年的监测数据。通过核密度估计,研究了四种有蹄类动物(簇鹿、麂、野猪和大陆羚牛)在不同季节、不同海拔以及繁殖期和非繁殖期的昼间活动模式差异以及种间差异。四种动物的日活动模式差异很大,其中丛鹿、里维斯麂和野猪的日活动模式受季节和繁殖周期的影响很大。此外,四个物种的日活动节律还受到海拔高度的影响。因此,这些有蹄类动物的日活动节律是环境因素和种间竞争相互作用以及各物种繁殖周期共同作用的结果。我们的研究结果为有效管理野生动物和森林生态系统提供了科学参考,并建议将时间动力学知识纳入这些同域物种的保护规划中。
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Daily activity rhythm of sympatric ungulate species in Fanjingshan Reserve, China
Sympatric species inhabiting similar ecological niches can coexist by partitioning aspects of available ecological resources, such as temporal, spatial, and nutritional niches. Ungulates often coexist in the same habitat, resulting in temporal partitioning and divergence in foraging strategies and spatial utilization. To understand the temporal patterns of ecological differentiation and coexistence mechanisms among sympatric ungulates, we analyzed the monitoring data in Fanjingshan National Nature Reserve, Guizhou, China, from 2017 to 2022. Kernel density estimation was used to scrutinize disparities in diurnal activity patterns among four ungulates [tufted deer (Elaphodus cephalophus), Reeves' muntjac (Muntiacus reevesi), wild boar (Sus scrofa), and mainland serow (Capricornis milneedwardsii)] as well as the interspecies variances during different seasons, at diverse altitudes, and between breeding and non-breeding periods. Daily activity patterns differed significantly among four species, with those of tufted deer, Reeves' muntjac, and wild boar affected significantly by season and breeding cycle. In addition, the daily activity rhythms of four species were affected by altitude. Thus, the daily activity rhythms of these ungulates were resulted from a combination of environmental factors and interspecific competitive interactions, as well as the reproductive cycle of each species. Our results provided a scientific reference for the effective management of wildlife and forest ecosystems, and we suggest that knowledge of temporal dynamics should be integrated into conservation planning for these sympatric species.
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7.20
自引率
4.30%
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567
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