Wang Lanrong, Lu Yuting, Cai Yinfan, Ji Liling, Pang Dapeng, Zhou Meisheng, Cheng Yang, Pu Faguang, Zhang Baowei
School of Life Sciences, Anhui University, Hefei 230601, China.
Anhui Tianma National Nature Reserve, Lu'an 237300, China.
Animals (Basel). 2025 Jan 3;15(1):95. doi: 10.3390/ani15010095.
Establishing and managing nature reserves to mitigate wildlife habitat loss and fragmentation is challenging, particularly in the face of increasing human activity. To understand how wildlife coexists in environments affected by anthropogenic disturbances, we conducted a 19-month survey examining the Reeves's pheasant () and Koklass pheasant () in the Anhui Tianma National Nature Reserve, China. Previous studies of large terrestrial birds focused primarily on livestock impacts, with less attention given to other human activities. We used occupancy models and performed daytime activity rhythm analysis based on camera trap data to examine the spatiotemporal responses of these species to human activities, livestock, and domestic dogs. The results showed that human disturbance activities within the reserve impact the distribution patterns of Reeves's pheasant and Koklass pheasant, but the effect was not significant. In high-disturbance environments, both species adjusted their activity times to avoid direct or indirect interactions with humans, livestock, and dogs. These findings provide insights for replanning core and creation of buffer zones within the reserve and have broader implications for conservation strategies in similar habitats. Our study suggests that well-designed conservation objectives can balance species protection with sustainable human presence.
建立和管理自然保护区以减轻野生动物栖息地丧失和破碎化具有挑战性,尤其是在人类活动不断增加的情况下。为了解野生动物如何在受人为干扰影响的环境中共存,我们在中国安徽天马国家级自然保护区进行了一项为期19个月的调查,研究白冠长尾雉()和勺鸡()。以往对大型陆栖鸟类的研究主要集中在牲畜的影响上,而对其他人类活动的关注较少。我们使用占有率模型,并基于相机陷阱数据进行日间活动节律分析,以研究这些物种对人类活动、牲畜和家犬的时空响应。结果表明,保护区内的人类干扰活动对白冠长尾雉和勺鸡的分布格局有影响,但影响不显著。在高干扰环境中,这两个物种都调整了它们的活动时间,以避免与人类、牲畜和狗的直接或间接互动。这些发现为重新规划保护区内的核心区域和创建缓冲区提供了见解,并对类似栖息地的保护策略具有更广泛的意义。我们的研究表明,精心设计的保护目标可以在物种保护与人类可持续存在之间取得平衡。