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相机陷阱调查中的行为“兼捕”揭示了猎物对人类介导的捕食风险的反应。

Behavioral "bycatch" from camera trap surveys yields insights on prey responses to human-mediated predation risk.

作者信息

Burton A Cole, Beirne Christopher, Sun Catherine, Granados Alys, Procko Michael, Chen Cheng, Fennell Mitchell, Constantinou Alexia, Colton Chris, Tjaden-McClement Katie, Fisher Jason T, Burgar Joanna

机构信息

Wildlife Coexistence Lab, Department of Forest Resources Management University of British Columbia Vancouver British Columbia Canada.

School of Environmental Studies University of Victoria Victoria British Columbia Canada.

出版信息

Ecol Evol. 2022 Jul 17;12(7):e9108. doi: 10.1002/ece3.9108. eCollection 2022 Jul.

Abstract

Human disturbance directly affects animal populations and communities, but indirect effects of disturbance on species behaviors are less well understood. For instance, disturbance may alter predator activity and cause knock-on effects to predator-sensitive foraging in prey. Camera traps provide an emerging opportunity to investigate such disturbance-mediated impacts to animal behaviors across multiple scales. We used camera trap data to test predictions about predator-sensitive behavior in three ungulate species (caribou ; white-tailed deer, ; moose, ) across two western boreal forest landscapes varying in disturbance. We quantified behavior as the number of camera trap photos per detection event and tested its relationship to inferred human-mediated predation risk between a landscape with greater industrial disturbance and predator activity and a "control" landscape with lower human and predator activity. We also assessed the finer-scale influence on behavior of variation in predation risk (relative to habitat variation) across camera sites within the more disturbed landscape. We predicted that animals in areas with greater predation risk (e.g., more wolf activity, less cover) would travel faster past cameras and generate fewer photos per detection event, while animals in areas with less predation risk would linger (rest, forage, investigate), generating more photos per event. Our predictions were supported at the landscape-level, as caribou and moose had more photos per event in the control landscape where disturbance-mediated predation risk was lower. At a finer-scale within the disturbed landscape, no prey species showed a significant behavioral response to wolf activity, but the number of photos per event decreased for white-tailed deer with increasing line of sight (m) along seismic lines (i.e., decreasing visual cover), consistent with a predator-sensitive response. The presence of juveniles was associated with shorter behavioral events for caribou and moose, suggesting greater predator sensitivity for females with calves. Only moose demonstrated a positive behavioral association (i.e., longer events) with vegetation productivity (16-day NDVI), suggesting that for other species bottom-up influences of forage availability were generally weaker than top-down influences from predation risk. Behavioral insights can be gleaned from camera trap surveys and provide complementary information about animal responses to predation risk, and thus about the indirect impacts of human disturbances on predator-prey interactions.

摘要

人类干扰直接影响动物种群和群落,但干扰对物种行为的间接影响却鲜为人知。例如,干扰可能会改变捕食者的活动,并对猎物中对捕食者敏感的觅食行为产生连锁反应。相机陷阱为研究这种干扰介导的对跨多个尺度的动物行为的影响提供了一个新机会。我们利用相机陷阱数据来检验关于三种有蹄类动物(北美驯鹿、白尾鹿、驼鹿)在两个受干扰程度不同的西部北方森林景观中对捕食者敏感行为的预测。我们将行为量化为每次检测事件的相机陷阱照片数量,并测试其与在工业干扰和捕食者活动较大的景观与人类和捕食者活动较低的“对照”景观之间推断的人类介导的捕食风险的关系。我们还评估了在受干扰程度更高的景观中,相机站点间捕食风险变化(相对于栖息地变化)对行为的更精细尺度影响。我们预测,在捕食风险较高的区域(例如,狼活动更多、掩护更少)的动物会更快地经过相机,每次检测事件产生的照片更少,而在捕食风险较低的区域的动物会逗留(休息、觅食、调查),每次事件产生更多照片。我们的预测在景观层面得到了支持,因为北美驯鹿和驼鹿在干扰介导的捕食风险较低的对照景观中每次事件有更多照片。在受干扰景观内的更精细尺度上,没有猎物物种对狼的活动表现出显著的行为反应,但随着沿地震线的视线距离(米)增加(即视觉掩护减少),白尾鹿每次事件的照片数量减少,这与对捕食者敏感的反应一致。幼崽的存在与北美驯鹿和驼鹿较短的行为事件相关,这表明带着幼崽的雌性对捕食者更敏感。只有驼鹿表现出与植被生产力(16天归一化植被指数)的正行为关联(即事件更长),这表明对于其他物种,饲料可获得性的自下而上影响通常弱于捕食风险的自上而下影响。行为洞察可以从相机陷阱调查中获得,并提供关于动物对捕食风险反应的补充信息,从而提供关于人类干扰对捕食者 - 猎物相互作用的间接影响的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/162c/9288887/4e83cc3ac326/ECE3-12-e9108-g002.jpg

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