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首页> 外文期刊>The Journal of Applied Ecology >Functional responses, Seasonal variation and thresholds in behavioural responses of moose to road density
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Functional responses, Seasonal variation and thresholds in behavioural responses of moose to road density

机译:功能反应、季节性变化在行为反应阈值的驼鹿道路密度

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Understanding the consequences of environmental change on populations is an essential prerequisite for informed management of ecosystems and landscapes. In lieu of quantifying fitness effects directly, which is often difficult, behavioural functional responses provide insight into how animals balance trade-offs, and into thresholds in responses to environmental change. Here, we explore this principle using the response of moose Alces alces L. to roads and restricted-access tracks as a case study. Because roads are associated with the conversion of conifer to mixed deciduous-conifer forest that provides better foraging opportunities, moose in Ontario favour areas of moderate road density at a landscape scale. At a finer scale, however, moose avoid roads. These opposing effects indicate a cost-benefit trade-off. We quantified behavioural responses of moose to roads using road-crossing rate. An expected distribution of crossing rates was derived from correlated random walk null model simulations. Moose exhibited a seasonally variable, nonlinear functional response in road-crossing rate at the within seasonal range scale. A pronounced response to roads was observed when road density reached approximate thresholds of 0·2 and 0·4?km?km-2 in summer and winter respectively. Road-crossing rate was proportional to road density, though crossing rates were higher in summer than winter. Crossing rates were best explained by the interaction between mean movement rate and road density. Seasonal differences in road-crossing rate arise from seasonal differences in movement rate and seasonal range area, but not road density within seasonal ranges. Within the protected park, moose did not appear to respond to tracks. Our analysis implies that for the majority of the landscape outside of protected areas the response of moose to roads is pronounced. Synthesis and applications. Identifying thresholds in nonlinear responses to landscape modification is a key management objective as they represent transition zones where small changes can have disproportionately large effects on wildlife populations. We establish these thresholds for moose and roads, but find no response to tracks, implying that the effects of tracks can be mitigated by restricting access to them. We discuss the implications of this work on the problem of moose-vehicle collisions. Identifying thresholds in nonlinear responses to landscape modification is a key management objective as they represent transition zones where small changes can have disproportionately large effects on wildlife populations. We establish these thresholds for moose and roads, but find no response to tracks, implying that the effects of tracks can be mitigated by restricting access to them. We discuss the implications of this work on the problem of moose-vehicle collisions.
机译:理解环境的后果人口变化是一个至关重要的通知管理的先决条件生态系统和景观。经常健身效果直接,这是困难,行为功能响应提供深入了解动物如何平衡权衡,反应阈值环境变化。原则使用响应的驼鹿酒精度酒精度l .道路和要求限制访问权限的追踪案例研究。转换的针叶树deciduous-conifer混合森林提供了更好的觅食机会,麋鹿在安大略省支持的领域在景观尺度道路密度适中。然而,细尺度驼鹿避免道路。反对效果表明成本效益权衡。驼鹿道路使用穿越公路。预期的交叉率的分布零模型来源于相关随机漫步模拟。变量、非线性的功能反应穿越公路速度季节性范围内规模。观察到当道路密度达到近似阈值0·2和0·4 ?公里吗?冬天的分别。道路密度成正比,虽然穿越利率在夏季高于冬季。最好的解释率交互意思是运动速度和道路密度之间的关系。交叉口的季节性差异率出现从运动速率和季节性差异季节性范围区域,但不是内道路密度季节性的范围。似乎没有回应。意味着对于大多数的景观保护区以外的麋鹿的反应道路是明显的。应用程序。对景观改造是一个关键的反应管理目标,因为他们代表过渡区域小的变化不成比例的大对野生动物的影响人群。麋鹿和道路,但发现没有回应,暗示的效果追踪减轻通过限制访问。讨论这一工作的影响moose-vehicle碰撞的问题。在非线性反应景观阈值修改是一个关键的管理目标他们代表过渡区小变化有较大影响对野生动物种群。阈值对麋鹿和道路,但找不到回应,暗示的影响跟踪可以减轻通过限制访问权他们。moose-vehicle碰撞的问题。

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