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首页> 外文期刊>The Journal of Applied Ecology >Uncovering the links between foraging and breeding regions in a highly mobile mammal
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Uncovering the links between foraging and breeding regions in a highly mobile mammal

机译:发现觅食和繁殖之间的联系区域在一个高度移动的哺乳动物

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The annual cycle of many animals is characterized by the need to satisfy different life history priorities, often requiring seasonal movements. For such species, investigating carry-over effects (such as the year-long drivers of breeding success) and managing protected areas effectively, relies on quantifying these movements. Here, we model the seasonal movements of the UK population of grey seals Halichoerus grypus and show how insights from the model can improve its management. We fit a hidden process model to two types of information - regional population redistribution and individual movements - to estimate the seasonal transition probabilities of breeding female grey seals among four regions around the UK. We found that between 21% and 58% of females used different regions for breeding and foraging. For our study period, we detected an increase in the breeding performance of animals that foraged in the Hebrides and South-East Coast. Grey seal Special Areas of Conservation (SACs) were designed to encompass a significant proportion of the UK breeding population: ?40% of the breeding females in our study area. Of the females breeding on SACs, only 15% breed in Northern Scotland, but up to 50% forage there. Our results indicate that, by only considering the breeding distribution of females that breed in SACs, the impact of anthropogenic activities on nearby SACs may be overestimated, whereas impacts on remote SACs may be underestimated. Synthesis and applications. By quantifying the link between the foraging and breeding distributions of grey seals, management of breeding populations can be focused on the foraging regions where the resources necessary for reproduction are acquired. The construction of marine developments is dependent on demonstrating that they will not have an adverse effect on the integrity of Special Areas of Conservation (SACs), and we have shown that this requires consideration of the seasonal transition probabilities estimated in this study. Our specific results provide support for management strategies that jointly consider SACs and Marine Protected Areas (MPAs). More generally, we prescribe combinations of data on population size, breeding performance and individual movement that can enable our framework to be applied to seasonally migrating species. By quantifying the link between the foraging and breeding distributions of grey seals, management of breeding populations can be focused on the foraging regions where the resources necessary for reproduction are acquired. The construction of marine developments is dependent on demonstrating that they will not have an adverse effect on the integrity of Special Areas of Conservation (SACs), and we have shown that this requires consideration of the seasonal transition probabilities estimated in this study. Our specific results provide support for management strategies that jointly consider SACs and Marine Protected Areas (MPAs). More generally, we prescribe combinations of data on population size, breeding performance and individual movement that can enable our framework to be applied to seasonally migrating species.
机译:许多动物的年度周期特征需要满足不同的生活史优先级,常常需要季节性波动。对于这样的物种,调查遗留物影响(如的长达一年的司机繁殖成功)和管理保护区实际上,依赖于量化这些运动。的英国人的灰色海豹Halichoerus从模型可以grypus和展示的见解改善其管理。两种类型的信息——区域模型人口再分配和个人运动估计季节性过渡概率的繁殖女性灰海豹四个区域在英国。21%和58%的女性使用不同地区繁殖和觅食。发现增加繁殖性能的动物在赫布里底群岛东南沿海地区。保护(囊)旨在涵盖英国育种的重要比例人口:? 40%的雌性繁殖的研究区域。15%的品种在苏格兰北部,但高达50%饲料。考虑到女性的繁殖分配在囊繁殖,人为的影响活动在附近囊可能高估了,而对远程囊可能的影响低估了。量化的觅食和之间的联系灰色的海豹,管理的繁殖分布的繁殖的种群可以关注觅食区域所需的资源繁殖的。海洋的发展是依赖证明他们不会有不利影响的特殊区域的完整性保护(囊),我们已经表明这一点需要考虑季节的过渡这项研究估计的概率。具体结果为管理提供支持战略,联合考虑囊和海洋保护区(海洋保护区)。开人口数据的组合大小、繁殖性能和个人运动可以使我们的框架适用于季节性迁徙物种。量化的觅食和之间的联系灰色的海豹,管理的繁殖分布的繁殖的种群可以关注觅食区域所需的资源繁殖的。海洋的发展是依赖证明他们不会有不利影响的特殊区域的完整性保护(囊),我们已经表明这一点需要考虑季节的过渡这项研究估计的概率。具体结果为管理提供支持战略,联合考虑囊和海洋保护区(海洋保护区)。开人口数据的组合大小、繁殖性能和个人运动可以使我们的框架适用于季节性迁徙物种。

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