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Functional attributes of ungulate migration: landscape features facilitate movement and access to forage

机译:UNGUTE迁移的功能属性:景观特征促进移动和访问饲料

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摘要

Long-distance migration by terrestrial mammals is a phenomenon critical to the persistence of populations, but such migrations are declining globally because of over-harvest, habitat loss, and movement barriers. Increasingly, there is a need to improve existing routes, mitigate route segments affected by anthropogenic disturbance, and in some instances, determine whether alternative routes are available. Using a hypothesis-driven approach, we identified landscape features associated with the primary functional attributes, stopovers and movement corridors, of spring migratory routes for mule deer in two study areas using resource selection functions. Patterns of selection for landscape attributes of movement corridors and stopovers mostly were similar; however, landscape features associated with movement corridors aligned better with areas that facilitated movement, whereas selection of stopovers was consistent with sites offering early access to spring forage. For movement corridors, deer selected for dry sites, low elevation, and low anthropogenic disturbance. For stopovers, deer selected for dry sites, with consistently early green-up across years, south-southwesterly aspects, low elevation, and low anthropogenic disturbance. Stopovers and movement corridors of a migratory route presumably promote different functions, but for a terrestrial migrant, patterns of habitat selection indicate that the same general habitat attributes may facilitate both movement and foraging in spring. Our findings emphasize the roles of topographical wetness, vegetation phenology, and anthropogenic disturbance in shaping use of the landscape during migration for this large herbivore. Avoiding human disturbance and tracking ephemeral forage resources appear to be a consistent pattern during migration, which reinforces the notion that movement during migration has a nutritional underpinning and disturbance potentially alters the net benefits of migration.
机译:陆地哺乳动物的长途迁移是对人口持续存在的现象,但由于收获,栖息地损失和运动障碍,这种迁徙正在全球下降。越来越多,需要改进现有路线,减轻受人类扰动影响的路线段,在某些情况下,确定是否可用替代路线。使用假设驱动的方法,我们确定了使用资源选择函数的两个研究区域中的骡鹿的春迁移路线的横向迁移路由与主要功能属性运动横向属性的选择模式和拦截大多是相似的;然而,与运动走廊相关的景观特征更好地与便于移动的区域保持更好,而选择的垃圾悬浮液是一致的,这些网站一致地提供早期进入春季牧草的网站。对于运动走廊,鹿选择干燥部位,低升高和低人为干扰。对于停留,鹿选择用于干燥场地,在多年来,南北方面,低预期和低的人为干扰,持续早期绿色。迁移路线的停车和运动走廊可能会促进不同的功能,但对于陆地移民,栖息地选择的模式表明,相同的一般栖息地属性可以促进春天的运动和觅食。我们的调查结果强调了地形湿度,植被吩咐和人为扰动在迁移过程中塑造了这种大型食草动物的迁移过程中的作用。避免人类的干扰和跟踪短暂的牧草资源似乎是迁移过程中的一致模式,这加强了迁移过程中运动的观念具有营养的支撑和干扰可能会改变迁移的净利润。

著录项

  • 来源
    《Ecological Applications》 |2018年第8期|共12页
  • 作者单位

    Haub School of Environment and Natural Resources Wyoming Cooperative Fish and Wildlife Research Unit Department of Zoology and Physiology University of Wyoming 804 E. Fremont Street Laramie Wyoming 82072 USA;

    Haub School of Environment and Natural Resources Wyoming Cooperative Fish and Wildlife Research Unit Department of Zoology and Physiology University of Wyoming 804 E. Fremont Street Laramie Wyoming 82072 USA;

    U.S. Geological Survey Wyoming Cooperative Fish and Wildlife Research Unit Department of Zoology and Physiology Department 3166 University of Wyoming 1000 East University Avenue Laramie Wyoming 82071 USA;

    The Nature Conservancy 258 Main Street Lander Wyoming 82520 USA;

    Western Ecosystems Technology Inc. 200 South 2nd Street Laramie Wyoming 82070 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境生物学;
  • 关键词

    anthropogenic disturbance; connectivity; habitat selection; mule deer; Odocoileus hemionus; stopover; Wyoming;

    机译:人为干扰;连接;栖息地选择;骡鹿;oocoileus hemionus;脱落;怀俄明州;

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