首页> 外文会议>Symposium on Influences of Landscape on Stream Habitat and Biological Communities >A Spatially Explicit Approach for Evaluating Relationships among Coastal Cutthroat Trout, Habitat, and Disturbance in Small Oregon Streams
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A Spatially Explicit Approach for Evaluating Relationships among Coastal Cutthroat Trout, Habitat, and Disturbance in Small Oregon Streams

机译:评估小俄勒冈州沿海切口鳟鱼,栖息地和干扰关系的空间明确的方法

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Small stream systems are complex networks that form a physicochemical template governing the persistence of aquatic species such as coastal cutthroat trout Oncorhynchus darkii clarkii. To gain new insight into these interactions, we initiated an integrated program of landscape-scale sampling that is focused on fine- and broad-scale relationships among upslope landscape characteristics, physical stream habitat, and the spatial patterns of cutthroat trout abundance. Our sample of 40 catchments (500-1,000 ha) represented approximately 15% of the 269 barrier-isolated catchments in western Oregon that support populations of cutthroat trout. Because data were collected in a spatially contiguous manner throughout each catchment, it was possible to collectbiological and geographic information necessary to assess the spatial structure of cutthroat trout abundance. Results underscore the influence of the physical habitat template at a variety of spatial scales. For example, cutthroat trout move throughout the accessible portions of small streams. Some cutthroat trout congregate in areas of suitable habitat and form local populations that may exhibit unique genetic attributes. At times, some cutthroat trout move into larger downstream portions of the network where they may contribute to the genetic character of anadromous or local potamodromous assemblages. Results underscore the advantages of viewing habitats that are critical to the fitness and persistence of cutthroat trout populations as matrices of physical sites that are linked by movement. It is apparent that human activities that impede movement among suitable habitat patches can have unanticipated consequences for metapopulations of cutthroat trout and may ultimately affect their persistence.
机译:小型流系统是复杂的网络,形成有一个有理性化学模板,治疗水生物种的持久性,如沿海切片鳟鱼oncorhynchus darkii clarkii。为了获得这些互动的新洞察力,我们开始了一个综合规范抽样综合计划,其专注于上升性景观特征,物理河流栖息地和截止鳟鱼的空间模式之间的细小和广泛关系。我们40个集水区(500-1,000公顷)的样本代表了在俄勒冈州西俄勒冈州269个障碍集水区的约15%,这是支撑Cutthroat鳟鱼的群体。因为在每个集水机器中以空间连续的方式收集数据,所以可以在评估结块鳟鱼的空间结构所需的收集和地理信息。结果强调了物理栖息地模板在各种空间尺度的影响。例如,Cutthroat鳟鱼在整个小流的可接近部分移动。一些切片鳟鱼聚集在合适的栖息地的区域,并形成了可能表现出独特的遗传属性的当地种群。有时,一些切片鳟鱼进入网络的较大下游部分,在那里它们可能有助于芳基或局部产物组合的遗传特征。结果强调了观看栖息地的优势,这对切片鳟鱼群的健身和持续存在至关重要的栖息地作为由运动所连接的物理部位的矩阵。显而易见的是,在合适的栖息地斑块之间妨碍运动的人类活动可能对切片鳟鱼的比例产生意外的后果,并且最终可能影响他们的持久性。

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