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多尺度气候影响:奇努克鲑幼鱼种群差异响应的证据

Climate impacts at multiple scales: evidence for differential population responses in juvenile Chinook salmon.

作者信息

Crozier Lisa, Zabel Richard W

机构信息

National Marine Fisheries Service, North-west Fisheries Science Center, 2725 Montlake Blvd. E., Seattle, WA 98112, USA.

出版信息

J Anim Ecol. 2006 Sep;75(5):1100-9. doi: 10.1111/j.1365-2656.2006.01130.x.

Abstract
  1. We explored differential population responses to climate in 18 populations of threatened spring-summer Chinook salmon Onchorynchus tshawytscha in the Salmon River basin, Idaho. 2. Using data from a long-term mark-release-recapture study of juvenile survival, we found that fall stream flow is the best predictor of average survival across all populations. 3. To determine whether all populations responded similarly to climate, we used a cluster analysis to group populations that had similar annual fluctuations in survival. The populations grouped into four clusters, and different environmental factors were important for different clusters. 4. Survival in two of the clusters was negatively correlated with summer temperature, and survival in the other two clusters was positively correlated with minimum fall stream flow, which in turn depends on snow pack from the previous winter. 5. Using classification and regression tree analysis, we identified stream width and stream temperature as key habitat factors that shape the responses of individual populations to climate. 6. Climate change will likely have different impacts on different populations within this metapopulation, and recognizing this diversity is important for accurately assessing risks.
摘要
  1. 我们研究了爱达荷州鲑鱼河流域18个受威胁的春夏产卵奇努克鲑(Onchorynchus tshawytscha)种群对气候的不同种群反应。2. 利用一项关于幼鱼存活率的长期标记放流重捕研究的数据,我们发现秋季河流量是所有种群平均存活率的最佳预测指标。3. 为了确定所有种群对气候的反应是否相似,我们使用聚类分析将存活率年波动相似的种群归为一组。这些种群分为四类,不同的环境因素对不同的类别很重要。4. 其中两类种群的存活率与夏季温度呈负相关,另外两类种群的存活率与秋季最低河流量呈正相关,而秋季最低河流量又取决于前一年冬季的积雪量。5. 通过分类和回归树分析,我们确定了河道宽度和水温是影响各个种群对气候反应的关键栖息地因素。6. 气候变化可能会对这个集合种群中的不同种群产生不同影响,认识到这种多样性对于准确评估风险很重要。

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