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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Factors influencing coastal cutthroat trout (Oncorhynchus clarkii clarkii) seasonal survival rates: a spatially continuous approach within stream networks
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Factors influencing coastal cutthroat trout (Oncorhynchus clarkii clarkii) seasonal survival rates: a spatially continuous approach within stream networks

机译:影响沿海尖嘴鳟鱼(Oncorhynchus clarkii clarkii)季节性生存率的因素:流网络内的空间连续方法

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摘要

Mark-recapture methods were used to examine watershed-scale survival of coastal cutthroat trout (Oncorhynchus clarkii clarkii) from two headwater stream networks. A total of 1725 individuals (>=100mm, fork length) were individually marked and monitored seasonally over a 3-year period. Differences in survival were compared among spatial (stream segment, subwatershed, and watershed) and temporal (season and year) analytical scales, and the effects of abiotic (discharge, temperature, and cover) and biotic (length, growth, condition, density, movement, and relative fish abundance) factors were evaluated. Seasonal survival was consistently lowest and least variable (years combined) during autumn (16September - 15 December), and evidence suggested that survival was negatively associated with periods of low stream discharge. In addition, relatively low (-) and high (+) water temperatures, fish length (-), and boulder cover (+) were weakly associated with survival. Seasonal abiotic conditions affected theadult cutthroat trout population in these watersheds, and low-discharge periods (e.g., autumn) were annual survival bottlenecks. Results emphasize the importance of watershed-scale processes to the understanding of population-level survival.
机译:标记捕获方法用于检查来自两个源头水流网络的沿海喉咙鳟鱼(Oncorhynchus clarkii clarkii)的分水岭规模生存。总共标记了1725个个体(> = 100mm,叉子长度),并在3年​​内进行季节性监测。比较了空间(河流区段,子集水区和集水区)和时间(季节和年份)分析尺度,非生物(排放,温度和覆盖)和生物(长度,生长,状况,密度,运动和鱼类相对丰度)因子进行了评估。在秋季(9月16日至12月15日),季节性生存始终是最低且变化最小的(合并年数),并且证据表明生存与溪流排放量低的时期负相关。此外,相对较低的水温(-)和较高的水温(+),鱼的长度(-)和巨石覆盖度(+)与生存率存在弱关联。季节性的非生物条件影响了这些流域的成年尖嘴鳟鱼种群,低排放期(例如秋天)是每年生存的瓶颈。结果强调了分水岭规模过程对于理解人口生存水平的重要性。

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