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首页> 外文期刊>Ecological Applications >LONG-TERM DEMOGRAPHIC RESPONSES OF TROUT POPULATIONS TO HABITAT MANIPULATION IN SIX COLORADO STREAMS
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LONG-TERM DEMOGRAPHIC RESPONSES OF TROUT POPULATIONS TO HABITAT MANIPULATION IN SIX COLORADO STREAMS

机译:鳟鱼种群对六个科罗拉多州人居环境的长期人口变化响应

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Fish communities in high-elevation, Rocky Mountain streams consist of only one or a few trout species, so these streams are ideal for quantifying how physical habitat manipulation influences population biology. Managers often alter habitat structure in hopes of increasing the number or size of fish in a population, but this practice has not been rigorously evaluated, and the mechanisms involved are not well understood. We measured fish abundance and habitat conditions in each half of 500-m study reaches in six streams for 2 yr before and 6 yr after installing 10 low log weirs in a randomly designated half (treatment section). Mean depth, pool volume, total cover, and the proportion of fine substrate particles in the stream bed increased in treatment sections within 1 to 2 years, whereas habitat in adjacent controls remained unchanged. Abundance and biomass of adult fish, but not juveniles, increased in treatments relative to controls in all streams. Recaptures of trout that were individually tagged and others that were batch marked revealed that immigration was primarily responsible for increased adult abundance and biomass, whereas no biologically significant differences occurred for recruitment, survival, or growth. Few (<5%) immigrants to treatment sections came from adjacent controls, indicating that the increased adult abundance did not result simply from fish redistributing within the study reach, but was caused instead by immigration from beyond the reach boundaries. Immigration to control sections was frequent as well, leading us to conclude that fish movement was common, contrary to most literature on stream trout. We also detected a high degree of concordance in fish abundance fluctuations within and among streams, suggesting that regional factors influenced fish populations over large spatial scales. Our research shows that log weirs increase trout abundance, but only if other management activities assure that fish dispersal remains unimpeded within the drainage. [References: 60]
机译:高海拔的落基山溪流鱼类群落仅由一种或几种鳟鱼组成,因此这些溪流非常适合用于量化物理栖息地操纵如何影响种群生物学。管理者经常改变栖息地的结构,希望增加种群中鱼类的数量或大小,但是这种做法尚未得到严格的评估,涉及的机制还没有得到很好的理解。我们在随机分配的一半(处理区)中安装了10条低对数堰之前,分别在6年中的6年中测量了500米研究河中每条河中鱼类的丰度和栖息地条件,分别为2年和6年。在1至2年内,处理区的平均深度,池体积,总覆盖率和流化床中细基质颗粒的比例在1至2年内增加,而相邻控制区的生境保持不变。相对于所有溪流的对照组,成年鱼而不是幼鱼的丰度和生物量都增加了。分别标记鳟鱼和批量标记鳟鱼的再捕获表明,移民主要是增加成年人的丰度和生物量的原因,而在招募,存活或生长方面没有生物学上的显着差异。很少(<5%)的移民来自邻近的控制区,这表明成年鱼群丰度的提高并非仅是由于研究范围内鱼类的重新分布所致,而是由范围外的移民所致。移民到控制区的情况也很常见,这使我们得出结论,鱼类运动很普遍,这与大多数关于鳟鱼的文献相反。我们还检测到溪流内部和溪流之间的鱼类丰度波动高度一致,表明区域因素在较大的空间尺度上影响了鱼类种群。我们的研究表明,原木堰增加了鳟鱼的丰度,但前提是其他管理活动必须确保排水中鱼类的扩散不受阻碍。 [参考:60]

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