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A Study of the Spawning Ecology and Early Life History Survival of Bonneville Cutthroat Trout

机译:Bonneville残酷鳟鱼的产卵生态学和早期生活史生存研究

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We completed a large-scale field experiment in four tributaries of the Logan River, Utah, where the largest metapopulation of imperiled Bonneville cutthroat trout Oncorhynchus clarkii utah persists. We documented the spatial and temporal distributions of spawners, quantified substrate use versus substrate availability, and evaluated differences in hatch and emergence fry success between and among sites in relation to habitat characteristics. We observed considerable variability in the timing, magnitude, and duration of spawning among study areas (streams), in part as a function of a variable, multipeaked hydrograph. Nevertheless, across study areas, >70% of redds were constructed on the final descending limb of the hydrograph. Despite large differences in the amount of spawning substrate available, Bonneville cutthroat trout utilized a narrow range of substrate and sizes (3-80 mm) similar to that utilized by other subspecies of cutthroat trout, albeit biased towards larger sizes. Water temperatures generally remained below the recommended range (6-17 degrees C) for spawning; however, the viability of this metapopulation of cutthroat trout suggests that the recommended temperature range for spawning is overestimated for this subspecies and (or) does not account for local thermal adaptation. Hatch varied from 43% to 77% and emergence survival from 39% to 65% among streams, and within-stream variability was substantial; both survival rates declined significantly as a function of increased fine sediment concentrations. Egg development rates were nearly 50% greater in a high-elevation tributary where redd counts were also lowest. In high, mountain systems with short growing seasons, this incubation delay likely presents a significant growth disadvantage for age-0 trout. Our research enhances our understanding of Bonneville cutthroat trout spawning ecology and early survival and provides critical information for aiding in the development of benchmarks for their recovery. Effective conservation efforts should be directed towards minimizing anthropogenic activities that result in excess sedimentation in their critical spawning tributaries.
机译:我们在犹他州洛根河的四个支流处完成了一次大规模的野外试验,在那里,最大的顽固的邦纳维尔onne鱼鳟鱼Oncorhynchus clarkii utah的种群一直存在。我们记录了产卵器的时空分布,定量的底物使用与底物可用性之间的关系,并评估了栖息地之间的孵化和出苗成功率之间的差异以及栖息地的特征。我们观察到研究区域(河流)之间产卵的时间,幅度和持续时间有很大的差异,部分原因是可变的多峰水文图。尽管如此,在整个研究区域中,> 70%的冲积物是在水文图的最后一个下降肢上构造的。尽管可用的产卵底物数量差异很大,但邦纳维尔的th鱼鳟鱼使用的底物和尺寸范围较小(3-80毫米),类似于其他种类的cut鱼鳟鱼,尽管偏向更大的尺寸。水温通常保持低于建议的产卵范围(6-17摄氏度);但是,这种残酷鳟鱼种群的生存能力表明,该亚种的产卵推荐温度范围被高估了,并且(或)没有考虑局部热适应性。在溪流中,孵化率从43%变化到77%,出苗率从39%下降到65%,溪流内部的变异性很大。两种沉积物的存活率均显着下降,这与细泥沙浓度的增加有关。高海拔支流中的鸡蛋发育率高出近50%,其中红血球计数也最低。在生长季节短的高山系统中,这种孵化延迟可能会对0岁鳟鱼造成严重的生长不利条件。我们的研究增进了我们对邦纳维尔(Bonneville)ecology鳟鱼产卵生态学和早期生存的了解,并为帮助制定恢复基准提供了重要信息。有效的保护工作应致力于减少导致其重要产卵支流中过多沉积的人为活动。

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