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Evaluation and Management of Hybrid Striped Bass in Monroe Lake, Indiana

机译:印第安纳州梦露湖杂交条纹低音的评估与管理

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Striped bass Morone saxatilis movements and population dynamics have been well studied in midwestern impoundments; however, a paucity of information exists on hybrid striped bass in these systems. We studied palmetto bass (male white bass M. chrysopsx female striped bass) population dynamics and seasonal movements from 2005 to 2007 at Monroe Lake, a 4,350-ha flood control impoundment in south-central Indiana. Palmetto bass were collected, measured, and aged using otoliths to assess growth and mortality. Thirty fish were tagged with radio tags in April 2006 to determine seasonal movements and distributions for 1 year. Oxygen and temperature profiles were measured throughout the year to determine available habitat. Total annual mortality was 32% (±5%). Catch-curve residuals were modeled against the number of fish stocked to investigate recruitment variability. More than 95% of the variation in year-class strength was explained by the number of age-0 fish (25-50 mm total length) stocked in early summer. We determined that optimal stocking rates were between 12 and 23 fish/ha. Fish moved more during spring (501 m/d) than other seasons (109-220 m/d). Fish were concentrated in the lower basin of the lake during summer and in the upper basin during winter. Based on minimum habitat suitability index values for temperature and dissolved oxygen, there was no optimal habitat available in winter or spring. The volume of optimal habitat increased to 22% of the lake during summer and 47% in fall. Based on our evaluation of population dynamics, seasonal movements, available habitat, and stocking efficiency, current management strategies of hybrid striped bass in Monroe Lake are adequate to sustain a healthy fishery at similar levels of mortality.
机译:条纹低音孤独的Saxatilis运动和人口动态在中西部蓄水站很好地研究;然而,在这些系统中存在于混合条纹低音上存在的信息。从2005年到2007年,我们在蒙德雷湖(Monroe Lake)学习了Palmetto Bass(男性白贝斯M.克莱斯X女性条纹低音)人口动力学和季节性运动,这是印第安纳州中市中心4,350-HA防洪蓄水。使用Otoliths收集,测量和老化棕榈贝斯以评估生长和死亡率。 2006年4月与无线电标签标记了30条鱼,以确定季节性运动和分布1年。全年测量氧气和温度型材以确定可用的栖息地。年度死亡率总额为32%(±5%)。捕获曲线残差是针对储存招聘变异性的鱼类数量的建模。在初夏储存的年龄-0鱼(25-50毫米总长度)中,向95%的阶级力量进行了解释。我们确定最佳的库存率为12至23条鱼/公顷。春天(501米/ d)比其他季节(109-220 m / d)移动。在夏季和冬季,在夏季和上部盆地中浓缩鱼在湖的下盆中。基于温度和溶解氧的最低栖息地适用率指标值,冬季或春季没有最佳栖息地。夏季,最佳栖息地的体积增加到湖泊的22%,下降47%。根据我们对人口动态,季节性运动,可用栖息地和放养效率的评估,蒙古湖中杂交条纹低音的现行管理策略足以维持在类似的死亡率水平的健康渔业。

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