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首页> 外文期刊>North American Journal of Fisheries Management >Latitudinal comparisons of walleye growth in North America and factors influencing growth of walleyes in Kansas reservoirs
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Latitudinal comparisons of walleye growth in North America and factors influencing growth of walleyes in Kansas reservoirs

机译:北美壁眼生长的横向比较及影响堪萨斯水库壁眼生长的因素

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摘要

We compared the growth of walleyes Stizostedion vitreum in Kansas to that of other populations throughout North America and determined the effects of the abundance of gizzard shad Dorosoma cepedianum and temperature on the growth of walleyes in Kansas reservoirs. Age was estimated from scales and otoliths collected from walleyes (N = 2,072) sampled with gill nets from eight Kansas reservoirs during fall in 1991-1999. Age-0 gizzard shad abundance was indexed based on summer seining information, and temperature data were obtained from the National Oceanic and Atmospheric Administration. Parameter estimates of von Bertalanffy growth models indicated that the growth of walleyes in Kansas was more similar to that of southern latitude populations (e.g., Mississippi and Texas) than to that of northern (e.g., Manitoba, Minnesota and South Dakota) or middle latitude (e.g., Colorado and Iowa) populations. Northern and middle latitude populations had lower mean back-calculated lengths at age 1, lower growth coefficients, and greater longevity than southern and Kansas populations. A relative growth index (RGI; [L-t/L-s] X 100, where L, is the observed length at age and L, is the age-specific standard length derived from a pooled von Bertalanffy growth model) and standardized percentile values (percentile values of mean back-calculated lengths at age) indicated that the growth of walleyes in Kansas was above average compared with that of other populations in North America. The annual growth increments of Kansas walleyes were more variable among years than among reservoirs. The growth increments of age-0 and age-1 walleyes were positively related to the catch rates of gizzard shad smaller than 80 mm, whereas the growth of age-2 and age-3 walleyes was inversely related to mean summer air temperature. Our results provide a framework for comparing North American walleye populations, and our proposed RGI provides a simple, easily interpreted index of growth.
机译:我们将堪萨斯州的角膜白斑玻璃体的生长与北美其他种群的生长进行了比较,并确定了izz的丰富数量和温度对堪萨斯水库中角膜白斑的生长的影响。 1991-1999年秋季,从八只堪萨斯水库的g网取样,从wall鱼(N = 2,072)采集的鳞片和耳石中估计了年龄。根据夏季围网信息对0岁g的g鱼丰度进行了索引,并从美国国家海洋和大气管理局获得了温度数据。冯·贝塔兰菲(von Bertalanffy)增长模型的参数估计表明,堪萨斯州的角膜白斑的生长与南部纬度种群(例如,密西西比州和德克萨斯州)的生长更相似,而不是北部(例如曼尼托巴,明尼苏达州和南达科他州)或中纬度(例如,科罗拉多州和爱荷华州)人口。与南部和堪萨斯州的人口相比,北部和中纬度人口在1岁时的平均反算长度较低,其生长系数较低,寿命更长。相对生长指数(RGI; [Lt / Ls] X 100,其中L是在年龄观察到的长度,L是从合并的von Bertalanffy生长模型得出的特定年龄的标准长度)和标准化的百分位数(百分数值)年龄的平均反算长度)表明,堪萨斯州的角膜白斑的生长高于北美其他人群。堪萨斯角膜眼的年增长增量在年间比在水库之间变化更大。 0岁和1岁角膜白斑的增长增量与小于80 mm的g的捕获率呈正相关,而2岁和3岁角膜白斑的增长与夏季平均气温成反比。我们的结果提供了一个比较北美角膜白斑人口的框架,而我们提出的RGI提供了一个简单易懂的增长指数。

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