Factors affecting walleye and sauger recruitment in Lewis and Clark Lake, South Dakota, 2001–2022

IF 2 3区 农林科学 Q2 FISHERIES
W. Radigan, Phil Chvala, C. Longhenry, Mark Pegg
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引用次数: 0

Abstract

Abundance of adult walleye (Sander vitreus) and sauger (Sander canadensis), two important sport fishes, decreased significantly during 2001–2022 in Lewis and Clark Lake, a border water between Nebraska and South Dakota, despite walleye fingerling stocking and stable age‐0 abundance of both species. We sought to identify factors that drove variation in age‐0 abundance from 2001 to 2022 using an information theoretic approach. Age‐0 walleye catch per unit effort (CPUE) was correlated to mean monthly outflow, mean annual precipitation, and mean April gauge height in a delta. Age‐0 sauger CPUE was correlated to adult conspecific CPUE, mean April Heating Degree Days, and mean annual precipitation. Our findings suggest that both biotic and abiotic factors were important for explaining variation in age‐0 CPUE of sauger, but mainly abiotic factors for walleye. As such, manipulation of abiotic factors (i.e., outflow) by installing entrainment barriers may be more effective than manipulation of biotic factors (i.e., stocking).
2001-2022 年影响南达科他州刘易斯和克拉克湖马口铁和苏格鱼繁殖的因素
内布拉斯加州和南达科他州交界的刘易斯和克拉克湖(Lewis and Clark Lake)是两种重要的运动鱼类,在 2001-2022 年期间,尽管投放了马黑鱼幼苗,而且这两种鱼的 0 龄丰度稳定,但马黑鱼(Sander vitreus)和苏格鱼(Sander canadensis)成鱼的丰度却显著下降。我们试图利用信息理论方法找出 2001-2022 年间 0 龄鱼丰度变化的驱动因素。0龄马黑鱼的单位努力量捕获量(CPUE)与月平均流出量、年平均降水量和三角洲 4 月平均水尺高度相关。0 龄长尾鳕的单位努力量捕获量与成年同种鱼的单位努力量捕获量、4 月平均供暖度日和年平均降水量相关。我们的研究结果表明,生物因素和非生物因素对解释长尾鳕 0 龄 CPUE 的变化都很重要,但对马黑鱼来说主要是非生物因素。因此,通过安装夹带屏障来控制非生物因素(即外流)可能比控制生物因素(即放养)更有效。
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来源期刊
Fisheries Management and Ecology
Fisheries Management and Ecology 农林科学-渔业
CiteScore
3.80
自引率
5.00%
发文量
77
审稿时长
12-24 weeks
期刊介绍: Fisheries Management and Ecology is a journal with an international perspective. It presents papers that cover all aspects of the management, ecology and conservation of inland, estuarine and coastal fisheries. The Journal aims to: foster an understanding of the maintenance, development and management of the conditions under which fish populations and communities thrive, and how they and their habitat can be conserved and enhanced; promote a thorough understanding of the dual nature of fisheries as valuable resources exploited for food, recreational and commercial purposes and as pivotal indicators of aquatic habitat quality and conservation status; help fisheries managers focus upon policy, management, operational, conservation and ecological issues; assist fisheries ecologists become more aware of the needs of managers for information, techniques, tools and concepts; integrate ecological studies with all aspects of management; ensure that the conservation of fisheries and their environments is a recurring theme in fisheries and aquatic management.
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