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首页> 外文期刊>Environmental Biology of Fishes >Historic drought influences outmigration dynamics of juvenile fall and spring-run Chinook Salmon
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Historic drought influences outmigration dynamics of juvenile fall and spring-run Chinook Salmon

机译:历史性干旱影响少年秋季和春季运行奇努克三文鱼的迁移动态

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摘要

Riverine ecosystems around the world have undergone extensive anthropogenic alterations, often to the detriment of native aquatic biodiversity. Migratory fishes are particularly vulnerable to habitat fragmentation and degradation. For example, Chinook Salmon populations in the Sacramento River, CA have been declining for nearly a century. Its Mediterranean climate, position in a landscape dominated by urban and agricultural land use, and the presence of an inland delta that serves as the hub of California's vast water conveyance system, makes this a particularly perilous region for migrating juvenile salmon. This study used acoustic telemetry to investigate survival and routing of juvenile fall and spring-run Chinook Salmon through their riverine and estuarine migratory phases during the historic California drought of 2012-2016. Survival to the ocean in this river system is already lower relative to Chinook Salmon populations in North American. Survival to the Pacific Ocean ranged from 0.0-9.1% over the course of this three-year study. Use of four migratory routes through the Delta was variable, both within and between years. We documented extensive use and relatively high survival in Steamboat Slough (up to 41.5% routing through and up to 39.8% survival), part of the Sacramento River's distributary network. Migration through this pathway precludes juvenile salmon from encountering junctions leading to low survival routes. Results from this modeling effort provide valuable information and highlight opportunities for directing management actions to benefit these ecologically and economically valuable runs of Chinook Salmon.
机译:世界各地的河流生态系统经历了广泛的人为改变,经常损害天然生物多样性。迁徙鱼类特别容易受到栖息地破碎和降解的伤害。例如,Chinook Salmon群体在萨克拉门托河中,CA近一个世纪已经下降。其地中海气候,景观中的地位,由城市和农业用地使用,以及作为加利福尼亚庞大的水输送系统的中心的内陆三角洲的存在,使这成为迁移少年三文鱼的一个特别危险的地区。本研究采用了声学遥测来调查2012 - 2016年历史性加利福尼亚州河流和河口迁徙阶段的少年秋季和春季春季鲑鱼的生存和路由。在北美的奇努克鲑鱼群中,这条河流系统的生存已经较低。在本三年的研究过程中,太平洋的生存范围从0.0-9.1%。通过Delta使用四条迁移路线是可变的,无论是多年的。我们记录了汽船脱落中的广泛使用和相对较高的生存(通过达到41.5%的路线,高达39.8%的生存率),部分萨克拉门托河的分销网络。通过这种途径迁移排除了少年鲑鱼遇到导致低生存路线的连接。该建模工作的结果提供了有价值的信息,并突出了指导管理行动的机会,使这些生态和经济上有价值的奇努克鲑鱼类受益。

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