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Differential migration in Chesapeake Bay striped bass

机译:切萨皮克湾条纹低音差分迁移

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Differential migration—increased migration propensity with increasing individual size—is common in migratory species. Like other forms of partial migration, it provides spatial buffering against regional differences in habitat quality and sources of mortality. We investigated differential migration and its consequences to survival and reproductive patterns in striped bass, a species with well-known plasticity in migration behaviors. A size-stratified sample of Potomac River (Chesapeake Bay) Morone saxatilis striped bass was implanted with acoustic transmitters and their subsequent coastal shelf migrations recorded over a 4-yr period by telemetry receivers throughout the Mid-Atlantic Bight and Southern New England. A generalized linear mixed model predicted that ≥ 50% of both males and females depart the Chesapeake Bay at large sizes 80 cm total length. Egressing striped bass exited through both the Chesapeake Bay mouth and Delaware Bay (via the Chesapeake and Delaware Canal), favoring the former. All large fish migrated to Massachusetts shelf waters and in subsequent years repeatedly returned to regions within Massachusetts and Cape Cod Bays. Within this dominant behavior, minority behaviors included straying, skipped spawning, and residency by large individuals (those expected to migrate). Analysis of the last day of transmission indicated that small resident striped bass experienced nearly 2-fold higher loss rates (70% yr -1 ) than coastal shelf emigrants (37% yr -1 ). The study confirmed expectations for a threshold size at emigration and different mortality levels between Chesapeake Bay (resident) and ocean (migratory) population contingents; and supported the central premise of the current assessment and management framework of a two-contingent population: smaller Chesapeake Bay residents and a larger ocean contingent. An improved understanding of differential migration thus affords an opportunity to specify stock assessments according to different population sub-components, and tailor reference points and control rules between regions and fishing stakeholder groups.
机译:差分迁移增加的迁移倾向随着个体尺寸的增加 - 是迁移物种常见的。与其他形式的部分迁移一样,它为栖息地质量和死亡源的区域差异提供空间缓冲。我们调查了差异迁移及其对条纹低音中生存和生殖模式的后果,一种具有众所周知的迁移行为中可塑性的物种。大尺寸分层的波托马克河(Chesapeake Bay)莫罗塞Saxatilis条纹低音植入了声学发射器,随后的沿海地货架迁移记录了在大西洋中大西洋中部和新英格兰南部的遥测接收器的4年间。广义的线性混合模型预测,≥50%的男性和女性在大尺寸和80厘米总长度下离开切萨皮克湾。在Chesapeake湾口和特拉华湾(通过切萨皮克和特拉华州运河)出现了镶边鲈鱼出口,偏爱前者。所有大型鱼迁移到马萨诸塞架水域,随后几年反复返回马萨诸塞州和鳕鱼鳕鱼湾的地区。在这种主导行为中,少数民族行为包括偏离,跳过产卵和居住,大个人(预计迁移的人)。对现时传输的分析表明,小居民条纹低音比沿海地货架移民(37%YR -1)经历了近2倍的更高损失率(70%YR -1)。该研究确认了在切萨克湾(居民)和海洋(迁徙)人口特遣队之间的移民和不同死亡率水平的阈值规模的期望;并支持其双队人口当前评估和管理框架的中央前提:较小的切萨皮克湾居民和更大的海洋偶然。因此,改善了对差异迁移的理解,因此有机会根据不同的人口子组件指定股票评估,以及区域和渔业利益相关者群之间的定制参考点和控制规则。

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