鳟鱼(Salmo trutta)幼鱼的生物学特性是否会影响它们春季迁徙的时间和首次在海洋停留的时间?

IF 1.7 3区 农林科学 Q2 FISHERIES Journal of fish biology Pub Date : 2025-01-09 DOI:10.1111/jfb.16040
Jonathan P Gillson, Robert E Blackwell, Stephen D Gregory, Jessica E Marsh, Tea Bašić, Sophie A M Elliott, R Andrew King, David L Maxwell, William D Riley, Jamie R Stevens, Alan M Walker, Rasmus B Lauridsen
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引用次数: 0

摘要

溯河鲑鱼向海洋迁徙,以利用海洋栖息地的觅食和生长机会,但小鲑鱼的生物学特征如何影响它们的海洋迁徙行为仍然知之甚少。本研究使用了15595条标记为0岁以上的鳟鱼(Salmo trutta) 9年的种群监测数据,其中1033条小鳟鱼在春季向下游迁徙,99条成年鳟鱼在首次海洋迁徙后返回英国多塞特河(River Frome),研究了小鳟鱼生物学特征对其迁徙时间和首次海洋逗留时间的影响。幼崽体长对迁徙时间的影响存在年龄差异,在同一年龄组中,1岁大的幼崽比短的幼崽迁徙晚,而2岁大的幼崽则相反。一个定制的综合统计模型量化了小鲑鱼洄游的日期、年龄、性别和长度对第一次洄游者在一个或多个海洋冬季后返回河流的概率的影响。较年轻、较晚迁徙的小海豚比较年长、较早迁徙的同类在海上逗留的时间更长,雌性在海上停留的时间比雄性更长。虽然统计模型的设计是为了最大限度地利用数据中可用的信息,但它只显示了幼鱼生物学特征对初次海洋逗留时间的微弱影响。一项补充的模拟研究表明,检测更多的春季洄游小鳟鱼和分析更长的时间序列鳟鱼种群监测数据将增加检测统计显着效应的能力。因此,建议对鳟鱼种群监测计划进行战略性审查,包括更长期的生物数据收集。这里介绍的建模工作可以为所需数据集的大小以及如何最大化不完美数据的力量提供指导。
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Do the biological characteristics of trout (Salmo trutta) smolts influence their spring migration timing and maiden marine sojourn duration?

Anadromous salmonids migrate seaward to exploit feeding and growth opportunities in marine habitats, yet how smolt biological characteristics influence their marine migratory behavior remains poorly understood. This study used 9 years of trout (Salmo trutta) population monitoring data from 15,595 tagged age-0+ parr, 1033 smolts detected migrating downstream in spring, and 99 adults detected returning from their first marine migration to the River Frome (Dorset, UK) to investigate the influence of smolt biological characteristics on their migration timing and maiden marine sojourn duration. Age-specific differences in the influence of smolt length on migration timing were found, with longer 1-year-old smolts emigrating later than their shorter counterparts within the same age class, but the opposite association existed for 2-year-old smolts. A bespoke integrated statistical model quantified the effects of smolt emigration day of year, age, sex, and length on the probability of first-time migrants returning to the river after one or more sea winters. Younger, later migrating smolts had a longer marine sojourn duration than their older, earlier migrating counterparts, and females remained at sea for longer periods than males. Although the statistical model was designed to maximize the use of information available in the data, it revealed only weak effects of smolt biological characteristics on the maiden marine sojourn duration. A complementary simulation study suggested that detecting more spring migrating smolts and analyzing longer time series of trout population monitoring data would increase the ability to detect statistically significant effects. Therefore, a strategic review of the trout population monitoring program, including more long-term biological data collection, is recommended. The modelling work presented here can provide guidance on the size of the required dataset and how to maximize the power of imperfect data.

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来源期刊
Journal of fish biology
Journal of fish biology 生物-海洋与淡水生物学
CiteScore
4.00
自引率
10.00%
发文量
292
审稿时长
3 months
期刊介绍: The Journal of Fish Biology is a leading international journal for scientists engaged in all aspects of fishes and fisheries research, both fresh water and marine. The journal publishes high-quality papers relevant to the central theme of fish biology and aims to bring together under one cover an overall picture of the research in progress and to provide international communication among researchers in many disciplines with a common interest in the biology of fish.
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