通过局部空间统计和网络分析揭示北极溯河鱼类(北极鲑)的洄游时间和海洋空间利用情况

IF 3.4 1区 生物学 Q2 ECOLOGY
Rosie Smith, Eric Hitkolok, Tracey Loewen, Amanda Dumond, Heidi Swanson
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引用次数: 0

摘要

无冰季节(通常为 6 月底至 10 月初)对于北极地区的溯河鱼类(包括北极红点鲑)至关重要,因为它们必须在海洋环境中短暂的觅食期间获得足够的生长、繁殖和生存资源。北极红点鲑是北极地区因纽特人社区的重要食用鱼。因此,了解海洋环境中洄游的驱动因素和模式对该物种的保护和管理至关重要。我们利用被动声学遥测技术描述了 51 只溯河北极红点鲑个体在无冰季节在加冕湾(加拿大努纳武特,2019-2022 年)海洋环境中的洄游模式。根据最近的遗传学证据,一些被标记的个体可能是多利瓦登鱼(Salvelinus malma malma),一种与北极红点鲑密切相关的物种。利用当地的 Getis G* 和网络分析,我们描述了移动模式,并确定了海洋环境中的高使用率地点。我们还将淡水越冬地点与洄游时间和运动模式联系起来。比较在不同地点越冬的鱼类群体,我们发现:(i) 海洋运动与越冬地点相关的证据有限;(ii) 海洋空间的利用略有不同;(iii) 不同越冬群体返回淡水的时间差异显著,并且与淡水洄游路径的长度和难度有关。网络分析和当地 Getis G* 的结果表明,无论越冬地点在哪里,沿海地点都是鱼类高度利用的地方。越冬地点和进入越冬地点的洄游路线会影响淡水回流的时间。鱼类偏好沿海海洋地点可能是由于丰富的饵料和海冰破裂的规律。海洋空间利用和移动模式的相似性给管理这种鱼类和其他溯河产卵鱼类的混养渔业带来了挑战。 由于没有发现鱼类或有一段时间没有发现鱼类,因此无法对移动模式进行全面评估。局部 Getis G* 是空间关联的局部指标,是确定与声学遥测阵列中缺席相关位置的有用工具,也是网络分析的补充方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Migration timing and marine space use of an anadromous Arctic fish (Arctic Char, Salvelinus alpinus) revealed by local spatial statistics and network analysis
The ice-free season (typically late-June to early-October) is crucial for anadromous species of fish in the Arctic, including Arctic Char (Salvelinus alpinus), which must acquire adequate resources for growth, reproduction, and survival during a brief period of feeding in the marine environment. Arctic Char is an important food fish for Inuit communities across the Arctic. Understanding drivers and patterns of migration in the marine environment is thus essential for conservation and management of the species. We used passive acoustic telemetry to characterize migration patterns of 51 individual anadromous Arctic Char during the ice-free season in the marine environment of Coronation Gulf (Nunavut, Canada; 2019–2022). Based on recent genetic evidence, some tagged individuals were likely Dolly Varden (Salvelinus malma malma), a closely related species to Arctic Char. Using local Getis G* and network analysis, we described movement patterns and identified high-use locations in the marine environment. We also related freshwater overwintering location to migration timing and movement pattern. Comparing groups of fish that overwintered in distinct locations, we found: (i) limited evidence that marine movements were associated with overwintering location; (ii) minor differences in use of marine space; and, (iii) timing of freshwater return differed significantly between overwintering groups, and was related to length and difficulty of the migratory pathway in freshwater. Results from both network analysis and local Getis G* revealed that, regardless of overwintering location, coastal locations were highly used by fish. Overwintering locations, and the migratory routes to access overwintering locations, affect the timing of freshwater return. Preference of fish for coastal marine locations is likely due to abundance of forage and patterns in break-up of sea ice. Similarities in marine space use and movement patterns present challenges for managing this and other mixed stock fisheries of anadromous Salvelinus spp. Absences or periods of time when fish were not detected prevented comprehensive assessment of movement patterns. Local Getis G*, a local indicator of spatial association, is a helpful tool in identifying locations associated with absences in acoustic telemetry arrays, and is a complementary method to network analysis.
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来源期刊
Movement Ecology
Movement Ecology Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.60
自引率
4.90%
发文量
47
审稿时长
23 weeks
期刊介绍: Movement Ecology is an open-access interdisciplinary journal publishing novel insights from empirical and theoretical approaches into the ecology of movement of the whole organism - either animals, plants or microorganisms - as the central theme. We welcome manuscripts on any taxa and any movement phenomena (e.g. foraging, dispersal and seasonal migration) addressing important research questions on the patterns, mechanisms, causes and consequences of organismal movement. Manuscripts will be rigorously peer-reviewed to ensure novelty and high quality.
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