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北极地区局部到泛北极尺度的海冰小型底栖动物分布。

Sea ice meiofauna distribution on local to pan-Arctic scales.

作者信息

Bluhm Bodil A, Hop Haakon, Vihtakari Mikko, Gradinger Rolf, Iken Katrin, Melnikov Igor A, Søreide Janne E

机构信息

Department of Arctic and Marine Biology Faculty of Biosciences, Fisheries and Economics UiT The Arctic University of Norway Tromsø Norway.

College of Fisheries and Ocean Sciences University of Alaska Fairbanks Fairbanks AK USA.

出版信息

Ecol Evol. 2018 Jan 29;8(4):2350-2364. doi: 10.1002/ece3.3797. eCollection 2018 Feb.

Abstract

Arctic sea ice provides microhabitats for biota that inhabit the liquid-filled network of brine channels and the ice-water interface. We used meta-analysis of 23 published and unpublished datasets comprising 721 ice cores to synthesize the variability in composition and abundance of sea ice meiofauna at spatial scales ranging from within a single ice core to pan-Arctic and seasonal scales. Two-thirds of meiofauna individuals occurred in the bottom 10 cm of the ice. Locally, replicate cores taken within meters of each other were broadly similar in meiofauna composition and abundance, while those a few km apart varied more; 75% of variation was explained by station. At the regional scale (Bering Sea first-year ice), meiofauna abundance varied over two orders of magnitude. At the pan-Arctic scale, the same phyla were found across the region, with taxa that have resting stages or tolerance to extreme conditions (e.g., nematodes and rotifers) dominating abundances. Meroplankton, however, was restricted to nearshore locations and landfast sea ice. Light availability, ice thickness, and distance from land were significant predictor variables for community composition on different scales. On a seasonal scale, abundances varied broadly for all taxa and in relation to the annual ice algal bloom cycle in both landfast and pack ice. Documentation of ice biota composition, abundance, and natural variability is critical for evaluating responses to decline in Arctic sea ice. Consistent methodology and protocols must be established for comparability of meiofauna monitoring across the Arctic. We recommend to (1) increase taxonomic resolution of sea ice meiofauna, (2) focus sampling on times of peak abundance when seasonal sampling is impossible, (3) include the bottom 30 cm of ice cores rather than only bottom 10 cm, (4) preserve specimens for molecular analysis to improve taxonomic resolution, and (5) formulate a trait-based framework that relates to ecosystem functioning.

摘要

北极海冰为生物群落提供了微生境,这些生物栖息在充满液体的盐水通道网络和冰水界面。我们对23个已发表和未发表的数据集进行了荟萃分析,这些数据集包含721个冰芯,以综合分析海冰小型动物群落的组成和丰度在从单个冰芯内部到泛北极以及季节尺度的空间尺度上的变异性。三分之二的小型动物个体出现在冰层底部10厘米范围内。在局部范围内,彼此相距几米采集的重复冰芯在小型动物群落组成和丰度上大致相似,而相距几公里的冰芯则差异更大;75%的变异性可由采样站来解释。在区域尺度(白令海一年生冰)上,小型动物丰度变化超过两个数量级。在泛北极尺度上,整个区域发现了相同的门类,具有休眠阶段或对极端条件有耐受性的类群(如线虫和轮虫)在丰度上占主导地位。然而,海洋浮游幼体仅限于近岸区域和固定海冰。光照可用性、冰厚度和距陆地的距离是不同尺度上群落组成的重要预测变量。在季节尺度上,所有类群的丰度变化很大,并且与固定冰和浮冰中的年度冰藻繁殖周期有关。记录冰生物群落的组成、丰度和自然变异性对于评估北极海冰减少的响应至关重要。必须建立一致的方法和方案,以便在整个北极地区进行小型动物监测时具有可比性。我们建议:(1)提高海冰小型动物的分类分辨率;(2)在无法进行季节性采样时,将采样重点放在丰度峰值时期;(3)采集冰芯底部30厘米而非仅底部10厘米的样本;(4)保存样本用于分子分析以提高分类分辨率;(5)制定一个与生态系统功能相关的基于特征的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0965/5817141/98c8ba7ca429/ECE3-8-2350-g001.jpg

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