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地理定位器将海洋汞与整个年度周期内野生海鸟体内的汞水平联系起来:对跨生态系统生物传输的影响。

Geolocators link marine mercury with levels in wild seabirds throughout their annual cycle: Consequences for trans-ecosystem biotransport.

机构信息

Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, 305-8572, Japan.

Department of Natural Resource Sciences, McGill University, Montreal, QC, H9X 3V9, Canada.

出版信息

Environ Pollut. 2021 Sep 1;284:117035. doi: 10.1016/j.envpol.2021.117035. Epub 2021 Mar 30.

Abstract

Seabirds are widely used as indicators of marine pollution, including mercury (Hg), because they track contaminant levels across space and time. However, many seabirds are migratory, and it is difficult to understand the timing and location of their Hg accumulation. Seabirds may obtain Hg thousands of kilometers away, during their non-breeding period, and deposit that Hg into their terrestrial breeding colonies. We predicted that Hg concentration in rectrices reflects exposure during the previous breeding season, in body feathers reflects non-breeding exposure, and in blood collected during breeding reflects exposure during current breeding. To test this hypothesis, we measured total Hg concentration in these three tissues, which reflect different timepoints during the annual cycle of rhinoceros auklets (Cerorhinca monocerata) breeding on both sides of the North Pacific (Middleton Island in Alaska and Teuri Island in Hokkaido), and tracked their wintering movement patterns with biologging devices. We (i) identify the wintering patterns of both populations, (ii) examine Hg levels in different tissues representing exposure at different time periods, (iii) test how environmental Hg exposure during the non-breeding season affects bird contamination, and (iv) assess whether variation in Hg levels during the non-breeding season influences levels accumulated in terrestrial plants. Individuals from both populations followed a figure-eight looping migration pattern. We confirm the existence of a pathway from environmental Hg to plant roots via avian tissues, as Hg concentrations were higher in plants within the auklet colonies than at control sites. Hg concentrations of breast feathers were higher in Alaskan than in Japanese auklets, but Hg concentrations in rectrices and blood were similar. Moreover, we found evidence that tissues with different turnover rates could record local anthropogenic Hg emission rates of areas visited during winter. In conclusion, Hg was transported across thousands of kilometers by seabirds and transferred to local plants.

摘要

海鸟被广泛用作海洋污染的指标,包括汞(Hg),因为它们可以追踪污染物在空间和时间上的水平。然而,许多海鸟是迁徙的,很难了解它们积累 Hg 的时间和地点。海鸟可能在其非繁殖期数千公里之外的地方获得 Hg,并将其沉积到其陆地繁殖地。我们预测,尾羽中的 Hg 浓度反映了上一个繁殖季节的暴露情况,体羽中的 Hg 浓度反映了非繁殖期的暴露情况,而繁殖期采集的血液中的 Hg 浓度反映了当前繁殖期的暴露情况。为了验证这一假设,我们测量了三种组织中的总 Hg 浓度,这三种组织分别反映了北太平洋两侧(阿拉斯加的米德尔顿岛和北海道的鹤居岛)凤头燕鸥繁殖过程中不同的时间点,并用生物定位设备跟踪它们的冬季迁徙模式。我们(i)确定了两个种群的冬季迁徙模式,(ii)检测了不同组织中的 Hg 水平,这些组织代表了不同时期的暴露情况,(iii)检验了非繁殖期环境 Hg 暴露如何影响鸟类的污染情况,以及(iv)评估了非繁殖期 Hg 水平的变化是否会影响在陆地植物中积累的 Hg 水平。两个种群的个体都遵循八字形的循环迁徙模式。我们证实了从环境 Hg 到植物根部的途径确实存在,因为在燕鸥聚居地内的植物中,Hg 浓度高于对照点。阿拉斯加凤头燕鸥的胸羽中 Hg 浓度高于日本凤头燕鸥,但尾羽和血液中的 Hg 浓度相似。此外,我们发现了证据表明,具有不同周转率的组织可以记录在冬季访问的地区的当地人为 Hg 排放率。总之,Hg 被海鸟跨越数千公里运输,并转移到当地植物中。

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