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海豹会阻碍波罗的海鳕鱼的恢复吗?

Could seals prevent cod recovery in the Baltic Sea?

机构信息

National Institute for Aquatic Resources, Technical University of Denmark-Aqua, Charlottenlund, Denmark.

出版信息

PLoS One. 2011 May 9;6(5):e18998. doi: 10.1371/journal.pone.0018998.

Abstract

Fish populations are increasingly affected by multiple human and natural impacts including exploitation, eutrophication, habitat alteration and climate change. As a result many collapsed populations may have to recover in ecosystems whose structure and functioning differ from those in which they were formerly productive and supported sustainable fisheries. Here we investigate how a cod (Gadus morhua) population in the Baltic Sea whose biomass was reduced due to a combination of high exploitation and deteriorating environmental conditions might recover and develop in the 21st century in an ecosystem that likely will change due to both the already started recovery of a cod predator, the grey seal Halichoerus grypus, and projected climate impacts. Simulation modelling, assuming increased seal predation, fishing levels consistent with management plan targets and stable salinity, shows that the cod population could reach high levels well above the long-term average. Scenarios with similar seal and fishing levels but with 15% lower salinity suggest that the Baltic will still be able to support a cod population which can sustain a fishery, but biomass and yields will be lower. At present knowledge of cod and seal interactions, seal predation was found to have much lower impact on cod recovery, compared to the effects of exploitation and salinity. These results suggest that dual management objectives (recovery of both seal and cod populations) are realistic but success in achieving these goals will also depend on how climate change affects cod recruitment.

摘要

鱼类种群越来越受到多种人为和自然因素的影响,包括过度捕捞、富营养化、生境改变和气候变化。因此,许多崩溃的种群可能不得不恢复到其曾经生产和支持可持续渔业的结构和功能不同的生态系统中。在这里,我们研究了由于高捕捞和恶化的环境条件的综合影响而减少的波罗的海鳕鱼(Gadus morhua)种群如何在 21 世纪恢复和发展,该生态系统可能会因已经开始恢复的鳕鱼捕食者灰海豹(Halichoerus grypus)和预计的气候影响而发生变化。模拟模型假设海豹捕食增加、捕捞水平与管理计划目标一致且盐度稳定,表明鳕鱼种群可能会达到远高于长期平均水平的高水平。假设海豹和捕捞水平相似但盐度降低 15%的情景表明,波罗的海仍将能够支持能够维持渔业的鳕鱼种群,但生物量和产量将较低。目前对鳕鱼和海豹相互作用的了解表明,与过度捕捞和盐度的影响相比,海豹捕食对鳕鱼恢复的影响要小得多。这些结果表明,双重管理目标(海豹和鳕鱼种群的恢复)是现实的,但实现这些目标的成功还将取决于气候变化如何影响鳕鱼的补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7dc/3090395/a1dc609a8127/pone.0018998.g001.jpg

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