厄尔尼诺/拉尼娜对西北太平洋亚热带乱水区和北东中国海中型浮游动物生物量的影响

Q4 Engineering Ocean and Polar Research Pub Date : 2015-09-30 DOI:10.4217/OPR.2015.37.3.189
강형구, 신창웅, 전동철
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引用次数: 0

摘要

研究了2006 - 2014年西北亚热带太平洋暖池(NSPWP)和东北东海(NECS)中浮游动物总生物量、大小分异生物量以及桡足类主要类群的丰度。NSPWP的中浮游动物生物量在0.69 ~ 3.08 mgC/m³(平均1.12 mgC/m³)之间,NECS的中浮游动物生物量在10.60 ~ 69.10 mgC/m³(平均30.33 mgC/m³)之间,春季高于秋季。NSPWP和NECS中浮游动物各大小类群的生物量百分比组成在年际间都有变化。最小粒径组(0.2~0.5 mm)对总生物量的贡献最小,但NSPWP显著高于NECS。桡足类分类类群(Calanoida、cyclopopoida和Poecilostomatoida)的丰度百分比组成也有年际波动。鱿鱼类桡足类的平均组成在NECS高于NSPWP,而拟气孔类桡足类的平均组成则相反。NSPWP和NECS的中浮游动物生物量均与海洋尼诺指数(ONI)呈负相关,表明El Nino期间生物量下降,Na Nina期间生物量反之。厄尔尼诺对中浮游动物生物量变化的影响在NSPWP中比在NECS中更为突出。这些结果表明,NSPWP和NECS的浮游动物生物量都对厄尔尼诺事件有响应,尽管解释这两个地区浮游动物生物量减少的生物过程可能不同。
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엘니뇨/라니냐가 북서태평양 아열대 난수역과 북부동중국해의 중형동물플랑크톤 생체량에 미치는 영향
Mesozooplankton biomass including total biomass and size-fractionated biomass and the abundance of major taxonomic groups of copepods were studied in the Northwestern Subtropical Pacific Warm Pool (NSPWP) and the Northern East China Sea (NECS) from 2006 to 2014. Mesozooplankton biomass ranged from 0.69 to 3.08 mgC/m³ (mean 1.12 mgC/m³) in the NSPWP and from 10.60 to 69.10 mgC/m³ (mean 30.33 mgC/m³) in the NECS with higher values in spring than fall. Percent composition in the biomass of each size group of mesozooplankton varied interannually both in the NSPWP and in the NECS. The smallest size group (0.2~0.5 mm) contributed the least to total biomass in both regions, but significantly higher in the NSPWP than in the NECS. The percent composition in abundance of copepod taxonomic groups (i.e. Calanoida, Cyclopoida, and Poecilostomatoida) also fluctuated interannually. Mean composition of calanoid copepods was higher in the NECS than in the NSPWP, but the opposite pattern was observed for poecilostomatoid copepods. Mesozooplankton biomass both in the NSPWP and in the NECS was negatively correlated with Oceanic Nino Index (ONI), indicating declines in biomass during El Nino periods and vice versa during Na Nina period. The effect of El Nino on variation of mesozooplankton biomass was more prominent in the NSPWP than in the NECS. These results suggest that mesozooplankton biomass both in the NSPWP and in the NECS responded to El Nino events, although the biological process that explain the reduced mesozooplankton biomass might be different in both regions.
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Ocean and Polar Research
Ocean and Polar Research Engineering-Ocean Engineering
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