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南海浮游动物回声的年际变化反映了亚热带和高纬度气候对其的影响。

Interannual changes in zooplankton echo subtropical and high latitude climate effects in the southern East China Sea.

机构信息

GEOMAR-Helmholtz Center for Ocean Research, Kiel, Germany, Marine Ecology/Food Webs, Duesternbrooker Weg 20, Kiel, Germany.

Institut de Recherche pour le Développement (IRD), MARBEC, IRD/CNRS/IFREMER/Univ Montpellier, France.

出版信息

PLoS One. 2018 May 31;13(5):e0197382. doi: 10.1371/journal.pone.0197382. eCollection 2018.

Abstract

Climate variability plays a central role in the dynamics of marine pelagic ecosystems shaping the structure and abundance changes of plankton communities, thereby affecting energy pathways and biogeochemical fluxes in the ocean. Here we have investigated complex interactions driven a climate-hydrology-plankton system in the southern East China Sea over the period 2000 to 2012. In particular, we aimed at quantifying the influence of climate phenomena playing out in tropical (El Nino 3.4) and middle-high latitudes (East Asia Winter Monsoon, EAWM, and Pacific Decadal Oscillation, PDO) on pelagic copepods. We found that the EAWM and El Nino 3.4 showed a non-stationary and non-linear relationship with local temperature variability. In the two cases, the strength of the relationship, as indexed by the wavelet coherence analysis, decreased along with the positive phase of the PDO. Likewise, the influence of EAWM and El Nino3.4 on copepods exhibited a non-stationary link that changed along with the PDO state. Indeed, copepods and EAWM were closely related during the positive phase, while the link copepods-El Nino 3.4 was stronger during the negative phase. Our results pointed out cascading effects from climate to plankton driven by the positive phase of the PDO through its effect on temperature conditions, and likely through a larger southward transport of nutrient-rich water masses to northern Taiwan and the Taiwan Strait. We suggest a chain of mechanisms whereby the PDO shapes interannual dynamics of pelagic copepods and highlight that these results have implications for integrative management measures, as pelagic copepods plays a prominent role in food web dynamics and for harvested fish in the East China Sea.

摘要

气候变率在海洋浮游生态系统的动态中起着核心作用,塑造了浮游生物群落的结构和丰度变化,从而影响了海洋中的能量途径和生物地球化学通量。在这里,我们研究了 2000 年至 2012 年期间在南海驱动气候-水文学-浮游生物系统的复杂相互作用。特别是,我们旨在量化在热带(厄尔尼诺 3.4)和中高纬度(东亚冬季风,EAWM 和太平洋年代际振荡,PDO)发挥作用的气候现象对浮游桡足类的影响。我们发现,EAWM 和厄尔尼诺 3.4 与当地温度变化呈非平稳和非线性关系。在这两种情况下,关系的强度,如小波相干分析所索引的,随着 PDO 的正相而降低。同样,EAWM 和厄尔尼诺 3.4 对桡足类的影响表现出非平稳的联系,这种联系随着 PDO 的状态而变化。事实上,桡足类和 EAWM 在正相期间密切相关,而桡足类-厄尔尼诺 3.4 的联系在负相期间更强。我们的结果指出,PDO 通过其对温度条件的影响,以及可能通过向台湾北部和台湾海峡输送更多富含营养的水团,从气候到浮游生物的级联效应,推动了这种效应。我们提出了一系列机制,PDO 塑造了浮游桡足类的年际动态,并强调这些结果对综合管理措施具有重要意义,因为浮游桡足类在东海食物网动态和捕捞鱼类中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d5e/5979015/3fc8d5a239fe/pone.0197382.g001.jpg

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