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April 18, 2026Ecologies0 citationsOpen Access

Environmental Drivers of Zooplankton Communities in the Tropical Low-Latitude Northwestern Pacific Ocean

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RSRouxin SunMinistry of Natural ResourcesYCYanghang ChenMinistry of Natural ResourcesYYYe YangXi'an University of Science and Technology

Key Points

  • This research aims to identify the environmental factors affecting zooplankton community structure in the Northwestern Pacific Ocean.
  • Conducted field surveys in August 2021 and November 2022.
  • Utilized redundancy analysis to assess influences on community structure.
  • Reported on the distribution of zooplankton in relation to environmental gradients.
  • Identified nitrate, silicate, temperature, and salinity as primary drivers of community structure.
  • Observed higher zooplankton abundance in August 2021 compared to November 2022.
  • Found that seasonal differences in zooplankton dynamics relate to local hydrographic conditions.

Abstract

This study investigates the spatiotemporal dynamics of zooplankton communities in the tropical low-latitude Northwestern Pacific Ocean based on field surveys conducted in August 2021 and November 2022. Redundancy analysis identified nitrate, silicate, temperature, and salinity as the primary factors influencing community structure. The distribution of dominant zooplankton groups exhibited close correlations with key environmental gradients, showing distinct habitat preferences corresponding to different hydrographic conditions. Zooplankton abundance in August 2021 was significantly higher than that in November 2022, which is presumably attributed to eddy-induced nutrient upwelling and enhanced primary productivity. Comparisons with adjacent marine regions reveal general consistency in overall zooplankton abundance and community species composition, while the observed seasonal discrepancies are closely associated with local unique hydrographic characteristics. These results highlight the role of nutrient–temperature–salinity interactions in structuring zooplankton communities and underscore their sensitivity to environmental variability. The findings provide a scientific basis for understanding pelagic ecosystem dynamics in oligotrophic waters and for developing management strategies under changing climate and oceanographic conditions.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/69e321aa40886becb6540bb7https://doi.org/10.3390/ecologies7020036
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