Comparison of Abundance and Structure of Larval Fish Assemblages between Autumn and Spring in the Waters Surrounding Taiwan Bank, Western North Pacific

Author:

Hsieh Hung-Yen1ORCID,Lee Ming-An23ORCID,Chiu Wei-Lun1,Meng Pei-Jie14

Affiliation:

1. Graduate Institute of Marine Biology, National Dong Hwa University, Pingtung 94450, Taiwan

2. Department of Environmental Biology and Fishery Science, National Taiwan Ocean University, Keelung 20224, Taiwan

3. Center of Excellence for Ocean Engineering, National Taiwan Ocean University, Keelung 20224, Taiwan

4. Taiwan Ocean Research Institute, Kaohsiung City 852, Taiwan

Abstract

The fluctuations in both time and space of larval fish assemblages in relation to hydrographic characteristics in the waters surrounding Taiwan Bank were studied in October 2021 (autumn) and March 2022 (spring). Throughout the study period, we identified a total of 149 taxa of fish larvae, encompassing 96 genera and 71 families. Engraulis japonicus, Diaphus slender type, unidentified Gobiidae, Apogon sp., unidentified Clupeidae, and Benthosema pterotum were the six dominant taxa and together constituted 47.39% of the total catch. There were no notable temporal variations observed in the abundance of fish larvae, but the species number of fish larvae was greater in spring than in autumn. Significant variations in species composition were observed between the different cruises, and the cluster analysis unveiled a distinct temporal structure of the assemblages of fish larvae. The dynamics of the prevailing currents induced by seasonal monsoons contribute significantly to the transportation of fish larvae. The distribution of fish larvae showed a good association with hydrographic characteristics, where seawater temperature and salinity emerged as the primary explanatory factors influencing the composition of larval fish assemblages in the waters surrounding Taiwan Bank. While the increased influx of nutrients from upwelling ensures abundant food availability, the hydrographic conditions may not be suitable for every fish larva.

Funder

National Science Council

Publisher

MDPI AG

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference52 articles.

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