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基于原位富集模拟方法评估野生条件下鲐鱼的生态转换效率

Assessing the Ecological Conversion Efficiency of Chub Mackerel, , in Wild Conditions Based on an In Situ Enriched Simulation Method.

作者信息

Sun Xin, Yu Miao, Tang Qisheng, Sun Yao

机构信息

Key Laboratory for Sustainable Utilization of Marine Fisheries Resources of Ministry of Agriculture, Yellow Sea Fisheries Research Institute, CAFS, 106 Nanjing Road, Qingdao 266071, China.

出版信息

Animals (Basel). 2023 Oct 10;13(20):3159. doi: 10.3390/ani13203159.

Abstract

Understanding the ecological conversion efficiency of a fish species can be used to estimate the potential impact of the marine food web and accordingly provides scientific advice to ecosystem-based fishery management. However, only laboratory experiments may limit the accuracy of determining this index. In this study, food ingestion and ecological conversion efficiency of wild chub mackerel (), a typical marine pelagic fish, were determined with gastric evacuation method in laboratory and in situ enriched simulation conditions. Additionally, the effect of temperature and body weight on ecological conversion efficiency was further estimated based on the 2D interpolation method. The results showed that, at 25.1 °C, the ecological conversion efficiency determined in-lab (35.31%) was significantly higher than in situ (23.85%). Moreover, the interpolation model estimated that with an increase in temperature (10-27 °C), the ecological conversion efficiency initially decreased, followed by an increase when the temperature reached 18 °C, but the ecological conversion efficiency generally decreased against the body weight at each temperature. The findings of this study enhanced the understanding of the energy budget of chub mackerel and also provided an efficient method for the determination of wild fishes that are difficult to sample in situ and domesticate in the laboratory.

摘要

了解鱼类的生态转化效率可用于估计海洋食物网的潜在影响,并据此为基于生态系统的渔业管理提供科学建议。然而,仅通过实验室实验可能会限制该指标测定的准确性。在本研究中,采用胃排空法在实验室和原位富集模拟条件下测定了典型海洋中上层鱼类野生鲐鱼的食物摄入量和生态转化效率。此外,基于二维插值法进一步估计了温度和体重对生态转化效率的影响。结果表明,在25.1℃时,实验室测定的生态转化效率(35.31%)显著高于原位测定的效率(23.85%)。此外,插值模型估计,随着温度升高(10-27℃),生态转化效率最初下降,温度达到18℃时随后上升,但在每个温度下,生态转化效率总体上随体重下降。本研究结果加深了对鲐鱼能量收支的理解,也为测定难以原位采样和在实验室驯化的野生鱼类提供了一种有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13bf/10603723/3a0d08de40bc/animals-13-03159-g001.jpg

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