Environmental effects on growth performance of Pacific oyster Crassostrea gigas cultured in the Seto Inland Sea, Japan, from 1990 to 2021

IF 1.9 2区 农林科学 Q2 FISHERIES Fisheries Oceanography Pub Date : 2024-06-29 DOI:10.1111/fog.12686
Yumeng Pang, Tsuneo Ono, Takehiro Tanaka
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Abstract

The Pacific oyster (Crassostrea gigas) has been cultured for its flesh in the Seto Inland Sea, western Japan, over the last half-century. Its production has been reported as ‘fluctuating’, yet little is known about changes in oyster growth performance throughout long-term culturing in this locality. To effectively manage oyster production under future environmental challenges, this study investigated the long-term environmental influences on oyster growth performance. Environmental data and oyster biological data were obtained from observations in Hinase waters, Seto Inland Sea, and compared for the two periods 1990 and 2015–2021. Water temperature has not significantly changed in this locality during the oyster culturing period. Lower salinity was found in July of 2015–2021 due to heavy seasonal rainfall, which had a negative impact on oysters, specifically on survival rate and total weight. A high growth rate and high meat weight at harvest were found in the individuals cultured during the period 2015–2021, yet oyster total weight showed no significant difference. Further research on shell characteristics is required to have a better understanding of oyster growth characteristics.

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环境对 1990 年至 2021 年在日本濑户内海养殖的太平洋牡蛎生长性能的影响
在过去的半个世纪里,日本西部的濑户内海一直在养殖太平洋牡蛎(Crassostrea gigas)以获取其肉质。据报道,牡蛎产量 "起伏不定",但人们对该地区长期养殖过程中牡蛎生长性能的变化知之甚少。为了在未来环境挑战下有效管理牡蛎生产,本研究调查了长期环境对牡蛎生长性能的影响。研究人员从濑户内海日之濑水域的观测数据中获得了环境数据和牡蛎生物数据,并对 1990 年和 2015-2021 年两个时期的数据进行了比较。在牡蛎养殖期间,该水域的水温没有明显变化。2015-2021 年的 7 月,由于季节性降雨量大,盐度较低,这对牡蛎产生了负面影响,特别是对成活率和总重量。在 2015-2021 年期间养殖的牡蛎个体生长速度快,收获时肉重也高,但牡蛎总重量却没有显著差异。为了更好地了解牡蛎的生长特性,需要对贝壳特征进行进一步研究。
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来源期刊
Fisheries Oceanography
Fisheries Oceanography 农林科学-海洋学
CiteScore
5.00
自引率
7.70%
发文量
50
审稿时长
>18 weeks
期刊介绍: The international journal of the Japanese Society for Fisheries Oceanography, Fisheries Oceanography is designed to present a forum for the exchange of information amongst fisheries scientists worldwide. Fisheries Oceanography: presents original research articles relating the production and dynamics of fish populations to the marine environment examines entire food chains - not just single species identifies mechanisms controlling abundance explores factors affecting the recruitment and abundance of fish species and all higher marine tropic levels
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