State Key Laboratory of Mariculture Biobreeding and Sustainable Goods, Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, Shandong, 266071, China; Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao Marine Science and Technology Center, Qingdao, Shandong 266237, China.
State Key Laboratory of Mariculture Biobreeding and Sustainable Goods, Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, Shandong, 266071, China; Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao Marine Science and Technology Center, Qingdao, Shandong 266237, China.
Mar Environ Res. 2024 Jun;198:106558. doi: 10.1016/j.marenvres.2024.106558. Epub 2024 May 15.
The coastal aquaculture areas have been subject to a variety of anthropogenic pressures in recent studies, and reasonable environmental quality assessment is essential for both ecological conservation and production practices. However, there are significant differences between the results produced from various environmental quality assessment regarding the focus of the evaluation and the fundamental methodology. Furthermore, many of these methods are very specific and difficult to adapt to general applications. Here, we utilized the Modelling-Ongrowing fish farms-Monitoring B investigation system (MOM-B), we assessed the benthic habitat quality of benthic bivalve aquaculture areas in the Xiaoqing River estuary located in Laizhou Bay, China. The aim was to validate the accuracy and practicality of this system. The biological, chemical, and sensory parameters of the MOM-B system, temperature, chlorophyll a (Chl-a), food availability, and planktonic larvae were evaluated throughout the investigation area during the summer of 2021. The MOM-B results indicated that the benthic habitat quality in the survey area was good and lightly disturbed, but the quality in the middle tide area began to deteriorate in August, the hottest month of the summer. Environmental factors indicated that the combined effects of high temperatures and fine sedimentation had led to increased environmental stress in the middle tide area. Food availability and population recruitment also suggested that the benthic habitat quality was better in the high tide and low tide areas than in the middle tide area, and more favorable for the survival of Manila clams. The accuracy, sensitivity, and discriminatory ability of the MOM-B system were demonstrated by environmental and biological indicators. This work showed that the MOM-B system is a practical, simple, and sensitive environmental assessment tool that is easy to implement in estuarine and benthic bivalve aquaculture areas. It can be used for long-term continuous monitoring and as an early warning tool for benthic habitat quality.
在最近的研究中,沿海水产养殖区受到了各种人为压力的影响,因此,进行合理的环境质量评估对于生态保护和生产实践都至关重要。然而,不同的环境质量评估方法在评估重点和基本方法上存在显著差异。此外,许多这些方法非常具体,难以适应一般应用。在这里,我们利用模型-养殖鱼场-监测 B 调查系统(MOM-B)评估了中国莱州湾小清河口贝类养殖区的底栖生境质量。目的是验证该系统的准确性和实用性。在 2021 年夏季,通过对整个调查区域进行生物、化学和感官参数(MOM-B 系统的温度、叶绿素 a(Chl-a)、食物可用性和浮游幼虫)评估。MOM-B 的结果表明,调查区域的底栖生境质量良好,仅受到轻度干扰,但在夏季最热的 8 月,中潮区的质量开始恶化。环境因素表明,高温和细沉积物的综合影响导致中潮区环境压力增加。食物可用性和种群补充也表明,与中潮区相比,高潮区和低潮区的底栖生境质量更好,更有利于马尼拉蛤的生存。环境和生物指标证明了 MOM-B 系统的准确性、敏感性和区分能力。这项工作表明,MOM-B 系统是一种实用、简单、敏感的环境评估工具,易于在河口和底栖贝类养殖区实施。它可用于长期连续监测,并作为底栖生境质量的预警工具。