National Research Council - Institute for Marine Biological Resources and Biotechnology (CNR IRBIM), SS Mazara del Vallo, Via L. Vaccara 61, 91026, Mazara del Vallo, TP, Italy.
Sci Rep. 2022 Apr 4;12(1):5600. doi: 10.1038/s41598-022-09418-z.
Small pelagic fishes in the Mediterranean Sea constitute about half of the total landings, of which almost one-third is European anchovy. Anchovy abundance mainly depends on early life stage and juvenile survival and growth, which are susceptible to shifts in environmental processes. Due to the commercial importance of this species, it is necessary to elucidate the processes affecting recruitment strength for effective fishery management, using environmental indices to set more appropriate harvesting limits. Here, we constructed a simple index to capture synchronicity between enrichment and retention/concentration processes, which are known to affect anchovy abundance, during the first year of life. Three ecosystems in the Mediterranean were examined: Gulf of Lions, Adriatic Sea, and Strait of Sicily. The synchronicity index (SI) represented the synergic evolution over time of the chlorophyll-a concentration (CHL, enrichment process) and mixed layer depth (MLD, concentration/retention processes), and was related with the abundance of anchovy recruits obtained from published survey reports. Considering different ecosystems, when the SI was significantly higher, anchovy recruitment was promoted. This result indicated SI is consistent across ecosystems in explaining anchovy abundance fluctuations and thus could be used to enhance fisheries management and extended to assess the impact of projected environmental changes.
地中海小型洄游鱼类约占总渔获量的一半,其中近三分之一是欧洲无须鳕。无须鳕的丰度主要取决于早期生活阶段和幼鱼的生存和生长,而这些过程容易受到环境变化的影响。由于该物种的商业重要性,有必要利用环境指标来阐明影响补充强度的过程,以制定更合适的捕捞限额,从而进行有效的渔业管理。在这里,我们构建了一个简单的指数,以捕捉在生命的第一年中,已知会影响无须鳕丰度的富化和保留/浓缩过程之间的同步性。我们研究了地中海的三个生态系统:法国的朗格多克湾、亚得里亚海和西西里海峡。同步性指数(SI)代表了叶绿素 a 浓度(富化过程)和混合层深度(浓缩/保留过程)随时间的协同演变,与从已发表的调查报告中获得的幼鱼丰度有关。考虑到不同的生态系统,当 SI 显著更高时,无须鳕的补充就会增加。这一结果表明,SI 在解释无须鳕丰度波动方面在整个生态系统中是一致的,因此可以用于增强渔业管理,并扩展到评估预测的环境变化的影响。