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首页> 外文期刊>Pacific Science: A Quarterly Devoted to the Biological and Physical Sciences of the Pacific Region >Macrobenthic Biomass and Secondary Production in the Northern East China Sea and the Relative Importance of Environmental Variables
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Macrobenthic Biomass and Secondary Production in the Northern East China Sea and the Relative Importance of Environmental Variables

机译:宏观直播生物量和二次生产在北部东海和环境变量的相对重要性

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Studies on secondary production can lead to a better understanding of the functions of the macrobenthic ecosystem. To determine the secondary production and production-to-biomass ratio (P/B) of the macrobenthic community in the northern East China Sea, we conducted annual investigations in the northern East China Sea from 2012 to 2016. In this study, the secondary production and P/B values of the macrobenthic community in the northern East China Sea, China, were described and analysed using PCA and Spearman rank correlation analysis. A total of 61 species were collected and identified, and the results showed that Polychaeta was the most speciose group. The polychaete Sternaspis scutata and holothurian Acaudina molpadioides were found to be the most important contributors to the total abundance and total biomass across all sampling areas and years. The Spearman rank correlation analysis indicated that community abundance was positively correlated with depth but negatively correlated with dissolved oxygen (DO) and suspended solids (SS). The P/B was much lower than that found in previous reports from this area, mainly due to the collection of large individuals of A. molpadioides from Sanmen Bay. The low P/B value also indicated that more effort and time are needed to rehabilitate the benthic marine ecosystem in this area.
机译:二级产量的研究可以更好地理解宏观直播生态系统的功能。为了确定北方中东大型猕猴桃群落的二级产量和生物质比(P / B),我们在2012年至2016年开始在东海北部的年度调查。在本研究中,二次生产品使用PCA和Spearman等级相关性分析,描述和分析了中国东海北部海洋宏观企业社区的P / B值。收集并鉴定出总共61种,结果表明,Polychaeta是最具种类的组。发现Polychaete Sternaspis Scutata和Holothurian的Acaudina Molpadioides是在所有采样区域的总丰富和总生物量的最重要贡献者。 Spearman等级相关分析表明,群落丰度与深度呈正相关,但与溶解的氧(DO)和悬浮固体(SS)负相关。 P / B远远低于此领域的报告中发现的,主要是由于来自Sanmen Bay的大型莫尔帕基二胺的集合。低P / B值也表明需要更多的努力和时间来恢复该领域的底栖海洋生态系统。

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