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Comparative analysis of the energy fluxes and trophic structure of polyculture ecosystems of Portunus trituberculatus based on Ecopath model

机译:基于eCopath模型的Portunus TriTuberculatus Polyculture生态系统能量通量和营养结构的比较分析

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摘要

This study investigated the energy flow and trophic structure of different polyculture ecosystems of the swimming crab Portunus trituberculatus using an Ecopath with Ecosim (EwE) model. Specifically, we aimed to characterize the trophic structure and biomass interactions, in parallel to assessing the energy utilization efficiency, of different ecosystems. Four treatments were designed, including the monoculture of P. trituberculatus (P), bi-species polyculture of P. trituberculatus with white shrimp Litopenaeus vannamei (PL), tri-species polyculture of P. trituberculatus with L. vannamei and short-necked clam Ruditapes philippinarum (PLR), and qua-species polyculture of P. trituberculatus with L. vannamei, R. philippinarum, and Gracilaria lichenoides (PLRG). Fourteen, 16, 17, and 18 functional groups were incorporated into models of the P, PL, PLR, and PLRG ecosystems, respectively. Macrozooplankton, macrobenthos, and Aloidis laevis consistently shared high keystoneness in all ecosystems, generating both bottom-up and top-down effects in all four ecosystems. Most of the total system throughput (TST) of the four ecosystems was distributed in trophic level I and II. The main energy flows were associated with benthic bacteria, bacterioplankton, L. vannamei, and P. trituberculatus in the PL, PLR, and PLRG ecosystems. The PLRG ecosystem has higher redundancy and overhead values than the other three ecosystems, indicating a stronger ability of resisting external perturbations. Overall, the PLRG ecosystem expressed the highest energy utilization efficiency, highest energy exports, and strongest ability of ecosystem stability among the four eco-systems, representing a sustainable P. trituberculatus polyculture pattern.
机译:本研究调查了使用与生态分散(eWE)模型的eCopath的游泳蟹Portunus TriTuberculatus的不同多种植生态系统的能量流动和营养结构。具体而言,我们旨在表征营养结构和生物质相互作用,并平行于评估不同生态系统的能量利用效率。设计了四种处理,包括P. Trituberculatus(P)的单一培养,双种P. Trituberculatus的双种虾型百甲醛Vannamei(PL),具有L.Vannamei和短颈蛤的三种P. Trituberculatus的P. Trituberculatus。 Ruditapes Philippinarum(PLR)和P.Trituberculatus的Qua物种与L.Vannamei,R. philippinarum和Gracilaria lichenoides(PLRG)的P. Trituberculatus。将十四个,16,17和18个官能团掺入P,PL,PLR和PLRG生态系统的模型中。 Macrozooplankton,Macrobenthos和Aloidis Laevis在所有生态系统中始终共享高密钥性,在所有四个生态系统中产生自下而上和自上而下的效果。四个生态系统的大多数系统吞吐量(TST)分布在营养级I和II中。主要能量流动与PL,PLR和PLRG生态系统中的P.Tituberculats有关。 PLRG生态系统的冗余和架空值高于其他三个生态系统,表明抵抗外部扰动的更强能力。总体而言,PLRG生态系统在四个生态系统中表达了最高能源利用效率,最高能源出口和最强的生态系统稳定能力,代表了可持续的P. Trituberculatus Poluvulture模式。

著录项

  • 来源
    《Aquaculture》 |2018年第2018期|共12页
  • 作者单位

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Qingdao 266003 Peoples R China;

    Marine Fishery Technol Guiding Off Ganyu Lianyungang 222100 Peoples R China;

    Chinese Acad Sci Inst Oceanol CAS Key Lab Marine Ecol &

    Environm Sci Qingdao 266071 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Energy flow; Trophic structure; Polyculture; Ecopath model; Portunus trituberculatus;

    机译:能量流动;营养型结构;多种植体;eCopath模型;托勒纳乌斯Trituberculatus;
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