首页> 外文期刊>Hydrobiologia >Experimental study of trophic cascade effect of silver carp (Hypophthalmichthys molitrixon) in a subtropical lake, Lake Donghu: on plankton community and underlying mechanisms of changes of crustacean community
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Experimental study of trophic cascade effect of silver carp (Hypophthalmichthys molitrixon) in a subtropical lake, Lake Donghu: on plankton community and underlying mechanisms of changes of crustacean community

机译:亚热带湖东湖Lake鱼营养级联效应的实验研究:对浮游生物群落和甲壳动物群落变化的潜在机制

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摘要

An enclosure experiment was carried out to test trophic cascade effect of filter-feeding fish on the ecosystem: growth of crustacean zooplankton, and possible mechanism of changes of crustacean community structure. Four fish biomass levels were set as follows: 0, 116, 176 and 316 g m-2, and lake water (containing ca. 190 g m-2 of filter-feeding fishes) was comparatively monitored. Nutrient levels were high in all treatments during the experiment. Lowest algal biomass were measured in fishless treatment. Algal biomass decreased during days 21–56 as a function of fish biomass in treatments of low (LF), medium (MF) and high (HF) fish biomass. Crustaceans biomass decreased with increasing fish biomass. Small-bodied cladocerans, Moina micrura, Diaphanosoma brachyurum and Scapholeberis kingii survived when fish biomass was high whilst, large-bodied cladocerans Daphnia spp. and the cyclopoids Theromcyclops taihokuensis, T. brevifuratus, Mescyclops notius and Cyclops vicinus were abundant only in NF enclosures. Evasive calanoid Sinodiaptomus sarsi was significantly enhanced in LF, but decreased significantly with further increase of fish biomass. Demographic data indicated that M. micrura was well developed in all treatments. Our study indicates that algal biomass might be controlled by silver carp biomass in eutrophic environment. Changes of crustacean community are probably affected by the age of the first generation of species. Species with short generation time were dominant and species with long generation time survived less with high fish biomass. Evasive calanoids hardly developed in treatments with high fish biomass because of the (bottle neck) effect of nauplii. Species abundance were positively related to fish predation avoidance. Other than direct predation, zooplankton might also be suppressed by filter-feeding fish via competition.
机译:进行了围捕实验,以测试滤食鱼对生态系统的营养级联效应:甲壳动物浮游动物的生长以及甲壳动物群落结构变化的可能机制。设定了四种鱼类生物量水平,分别为:0、116、176和316 g m-2 ,并比较监测了湖水(含约190 g m-2 滤食鱼)。 。在实验过程中,所有处理的营养水平都很高。在无鱼处理中测得的藻类生物量最低。在低(LF),中(MF)和高(HF)鱼生物量处理中,藻类生物量在21-56天期间随鱼生物量的变化而减少。甲壳类生物量随鱼类生物量的增加而减少。当鱼的生物量较高时,小型的锁骨,Moina micrura,Briachyrosum Diachyosoma brachyurum和金丝雀(Scapholeberis kingii)可以存活,而大型的锁骨水蚤(Daphnia spp)则存活。仅在NF圈内,特有的环孢菌Theromcyclops taihokuensis,T。brevifuratus,Mescyclops notius和Cyclops vicinus丰富。 LF中明显逃逸的类胡萝卜素Sinodiaptomus sarsi明显增强,但随着鱼类生物量的进一步增加而显着下降。人口统计数据表明,在所有处理中,米氏支原体均发育良好。我们的研究表明,在富营养化环境中藻类生物量可能受might鱼生物量控制。甲壳动物群落的变化可能受第一代物种年龄的影响。鱼类生物量高时,世代时间短的物种占主导地位,世代时间长的物种存活较少。由于无节幼体(瓶颈)的作用,在鱼类生物量较高的处理中很难开发出逃避性的类钙烷。物种丰富度与避免鱼类捕食呈正相关。除直接捕食外,浮游生物也可能通过竞争性过滤喂食鱼类而受到抑制。

著录项

  • 来源
    《Hydrobiologia》 |2002年第1期|19-31|共13页
  • 作者单位

    The Research Center of Environmental Science of Wuhan Science Technology Institute;

    Donghu Experimental Station of Lake Ecosystems State Key Laboratory for Freshwater Ecology and Biotechnology of China Institute of Hydrobiology the Chinese Academy of Sciences;

    Donghu Experimental Station of Lake Ecosystems State Key Laboratory for Freshwater Ecology and Biotechnology of China Institute of Hydrobiology the Chinese Academy of Sciences;

    Donghu Experimental Station of Lake Ecosystems State Key Laboratory for Freshwater Ecology and Biotechnology of China Institute of Hydrobiology the Chinese Academy of Sciences;

    Donghu Experimental Station of Lake Ecosystems State Key Laboratory for Freshwater Ecology and Biotechnology of China Institute of Hydrobiology the Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    trophic cascade effect; silver carp; crustacean zooplankton; algal biomass; age of first generation;

    机译:营养级联效应;银鲤;甲壳类浮游动物;藻类生物量;第一代年龄;

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