鱼类浮游生物——捕食关系是以色列Kinneret湖浮游生物分布采样方案设计的关键因素

M. Gophen
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引用次数: 5

摘要

分析了Kinneret表层浮游动物生物量分布和鱼类种群评估的长期数据记录。该目标旨在确定目前采样站分布的代表性,以测量整个Kinneret湖浮游动物生物量。先前的研究记录了温度和鱼类捕食对浮游动物密度的影响:水温通过生长速率特征和鱼类捕食。声学调查表明,鱼群大多栖息在外围地区,更不用说Kinneret群岛的中部了。由于鱼类的浮游性,5-7个采样站提供的Pelagial外围浮游甲壳类动物密度较低。然而,只有一个站点显示了浮游动物生物量密度较高的大型中心湖区域。因此,站点平均值和总湖泊测量值都是不正确的。因此,目前Kinneret湖浮游动物总生物量的平均结果被低估了。得出了两个可选的纠正建议:1)在Pelagial地区的中部增加采样站;2) 空中系数(启动子)的站值的使用。
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Fish-Zooplankton—A Predator-Prey Relations as a Key Factor for the Design of Zooplankton Distribution Sampling Program in Lake Kinneret, Israel
Long-term data record of Kinneret Epilimnetic Zooplankton biomass distribution and fish stock assessment was analyzed. The objective is aimed at defining the representativeness of the present sampling stations distribution for the measure of the entire Lake Kinneret zooplankton biomass. Previous studies documented the preeminence of temperature and fish predation impacts on zooplankton density: water temperature through growth rate trait and fish predation. Acoustic surveys indicated that fish shoals are mostly inhabiting the Peripheral region and much less the central part of the Kinneret pelagial. Due to fish zooplanktivory, densities of planktonic crustacean in the Pelagial periphery presented by 5 - 7 sampling stations are low. Nevertheless, large central lake area with higher densities of zooplankton biomass is presented by only one station. Therefore, stations average is incorrect as is total lake measure. The average result as indicated presently as total zooplankton biomass in lake Kinneret is, therefore, underestimated. Two optional corrective suggestions are concluded: 1) Additional sampling stations in the central part of the Pelagial region; 2) Usage of station value of aerial coefficient (promoter).
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