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水生生物中微量元素的营养转移:动力学模型方法的批判

Trace element trophic transfer in aquatic organisms: a critique of the kinetic model approach.

作者信息

Reinfelder J R, Fisher N S, Luoma S N, Nichols J W, Wang W X

机构信息

Department of Environmental Sciences, Rutgers University, New Brunswick, NJ 08901-8551, USA.

出版信息

Sci Total Environ. 1998 Aug 28;219(2-3):117-35. doi: 10.1016/s0048-9697(98)00225-3.

Abstract

The bioaccumulation of trace elements in aquatic organisms can be described with a kinetic model that includes linear expressions for uptake and elimination from dissolved and dietary sources. Within this model, trace element trophic transfer is described by four parameters: the weight-specific ingestion rate (IR); the assimilation efficiency (AE); the physiological loss rate constant (ke); and the weight-specific growth rate (g). These four parameters define the trace element trophic transfer potential (TTP = IR.AE/[ke + g]) which is equal to the ratio of the steady-state trace element concentration in a consumer due to trophic accumulation to that in its prey. Recent work devoted to the quantification of AE and ke for a variety of trace elements in aquatic invertebrates has provided the data needed for comparative studies of trace element trophic transfer among different species and trophic levels and, in at least one group of aquatic consumers (marine bivalves), sensitivity analyses and field tests of kinetic bioaccumulation models. Analysis of the trophic transfer potentials of trace elements for which data are available in zooplankton, bivalves, and fish, suggests that slight variations in assimilation efficiency or elimination rate constant may determine whether or not some trace elements (Cd, Se, and Zn) are biomagnified. A linear, single-compartment model may not be appropriate for fish which, unlike many aquatic invertebrates, have a large mass of tissue in which the concentrations of most trace elements are subject to feedback regulation.

摘要

水生生物中微量元素的生物累积可用一个动力学模型来描述,该模型包含从溶解态和食物源摄取及消除微量元素的线性表达式。在这个模型中,微量元素的营养级传递由四个参数描述:单位体重摄食率(IR);同化效率(AE);生理损失率常数(ke);以及单位体重生长率(g)。这四个参数定义了微量元素营养级传递潜力(TTP = IR·AE/[ke + g]),它等于消费者因营养级累积导致的稳态微量元素浓度与其猎物中该浓度的比值。最近致力于量化水生无脊椎动物中多种微量元素的AE和ke的研究,为不同物种和营养级之间微量元素营养级传递的比较研究提供了所需数据,并且在至少一组水生消费者(海洋双壳贝类)中,还进行了动力学生物累积模型的敏感性分析和实地测试。对浮游动物、双壳贝类和鱼类中已有数据的微量元素营养级传递潜力的分析表明,同化效率或消除率常数的微小变化可能决定某些微量元素(镉、硒和锌)是否会发生生物放大。线性单室模型可能不适用于鱼类,因为与许多水生无脊椎动物不同,鱼类有大量组织,其中大多数微量元素的浓度受到反馈调节。

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