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陆地生态系统中重金属过剩的生物指示。

Bioindication of a surplus of heavy metals in terrestrial ecosystems.

机构信息

Biological Laboratory, The Free University, P.O. Box 7161, 1007 MC, Amsterdam, The Netherlands.

出版信息

Environ Monit Assess. 1983 Sep;3(3-4):297-305. doi: 10.1007/BF00396224.

Abstract

A survey of the methods of boindication of heavy metals in terrestrial ecosystems and their effectiveness for predicting the consequences of environmental stress on organisms is presented. Two main inputs of heavy metals for terrestrial ecosystems have been considered: airborne and soil-borne.Airborne metals can be monitored due to physical adsorption on plant surfaces or due to chemical exchange processes in cell walls. Active biomonitoring widely uses both aspects, however, without predictive values.Meaningful bioindication of soilborne heavy metals can only be achieved by passive monitoring. Due to the different functions of heavy metals in organisms-micronutrients and trace elements-the knowledge of natural background values is important, considering the qualitative aspects of metals in the soil. In exceptional situations morphological and anatomical changes of plant organs will facilitate bioindication; in every case chemical analysis of the concentration of heavy metals is an essential part of the monitoring program.A long-term exposure of organisms to heavy metals will influence the genetic structure of populations. Therefore measurement of heavy metal tolerance of plants has to be a standard procedure in monitoring programs.

摘要

本文综述了测定陆地生态系统中重金属结合态的方法及其对预测环境胁迫对生物影响的有效性。主要考虑了陆地生态系统中重金属的两种主要输入途径:空气传播和土壤传播。由于植物表面的物理吸附或细胞壁中的化学交换过程,空气中的金属可以得到监测。主动生物监测广泛利用了这两个方面,但没有预测值。只有通过被动监测才能对土壤中重金属进行有意义的生物指示。由于重金属在生物体内的不同功能(微量元素和痕量元素),考虑到土壤中金属的定性方面,了解自然背景值很重要。在特殊情况下,植物器官的形态和解剖学变化将有助于生物指示;在任何情况下,重金属浓度的化学分析都是监测计划的重要组成部分。生物体长期接触重金属会影响种群的遗传结构。因此,测量植物对重金属的耐受性必须成为监测计划中的标准程序。

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