Luoma S N
Sci Total Environ. 1983 Jun;28:1-22. doi: 10.1016/s0048-9697(83)80004-7.
The physiological characteristics of the environmental interface of organisms determine the metal forms of highest bioavailability. Studies of metal uptake from solution by aquatic organisms verify the high availability of free metal ions. Metals also are accumulated from food by many aquatic organisms, as indicated by both laboratory and field studies. The quantitative importance of the food vector depends upon biological availability, which differs with the specific type of food being ingested. Uptake from both food and solute vectors may be influenced by interactions among cations, pH, redox, temperature and physiological variables. Separating their relative importance through a basic understanding of these processes will be a necessary prerequisite to understanding metal impacts in natural systems.
生物体环境界面的生理特性决定了生物可利用性最高的金属形态。水生生物从溶液中摄取金属的研究证实了游离金属离子具有很高的生物可利用性。实验室和野外研究均表明,许多水生生物也会从食物中积累金属。食物载体的定量重要性取决于生物可利用性,而生物可利用性会因所摄取食物的具体类型而异。食物载体和溶质载体的摄取都可能受到阳离子、pH值、氧化还原、温度和生理变量之间相互作用的影响。通过对这些过程的基本了解来区分它们的相对重要性,将是理解自然系统中金属影响的必要前提。