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沿污染梯度暴露的斑马贻贝的细胞能量分配:将细胞效应与更高层次的生物组织联系起来。

Cellular energy allocation in zebra mussels exposed along a pollution gradient: linking cellular effects to higher levels of biological organization.

作者信息

Smolders R, Bervoets L, De Coen W, Blust R

机构信息

Laboratory for Ecophysiology, Biochemistry and Toxicology, University of Antwerp (RUCA), Groenenborgerlaan 171, B-2020 Antwerp, Belgium.

出版信息

Environ Pollut. 2004 May;129(1):99-112. doi: 10.1016/j.envpol.2003.09.027.

Abstract

Organisms exposed to suboptimal environments incur a cost of dealing with stress in terms of metabolic resources. The total amount of energy available for maintenance, growth and reproduction, based on the biochemical analysis of the energy budget, may provide a sensitive measure of stress in an organism. While the concept is clear, linking cellular or biochemical responses to the individual and population or community level remains difficult. The aim of this study was to validate, under field conditions, using cellular energy budgets [i.e. changes in glycogen-, lipid- and protein-content and mitochondrial electron transport system (ETS)] as an ecologically relevant measurement of stress by comparing these responses to physiological and organismal endpoints. Therefore, a 28-day in situ bioassay with zebra mussels (Dreissena polymorpha) was performed in an effluent-dominated stream. Five locations were selected along the pollution gradient and compared with a nearby (reference) site. Cellular Energy Allocation (CEA) served as a biomarker of cellular energetics, while Scope for Growth (SFG) indicated effects on a physiological level and Tissue Condition Index and wet tissue weight/dry tissue weight ratio were used as endpoints of organismal effects. Results indicated that energy budgets at a cellular level of biological organization provided the fastest and most sensitive response and energy budgets are a relevant currency to extrapolate cellular effects to higher levels of biological organization within the exposed mussels.

摘要

暴露于次优环境中的生物体会在代谢资源方面付出应对压力的代价。基于能量预算的生化分析,可用于维持、生长和繁殖的总能量,可能为衡量生物体的压力提供一个灵敏的指标。虽然这个概念很清晰,但将细胞或生化反应与个体、种群或群落水平联系起来仍然很困难。本研究的目的是在野外条件下,通过比较这些反应与生理和生物体终点,验证使用细胞能量预算(即糖原、脂质和蛋白质含量以及线粒体电子传递系统(ETS)的变化)作为一种与生态相关的压力测量方法。因此,在一条以废水为主的溪流中对斑马贻贝(Dreissena polymorpha)进行了为期28天的原位生物测定。沿着污染梯度选择了五个地点,并与附近的(参考)地点进行了比较。细胞能量分配(CEA)作为细胞能量学的生物标志物,而生长范围(SFG)表明对生理水平的影响,组织状况指数和湿组织重量/干组织重量比用作生物体效应的终点。结果表明,生物组织细胞水平的能量预算提供了最快和最敏感的反应,并且能量预算是将细胞效应外推到暴露贻贝内更高生物组织水平的一个相关指标。

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