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应激与代谢的生化指标:在海洋生态研究中的应用

Biochemical indicators of stress and metabolism: applications for marine ecological studies.

作者信息

Dahlhoff Elizabeth P

机构信息

Department of Biology and Environmental Studies Institute, Santa Clara University, Santa Clara, California 95053, USA.

出版信息

Annu Rev Physiol. 2004;66:183-207. doi: 10.1146/annurev.physiol.66.032102.114509.

Abstract

Studies investigating the effects of temperature, food availability, or other physical factors on the physiology of marine animals have led to the development of biochemical indicators of growth rate, metabolic condition, and physiological stress. Measurements of metabolic enzyme activity and RNA/DNA have been especially valuable as indicators of condition in studies of marine invertebrates and fishes, groups for which accurate determination of field metabolic rates is difficult. Properly calibrated and applied, biochemical indicators have been successfully used in studies of rocky intertidal ecology, where two decades of experimentation have generated rigorous, testable models for determining the relative influences of biotic and abiotic factors on species distribution, abundance, and interaction. Biochemical indicators of condition and metabolic activity (metabolic enzymes, RNA/DNA) have been used to test nutrient-productivity models by demonstrating tight linkages between nearshore oceanographic processes (such as upwelling) and benthic rocky intertidal ecosystems. Indices of condition and heat stress (heat shock proteins, or Hsps) have begun to be used to test environmental stress models by comparing condition, activity, and Hsp expression of key rocky intertidal predator and prey species. Using biochemical indicators of condition and stress in natural systems holds great promise for understanding mechanisms by which organisms respond to rapid environmental change.

摘要

研究温度、食物可利用性或其他物理因素对海洋动物生理的影响,促使了生长速率、代谢状况和生理应激的生化指标的发展。在海洋无脊椎动物和鱼类的研究中,代谢酶活性和RNA/DNA的测量作为状况指标尤其有价值,因为对于这些生物群体来说,准确测定野外代谢率很困难。经过适当校准和应用,生化指标已成功用于岩石潮间带生态学研究,在该领域,二十年的实验已产生了严谨、可测试的模型,用于确定生物和非生物因素对物种分布、丰度和相互作用的相对影响。通过证明近岸海洋学过程(如上升流)与底栖岩石潮间带生态系统之间的紧密联系,状况和代谢活性的生化指标(代谢酶、RNA/DNA)已被用于检验营养生产力模型。通过比较关键岩石潮间带捕食者和猎物物种的状况、活动和热休克蛋白(Hsps)表达,状况和热应激指标(热休克蛋白)已开始用于检验环境应激模型。在自然系统中使用状况和应激的生化指标,对于理解生物对快速环境变化的响应机制具有很大的前景。

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