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利用生化标志物评估施加温度胁迫对淡水十足目甲壳动物的影响:以四脊滑螯虾为例

Using biochemical markers to assess the effects of imposed temperature stress on freshwater decapod crustaceans: Cherax quadricarinatus as a test case.

作者信息

Bone J W P, Renshaw G M C, Furse J M, Wild C H

机构信息

Environmental Futures Research Institute, Griffith School of Environment, Gold Coast Campus, Griffith University, Gold Coast, QLD, 4222, Australia,

出版信息

J Comp Physiol B. 2015 Apr;185(3):291-301. doi: 10.1007/s00360-014-0883-3. Epub 2014 Dec 21.

Abstract

The effects of thermal stress can impact negatively on the abundance and distribution of temperature-sensitive species, particularly freshwater crustaceans. This study investigated the effects of thermal stress on physiological and biochemical parameters at five treatment temperatures resulting in minimal (25 °C), moderate (27, 29 °C) or severe (31, 33 °C) thermal stress in the common tropical freshwater crayfish Cherax quadricarinatus. The aim was to develop a suite of stress-sensitive assays to use on threatened populations of freshwater crustaceans, particularly those restricted to cooler temperatures and only found in high altitude refugia. Significant increases in indicators of oxidative and metabolic stress were observed at 29 °C and were elevated further at 33 °C. After a 50-day acclimation to an imposed temperature stress, significant changes in the level of total glutathione, total lipids, muscular protein, total haemocyte count, lipid peroxidation and protein carbonyls were observed between treatments while superoxide dismutase activity and haemolymph protein concentrations did not change. The data provided proof of concept that measuring key biochemical responses to high temperature can provide a means of contrasting the level of thermal stress experienced between individuals of the same species adapted to different temperatures. The methods developed are expected to be of use in research on wild populations of other freshwater poikilothermic organisms, particularly those susceptible to increased environmental temperatures associated with climate change.

摘要

热应激的影响会对温度敏感物种的数量和分布产生负面影响,尤其是淡水甲壳类动物。本研究调查了热应激对普通热带淡水小龙虾四脊滑螯虾在五个处理温度下生理和生化参数的影响,这些温度导致了最小(25℃)、中度(27、29℃)或重度(31、33℃)热应激。目的是开发一套应激敏感试验,用于濒危淡水甲壳类动物种群,特别是那些局限于较凉爽温度且仅在高海拔避难所发现的种群。在29℃时观察到氧化应激和代谢应激指标显著增加,在33℃时进一步升高。在对施加的温度应激进行50天的驯化后,各处理之间总谷胱甘肽水平、总脂质、肌肉蛋白、总血细胞计数、脂质过氧化和蛋白质羰基化水平出现显著变化,而超氧化物歧化酶活性和血淋巴蛋白浓度没有变化。这些数据提供了概念验证,即测量对高温的关键生化反应可以提供一种方法,用于对比适应不同温度的同一物种个体所经历的热应激水平。所开发的方法有望用于其他淡水变温生物野生种群的研究,特别是那些易受与气候变化相关的环境温度升高影响的生物。

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