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在热应激下连接大型溞的多个生物标志物反应。

Linking multiple biomarker responses in Daphnia magna under thermal stress.

机构信息

Department of Environmental Science, Sukanta Mahavidyalaya, University of North Bengal, Dhupguri, West Bengal, India.

Division of Environmental Science and Ecological Engineering, Korea University, Seoul, 02841, Republic of Korea.

出版信息

Environ Pollut. 2020 Aug;263(Pt B):114432. doi: 10.1016/j.envpol.2020.114432. Epub 2020 Mar 27.

Abstract

Temperature is an important abiotic variable that greatly influences the performance of aquatic ectotherms, especially under current anthropogenic global warming and thermal discharges. The aim of the present study was to evaluate thermal stress (20 °C vs 28 °C) in Daphnia magna over 21 d, focusing on the linkage among molecular and biochemical biomarker responses. Thermal stress significantly increased the levels of reactive oxygen species (ROS) and lipid peroxidation, especially in the 3-d short-term exposure treatment. This change in the ROS level was also correlated with mitochondrial membrane damage. These findings suggest that oxidative stress is the major pathway for thermally-induced toxicity of D. magna. Additionally, the expression levels of genes related to hypoxia (Hb), development (Vtg1), and sex determination (Dsx1-α, Dsx1-β, and Dsx2) were greatly increased by elevated temperature in a time-dependent manner. The cellular energy allocation was markedly decreased at the elevated temperature in the 3-d exposure treatment, mainly due to carbohydrates consumption for survival (oxidative stress defense). The present study showed that linking multiples biomarker responses are crucial for understanding the underlying mechanism of thermal stress on D. magna.

摘要

温度是一种重要的非生物变量,它极大地影响着水生变温动物的表现,特别是在当前人为的全球变暖以及热排放的情况下。本研究的目的是评估 21 天内大型溞(Daphnia magna)受到的热应激(20°C 与 28°C),重点关注分子和生化生物标志物反应之间的联系。热应激显著增加了活性氧(ROS)和脂质过氧化的水平,尤其是在 3 天的短期暴露处理中。ROS 水平的这种变化也与线粒体膜损伤有关。这些发现表明,氧化应激是大型溞受热诱导毒性的主要途径。此外,与缺氧(Hb)、发育(Vtg1)和性别决定(Dsx1-α、Dsx1-β 和 Dsx2)相关的基因的表达水平在受热时以时间依赖的方式显著增加。在 3 天的暴露处理中,高温导致细胞能量分配明显减少,主要是因为为了生存(氧化应激防御)而消耗了碳水化合物。本研究表明,联系多种生物标志物反应对于理解热应激对大型溞的潜在机制至关重要。

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Linking multiple biomarker responses in Daphnia magna under thermal stress.在热应激下连接大型溞的多个生物标志物反应。
Environ Pollut. 2020 Aug;263(Pt B):114432. doi: 10.1016/j.envpol.2020.114432. Epub 2020 Mar 27.

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