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不同生境下短须裂腹鱼应激相关基因的转录响应及其在水生态系统生物监测中的应用

Transcriptional Responses of Stress-Related Genes in Pale Chub () Inhabiting Different Aquatic Environments: Application for Biomonitoring Aquatic Ecosystems.

机构信息

Department of Ocean Integrated Science, Chonnam National University, Yeosu 59626, Korea.

Fisheries Science Institute, Chonnam National University, Yeosu 59626, Korea.

出版信息

Int J Environ Res Public Health. 2022 Sep 12;19(18):11471. doi: 10.3390/ijerph191811471.

Abstract

Pale chub () is a dominant species in urban rivers and reservoirs, and it is used as an indicator to monitor the effects of environmental contaminants. Gene responses at the molecular level can reflect the health of fish challenged with environmental stressors. The objective of this study was to identify correlations between water quality factors and the expression of stress-related genes in from different lake environments (Singal and Juam Lakes). To do so, transcriptional responses of genes involving cellular homeostasis (heat-shock protein 70, ; heat-shock protein 90, ), metal detoxification (metallothionein, ), and antioxidation (superoxide dismutase, ; catalase, ) were analyzed in the gill and liver tissues of . , , and genes were overall upregulated in from Singal Lake, which suffered from poorer water quality than Juam Lake. In addition, gene responses were significantly higher in Singal Lake outflow. Upregulation of , , and was significantly higher in gills than in the liver tissue. In addition, integrated biomarker response and heatmap analysis determined correlations between expression of biomarker genes or water quality factors and sampling sites of both lakes. These results suggest that stress-related genes used as multiple biomarkers may reflect spatial characteristics and water quality of different lake environments, and they can be used for biomonitoring and ecological risk assessment.

摘要

苍白匙吻鲟()是城市河流和水库中的优势物种,常被用作指示物来监测环境污染物的影响。分子水平上的基因反应可以反映出鱼类在受到环境胁迫时的健康状况。本研究的目的是确定来自不同湖泊环境(辛格尔湖和朱阿姆湖)的基因表达与水质因子之间的相关性。为此,分析了参与细胞内稳态的基因(热休克蛋白 70,;热休克蛋白 90,)、金属解毒(金属硫蛋白,)和抗氧化(超氧化物歧化酶,;过氧化氢酶,)在苍白匙吻鲟的鳃和肝脏组织中的转录反应。与水质较好的朱阿姆湖相比,来自水质较差的辛格尔湖的苍白匙吻鲟的、和基因总体呈上调表达。此外,辛格尔湖的流出物中的基因反应更高。与肝脏组织相比,苍白匙吻鲟的鳃中、和基因的上调表达更高。此外,综合生物标志物反应和热图分析确定了两个湖泊的生物标志物基因或水质因子的表达与采样点之间的相关性。这些结果表明,用作多种生物标志物的应激相关基因可能反映了不同湖泊环境的空间特征和水质,可以用于生物监测和生态风险评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/977b/9517483/10bc55e49b6d/ijerph-19-11471-g001.jpg

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