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首页> 外文期刊>Aquatic Toxicology >Cumulative effects of cadmium and natural stressors (temperature and parasite infection) on molecular and biochemical responses of juvenile rainbow trout
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Cumulative effects of cadmium and natural stressors (temperature and parasite infection) on molecular and biochemical responses of juvenile rainbow trout

机译:镉和天然压力源(温度和寄生虫感染)对少年虹鳟的分子和生化反应的累积作用

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The simultaneous presence of natural and anthropogenic stressors in aquatic ecosystems can challenge the identification of factors causing decline in fish populations. These stressors include chemical mixtures and natural abiotic and biotic factors such as water temperature and parasitism. Effects of cumulative stressors may vary from antagonism to synergism at the organismal or population levels and may not be predicted from exposure to individual stressors. This study aimed to evaluate the combined effects of chronic exposure to cadmium (Cd) and elevated water temperature (23 degrees C) or parasite infection in juvenile rainbow trout (Oncorhynchus mykiss) using a multi-level biological approach, including RNA-sequencing. Fish were exposed to diet-borne Cd (6 mu g Cd/g wet feed), individually and in combination with thermal (23 degrees C) or parasitic stressors, for 28 days. The parasite challenge consisted of a single exposure to glochidia (larvae) of the freshwater mussel (Strophitus undulatus), which encysts in fish gills, fins and skin. Results indicated lower fish length, weight, and relative growth rate in fish exposed to a higher water temperature (23 degrees C). Body condition and hepatosomatic index of trout were, however, higher in the 23 degrees C temperature treatment compared to the control fish kept at 15 degrees C. Exposure to thermal stress or parasitism did not influence tissue Cd bioaccumulation. More than 700 genes were differentially transcribed in fish exposed to the individual thermal stress treatment. However, neither Cd exposure nor parasite infection affected the number of differentially transcribed genes, compared to controls. The highest number of differentially transcribed genes (969 genes) was observed in trout exposed to combined Cd and high temperature stressors; these genes were mainly related to stress response, protein folding, calcium metabolism, bone growth, energy metabolism, and immune system; functions overlapped with responses found in fish solely exposed to higher water temperature. Only 40 genes were differentially transcribed when fish were exposed to Cd and glochidia and were related to the immune system, apoptosis process, energy metabolism and malignant tumor. These results suggest that dietary Cd may exacerbate the temperature stress and, to a lesser extent, parasitic infection stress on trout transcriptomic responses. Changes in the concentrations of liver ethoxyresorufin-o-deethylase, heat shock protein 70 and thiobarbituric acid reactive substances coupled to changes in the activities of cellular glutathione S-transferase and glucose-6-phosphate dehydrogenase were also observed at the cellular level. This study may help understand effects of freshwater fish exposure to cumulative stressors in a changing environment.
机译:水生生态系统中的天然和人为压力源的同时存在可能挑战导致鱼群衰落的因素的鉴定。这些压力源包括化学混合物和天然非生物和生物因子,如水温和寄生。累积压力源的影响可能因来自机构或人口水平的拮抗作用而异,并且可能无法从暴露于个体压力源。本研究旨在评估慢性暴露于镉(CD)和升高水温(23摄氏度)(23摄氏度)或寄生虫感染的组合效果使用多级生物方法,包括RNA测序。将鱼暴露于饮食传播的CD(6μgcd/ g湿进料),单独地和与热(23℃)或寄生应激源组合28天。寄生虫挑战包括淡水贻贝(Strophitus Undulatulatus)的Groochidia(幼虫)的单一接触,这在鱼鳃,翅片和皮肤中封口。结果表明鱼的较低,重量和暴露于较高水温(23℃)的鱼中的相对生长速率。然而,与在15摄氏度保持在15摄氏度的对照鱼相比,23摄氏度的温度处理中的身体状况和肝脏催化剂指数较高。暴露于热应激或寄生率没有影响组织CD生物累积。在暴露于单个热应力处理的鱼中,超过700个基因差异转录。然而,与对照相比,既不是CD曝光也不影响差异转录基因的数量。在暴露于CD和高温resuals的鳟鱼中观察到最多的差异转录的基因(969基因);这些基因主要与应激反应,蛋白质折叠,钙代谢,骨生长,能量代谢和免疫系统有关;与鱼类中发现的响应重叠的功能,仅暴露在更高的水温下。当鱼暴露于CD和Glochidia时,只有40个基因差异转录,并且与免疫系统,凋亡过程,能量代谢和恶性肿瘤有关。这些结果表明,膳食CD可以加剧温度胁迫,并且在较小程度上,寄生感染鳟鱼转录组反应的寄生感染胁迫。在细胞水平下,还观察到肝脏乙醇酸荷磺酸盐浓度,热休克蛋白70和含有葡萄糖-6-磷酸脱氢酶活性的变化的浓度的浓度。本研究可能有助于了解淡水鱼暴露在变化环境中累积压力源的影响。

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