School of Life Science, Shanxi University, 92 Wucheng Road, Taiyuan, 030006, People's Republic of China.
Environ Sci Pollut Res Int. 2014 Feb;21(3):1738-1745. doi: 10.1007/s11356-013-2068-0. Epub 2013 Aug 24.
To explore whether sublethal cadmium (Cd) exposure causes branchial cellular damages and affects the metabolic activity in brachyuran crustaceans, the freshwater crab Sinopotamon henanense was exposed to 0.71, 1.43, and 2.86 mg/L Cd(2+) for 3 weeks. Gill morphology, metabolic activity (activities of isocitrate dehydrogenase (IDH), cytochrome c oxidase (CCO) and lactate dehydrogenase (LDH), mRNA expression of CCO active subunit 1 (cco-1) and ldh, as well as ATP levels) in crab muscle were investigated. The results showed that sublethal Cd exposure caused profound morphological damages in the gills. The branchial epithelial cells were disorganized and vacuolized. Ultrastructurally, a decrease in number of apical microvilli, vacuolized mitochondria, and condensed chromatin were observed in gill epithelial cells. Correspondingly, the Cd exposure also induced downregulations of cco-1 and ldh mRNA expression and reduced activities of IDH, CCO, and LDH, in accordance with the lower ATP level in crab muscle. These results led to the conclusion that gill damage caused by sublethal Cd exposure could lead to an impairment of oxygen uptake of S. henanense, and the inhibition of metabolic activity decreases the oxygen demand of the crab and assists them to survive under the condition of lower oxygen availability. These effects add to our understanding on toxic effects of Cd and survival management of S. henanense subchronically exposed to sublethal Cd.
为了探究亚致死浓度镉(Cd)暴露是否会导致蟹类鳃部细胞损伤,并影响其代谢活性,本研究选择了河南华溪蟹(Sinopotamon henanense)进行了为期 3 周的 0.71、1.43 和 2.86mg/L Cd(2+)暴露实验。实验检测了蟹鳃的形态变化、代谢活性(异柠檬酸脱氢酶(IDH)、细胞色素 c 氧化酶(CCO)和乳酸脱氢酶(LDH)的活性、CCO 活性亚基 1(cco-1)和 ldh 的 mRNA 表达水平以及 ATP 水平)。结果表明,亚致死浓度 Cd 暴露会导致蟹鳃的严重形态损伤,鳃上皮细胞排列紊乱、空泡化。超微结构观察显示,鳃上皮细胞的顶微绒毛数量减少、线粒体空泡化、染色质浓缩。相应地,cco-1 和 ldh 的 mRNA 表达下调,IDH、CCO 和 LDH 的活性降低,蟹肌肉中的 ATP 水平也降低。这些结果表明,亚致死浓度 Cd 暴露导致的鳃损伤可能会降低河南华溪蟹的摄氧能力,代谢活性的抑制降低了蟹的耗氧量,使其能够在低氧环境下生存。这些结果有助于我们理解 Cd 的毒性作用以及河南华溪蟹在亚致死浓度 Cd 暴露下的生存管理。