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Gill damage and recovery in juvenile black sea bream Acanthopagrus schlegelii stressed by uncontaminated suspended solids

机译:少年黑海鲷鱼的呕吐伤害和恢复acanthopagrus schlegelii强调未受污染的悬浮固体

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Studies on the responses of fish to suspended solids (SS) have focused on freshwater salmonid species, far less is about marine species. In this study, juveniles of black sea bream Acanthopagrus schlegelii were exposed continuously to various concentrations of uncontaminated SS for 10 days to detect gill damage, and then returned to clean seawater without SS for 10 days to detect gill recovery. The results showed that, no clear changes in chloride cells, Na~+-K~+-ATPase activity and DNA damage parameters (comet cell rate, tail length and tail moment) were observed after 10 days of exposure to 100 mg SS/L, while at 1000 mg SS/L these parameters were significantly altered. After the 1000 mg/L SS-treated fish were transferred from water containing SS to clean seawater only, Na~+-K~+-ATPase activity, tail length and tail moment all indicated signs of recovery, but these kinds of recoveries were incomplete and did not return to the control levels. The rapid response and recovery observed in our study show that high concentration uncontaminated SS can induce gill damage of juveniles of A. schlegelii, and this kind of damage is difficult to recover completely.
机译:关于鱼类止悬浮固体(SS)的反应的研究专注于淡水鲑鱼类,远小于海洋物种。在这项研究中,黑海鲷菌根幼儿植物的幼虫连续地暴露于各种浓度的未污染SS 10天以检测鳃损伤,然后返回清洁海水,没有SS的10天才能检测鳃回收。结果表明,在暴露于100mgs / l的10天后,在10天后观察到氯化物细胞,Na〜+ -k〜+ -AtPase活性和DNA损伤参数(彗星率,尾长和尾部长度)的明确变化,虽然在1000mg SS / L的情况下,这些参数显着改变。在1000mg / L SS处理的鱼类从含有SS的水中转移到清洁海水中,Na〜+ -K〜+ -ATPase活性,尾部长度和尾部时刻所有表明恢复迹象,但这些恢复的迹象不完整并且没有返回控制级别。在我们的研究中观察到的快速反应和恢复表明,高浓度的未污染SS可以诱导A. Schlegelii的幼虫的鳃损伤,这种损坏难以完全恢复。

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