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首页> 外文期刊>Fish & Shellfish Immunology >Modulating effects of orally supplied Euglena gracilis on the physiological responses of the freshwater mussel Diplodon chilensis, exposed to sewage water pollution in a Patagonian river (Argentina)
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Modulating effects of orally supplied Euglena gracilis on the physiological responses of the freshwater mussel Diplodon chilensis, exposed to sewage water pollution in a Patagonian river (Argentina)

机译:口服巴戟鱼对巴塔哥尼亚河(阿根廷)受到污水污染的淡水贻贝Diplodon chilensis的生理反应的调节作用

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摘要

In order to test if orally supplied Euglena sp. cells modulate the physiological status of bivalves during bioremediation procedures, we evaluated the effect of Euglena gracilis diet on the immune response, oxidative balance and metabolic condition of Diplodon chilensis exposed to sewage water pollution. Mussels were fed for 90 days with E. gracilis (EG) or Scenedesmus vacuolatus (SV, control diet), and then exposed for 10 days at three sites along the Pocahullo river basin: 1) an unpolluted site, upstream of the city (control, C); 2) upstream (UpS) and 3) downstream (DoS) from the main tertiary-treated sewage discharge, in the city of San Martin de los Andes, Northwest Patagonia, Argentina. Our results show that the total hemocyte number decreases while pollution load increases along the river course for both, EG and SV mussels. Phagocytic activity is higher in EG mussels than in SV ones under all conditions. Reactive oxygen species (ROS) production in hemocytes increases with the increase in the pollution load, being significantly higher for EG mussels than for SV ones at DoS; no changes are observed for total oxyradical scavenging capacity (TOSC). Hemocytes' viability is increased for E. gracilis diet at C and remains unchanged in this group of mussels when exposed at the polluted sites. Lysosomal membrane stability is higher in EG mussels than in SV ones for all conditions, although it is decreased at polluted sites compared with that at C. Antioxidant (catalase) and detoxifying (gluthatione S-transferase) defenses are generally lower in gills and digestive gland of EG mussels than in SV ones. Lipid peroxidation (TBARS) is evident in gills of EG mussels at C, and in digestive gland of the same group, at all the sites. Gill mass factor (GF) is affected by the E. gracilis diet; it is increased at C and decreased at polluted sites when compared with that of SV ones. Digestive gland mass factor (DGF) is higher in EG mussels than in SV ones. In D. chilensis, continuous and long term feeding with E. gracilis cells favors immune response and reduces the damage caused by sewage pollution exposure on hemocytes. Nevertheless, diet and transplantation procedures may produce negative effects on the oxidative balance of gills and digestive gland and should be taken into account for bioremediation strategies. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了测试是否口服提供了Euglena sp。细胞在生物修复程序中调节双壳类动物的生理状态,我们评估了裸藻对饮食中双沟螯虾的免疫应答,氧化平衡和代谢状况的影响。将贻贝(E. gracilis,EG)或Scenedesmus vacuumlatus(SV,对照饮食)喂食贻贝90天,然后在Pocahullo流域的三个地点将贻贝暴露10天:1)城市上游的一个未被污染的地点(对照组) , C); 2)位于阿根廷西北巴塔哥尼亚西北圣马丁德洛斯安第斯市的主要三次处理污水排放的上游(UpS)和3)下游(DoS)。我们的研究结果表明,EG和SV贻贝沿河道的总血细胞数量减少而污染负荷增加。在所有条件下,EG贻贝的吞噬活性均高于SV贻贝。随着污染负荷的增加,血细胞中的活性氧(ROS)产生增加,在DoS中,EG贻贝明显高于SV贻贝;没有观察到总氧自由基清除能力(TOSC)的变化。在C处,细粒肠球菌饮食的血细胞活力增加,而在受污染的地点暴露的这组贻贝中,血细胞的活力保持不变。在所有条件下,EG贻贝的溶酶体膜稳定性均高于SV贻贝,尽管在污染位点比C有所降低。抗氧化(过氧化氢酶)和解毒(谷胱甘肽S-转移酶)防御通常在g和消化腺中较低。 EG贻贝的数量比SV贻贝的数量大。脂质过氧化(TBARS)在C处的EG贻贝g和所有部位的同一组消化腺中均很明显。 gra质量因子(GF)受埃里希氏菌饮食的影响;与SV相比,它在C处增加而在污染处减少。贻贝的消化腺质量因子(DGF)高于SV贻贝。在D. chilensis中,连续和长期饲喂草食埃希氏菌细胞有利于免疫反应,并减少了污水污染暴露于血细胞所造成的损害。然而,饮食和移植程序可能会对g和消化腺的氧化平衡产生负面影响,因此在生物修复策略中应予以考虑。 (C)2016 Elsevier Ltd.保留所有权利。

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