İzmir湾(土耳其爱琴海)贻贝(Mytilus galloprovincialis, Lamarck 1819)血淋巴、肝脏和鳃细胞微核形成作为遗传毒性评估的生物标志物

Özlem Çakal Arslan, Meltem Boyacıoğlu, Beyza Nalbantlar, Gizem Gülsever, M. Karaaslan
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摘要

海洋包含了各种各样的环境污染物,在水生生态系统中起着至关重要的作用。自20世纪60年代以来,伊兹密尔湾迅速受到污染,是地中海污染最严重的地区之一。有机物质、碳氢化合物、金属和致病生物在该地区积累,造成高污染,威胁健康和美学。因此,本文旨在对伊兹密尔湾贻贝的遗传损伤进行研究。研究致突变/致癌潜力在遗传毒性研究中具有优势,因为贻贝污染暴露的生物标志物可以早期发现可能的长期影响,如癌症。因此,遗传毒性是贻贝生物标志物研究的重点。因此,进行了微核试验,以确定生活在伊兹密尔湾(土耳其西海岸)的紫贻贝(Mytilus galloprovincialis)的血淋巴、肝脏和鳃中的遗传损伤。本研究结果表明,4号站和5号站MN的频率较高,其中船厂废弃物的存在是造成高污染的原因。建议通过使用微核测定法对环境污染进行生物监测,使水生物种在细胞水平上评估污染物毒性影响的程序标准化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micronucleus formation in mussel’ (Mytilus galloprovincialis, Lamarck 1819) haemolymph, liver, and gill cells as a biomarker in the assessment of genotoxicity in İzmir Bay (Aegean Sea, Turkey)
The sea has involved a large variety of environmental contaminants and plays a crucial role in aquatic ecosystems. The Izmir Bay, which has been rapidly polluted since the 1960s, was one of the intensely polluted areas in the Mediterranean. Organic materials, hydrocarbons, metals, and pathogenic organisms that are accumulated in the region, caused high pollution and threaten health and aesthetics. Because of this, the aim of this paper was focus on to investigations of the genetic damages in mussels in Izmir Bay. Investigations of mutagenic/carcinogenic potential have an advantage in genotoxicity studies because biomarker for pollution exposure in mussel is the early detection of possible long-term effects such as cancer. Therefore, genotoxicity was the focus of the biomarker investigations in mussel during the investigations. Thus, micronucleus tests were afforded to determine genetic damage in the haemolymph, liver, and gills of Mytilus galloprovincialis living in Izmir Bay (Western Coast of Turkey). In the present study, results showed that the frequency of MN was found at a high level in station 4 and station 5 where wastes from dockyard existed contributed to the high level of pollution. The recommendation is to standardize procedures for assessment of the toxic impact of pollutants at the cellular level in aquatic species by using micronucleus assays for biomonitoring of environmental pollution.
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