首页> 外文期刊>Journal of Environmental Radioactivity >Assessing relative biomarker responses in marine and freshwater bivalve molluscs following exposure to phosphorus 32 (~(32) P): Application of genotoxicological and molecular biomarkers
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Assessing relative biomarker responses in marine and freshwater bivalve molluscs following exposure to phosphorus 32 (~(32) P): Application of genotoxicological and molecular biomarkers

机译:评估暴露于磷32(〜(32)P)之后的海洋和淡水双壳贝类软体动物中的相对生物标志物响应:遗传毒理学和分子生物标志物的应用

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摘要

Anthropogenic radionuclides can enter water bodies through accidental or controlled discharges. In order to assess their potential impact, understanding the link between exposure, tissue specific bioaccumulation and radiation dose rate, to biological or biomarker responses in aquatic biota is required. Adopting an integrated, multi-biomarker, multi-species approach, we have investigated potential biological responses induced by short-lived radionuclide, phosphorus-32 (P-32, radiophosphorus) in two ecologically important mussel species, the freshwater Dreissena polymorpha (DP) and marine Mytilus galloprovincialis (MG). Adult individuals were exposed to P-32 for 10 days, to acquire nominal whole-body average dose rates of 0.10, 1 and 10 mGy d(-1), which encompass a screening value of 10 mu Gy h(-1) (0.24 mGy d(-1)), in accordance with the ERICA tool. Following exposure, a suite of genotoxic biomarkers (DNA damage, gamma-H2AX induction and micronucleus [MN] formation) were measured in gill and digestive gland tissues, along with transcriptional expression of selected stress-related genes in both the species (i.e. hsp70/90, sod, cat and gst). Our results demonstrate the relationship between tissue specific dosimetry, where P-32 induced a dose-dependent increase, and biological responses independent of species. Gene expression analysis revealed little significant variation across species or tissues. Overall, MG appeared to be more sensitive to short-term damage (i.e. high DNA damage and gamma-H2AX induction), particularly in digestive gland. This study contributes to limited knowledge on the transfer and biological impact of radionuclides within differing aquatic systems on a tissue specific level, aiding the development of adequate management and protective strategies.
机译:人为放射性核素可能通过意外或受控排放而进入水体。为了评估其潜在影响,需要了解暴露,组织特异性生物蓄积和辐射剂量率与水生生物区系中生物或生物标志物响应之间的联系。通过采用一种综合的,多生物标志物,多物种的方法,我们研究了在两种生态上重要的贻贝物种淡水德氏多形藻(DP)中由短寿命放射性核素磷32(P-32,放射性磷)诱导的潜在生物反应。和海洋Mytilus galloprovincialis(MG)。成年个体暴露于P-32达10天,获得的全身标称平均剂量率为0.10、1和10 mGy d(-1),其中筛查值为10μGy h(-1)(0.24 mGy d(-1)),符合ERICA工具。暴露后,在g和消化腺组织中测量了一套遗传毒性生物标记物(DNA损伤,γ-H2AX诱导和微核[MN]形成),以及两个物种中选定的应激相关基因的转录表达(即hsp70 / 90,草皮,猫和GST)。我们的结果证明了组织特异性剂量测定法(其中P-32引起剂量依赖性增加)与生物学应答独立于物种之间的关系。基因表达分析表明,物种或组织之间几乎没有显着差异。总体而言,MG似乎对短期损伤(即高DNA损伤和γ-H2AX诱导)更敏感,尤其是在消化腺中。这项研究有助于了解有关不同水生系统内放射性核素在组织特定水平上的转移和生物影响的有限知识,有助于发展适当的管理和保护策略。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2020年第3期|106120.1-106120.13|共13页
  • 作者

  • 作者单位

    Univ Plymouth Sch Biol & Marine Sci Plymouth PL4 8AA Devon England;

    Cefas Weymouth Lab Barrack Rd Weymouth DT4 8UB Dorset England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bivalves; (32)Phosphona; Ionising radiation; Genotoxicity; Gene expression; gamma-H2AX;

    机译:双壳类;(32)Phosphona;电离辐射;遗传毒性基因表达;γ-H2AX;

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