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Extracting DNA from ocean microplastics: a method comparison study

机译:从海洋微塑料中提取DNA:方法比较研究

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摘要

The ubiquity of plastics in oceans worldwide raises concerns about their ecological implications. Suspended microplastics (<5 mm) can be ingested by a wide range of marine organisms and may accumulate up the food web along with associated chemicals. Additionally, plastics provide a stable substrate to a wide range of organisms and, owing to their widespread dispersal, may function as vectors for harmful and invasive species. Despite the growing application of molecular techniques to study ocean microplastic colonizers, to date there is no comparative study on DNA extraction methods for ocean plastic biofilms. The present study aims to fill this gap by comparing DNA yield, amplification efficiency, costs and processing time of different DNA extraction techniques applied to oceanic microplastics. DNA was extracted with five methods (four extraction kits, and standard phenol: chloroform purification) using two mechanical lysis techniques (bead beating and cryogenic grinding with liquid nitrogen) applied to three plastic quantities (1, 15, and 50 fragments per extraction) and size classes (0.05-0.15 and 0.15-0.5 mm). All methods resulted in DNA suitable for downstream applications and were successfully amplified. Overall, the Qiagen Puregene Tissue kit yielded relatively high DNA concentrations for most sizes and amounts of plastics at relatively low costs and short processing time. This study provides a detailed evaluation of DNA extraction methods from ocean plastics, and may assist future research using molecular techniques to study ocean plastic biofilms.
机译:全世界海洋中塑料的普遍性提出了对其生态影响的担忧。悬浮的微塑料(<5mm)可以通过各种海洋生物摄取,并且可以将食物网和相关化学品累积。另外,塑料为各种生物体提供稳定的基材,并且由于其广泛的分散,可以用作有害和侵入物种的载体。尽管分子技术越来越多地研究海洋微塑性殖民者,但迄今为止对海洋塑料生物膜的DNA提取方法没有比较研究。本研究旨在通过比较不同DNA提取技术的DNA产量,扩增效率,成本和加工时间来填充该差距。用五种方法(四种提取试剂盒和标准苯酚:氯仿纯化)用两种机械裂解技术(珠子跳动和低温研磨)萃取DNA,施加到三个塑料量(1,15和每种提取50次)和尺寸类(0.05-0.15和0.15-0.5 mm)。所有方法导致适用于下游应用的DNA并成功扩增。总体而言,Qiagen Puregene组织试剂盒以相对较低的成本和短的加工时间以大多数尺寸和量的塑料产生相对高的DNA浓度。该研究提供了来自海洋塑料的DNA提取方法的详细评估,并且可以使用分子技术来研究海洋塑料生物膜的未来研究。

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  • 来源
    《Analytical methods》 |2017年第9期|共6页
  • 作者单位

    Ocean Cleanup Fdn Martinus Nijhofflaan 2 18th Floor NL-2624 ES Delft Netherlands;

    Univ Vienna Dept Biooceanog &

    Limnol Althanstr 14 A-1090 Vienna Austria;

    Ocean Cleanup Fdn Martinus Nijhofflaan 2 18th Floor NL-2624 ES Delft Netherlands;

    Ocean Cleanup Fdn Martinus Nijhofflaan 2 18th Floor NL-2624 ES Delft Netherlands;

    Ocean Cleanup Fdn Martinus Nijhofflaan 2 18th Floor NL-2624 ES Delft Netherlands;

    Delft Univ Technol Dept Biotechnol Maasweg 9 NL-2629 HZ Delft Netherlands;

    Delft Univ Technol Dept Biotechnol Maasweg 9 NL-2629 HZ Delft Netherlands;

    Ocean Cleanup Fdn Martinus Nijhofflaan 2 18th Floor NL-2624 ES Delft Netherlands;

    Univ Vienna Dept Biooceanog &

    Limnol Althanstr 14 A-1090 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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