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Factors affecting the presence of human-associated and fecal indicator real-time quantitative PCR genetic markers in urban-impacted recreational beaches

机译:影响城市相关休闲海滩中人类相关和粪便指示剂实时定量PCR遗传标记物存在的因素

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摘要

Urban runoff can carry a variety of pollutants into recreational beaches, often including bacterial pathogens and indicators of fecal contamination. To develop complete recreational criteria and risk assessments, it is necessary to understand conditions under which human contamination could be present at beaches solely impacted by urban runoff. Accurately estimating risk requires understanding sources, concentrations, and transport mechanisms of microbial contaminants in these environments. By applying microbial source tracking methods and empirical modeling, we assessed the presence and level of human contamination at urban runoff impacted recreational beaches. We also identified environmental parameters and pollution sources that can influence the concentration and transport of culturable and molecular fecal indicator bacteria (FIB) in systems impacted solely by urban runoff. Water samples and physico-chemical parameters were collected from shoreline locations from three South Carolina (SC) beaches (five locations per beach) and two Florida (FL) beaches (three locations per beach). Each SC beach was directly impacted by swashes or tidal creeks receiving stormwater runoff from the urbanized area and therefore were designated as swash drain associated (SDA) beaches, while FL beaches were designated as non-swash drain associated (NSDA). Sampling in swash drains (SD; three sites per SD) directly impacting each SC beach was also conducted. Results indicate that although culturable (enterococci) and real-time quantitative polymerase chain reaction (qPCR) (EC23S857, Enterol, and GenBac3) FIB concentrations were, on average, higher at SD locations, SDA beaches did not have consistently higher molecular FIB signals compared to NSDA beaches. Both human-associated markers (HF183 and HumM2) were concomitantly found only at SDA beaches. Bacteroidales species-specific qPCR markers (BsteriF1 and BuniF2) identified differences in the Bacteroidales community, depending on beach type. The marker for general Bacteroidales was most abundant at SD locations and exhibited a high correlation with both culturable and other molecular markers. Combining molecular information with predictive modeling allowed us to identify both alongshore movement of currents and SD outflow as significant influences on the concentration of molecular and culturable indicators in the bathing zone. Data also suggests that combining methodologies is a useful and cost effective approach to help understand transport dynamics of fecal contamination and identify potential sources of contamination at marine beaches.
机译:城市径流可将各种污染物带入休闲海滩,通常包括细菌病原体和粪便污染指标。要制定完整的娱乐标准和风险评估,必须了解仅受城市径流影响的海滩上可能存在人类污染的条件。准确估计风险需要了解这些环境中微生物污染物的来源,浓度和传输机制。通过应用微生物来源跟踪方法和经验模型,我们评估了受城市径流影响的休闲海滩上人类污染的存在和水平。我们还确定了环境参数和污染源,它们可以影响仅受城市径流影响的系统中可培养和分子粪便指示菌(FIB)的浓度和运输。从三个南卡罗莱纳州(SC)海滩(每个海滩五个位置)和两个佛罗里达州(FL)海滩(每个海滩三个位置)的海岸线位置收集水样和理化参数。每个SC海滩都直接受到从城市化地区接收雨水径流的斜流或潮汐小溪的影响,因此被指定为斜流相关(SDA)海滩,而FL沙滩被指定为非斜流相关(NSDA)。还对直接影响每个SC海滩的旋转排水管(SD;每个SD三个站点)进行了采样。结果表明,尽管可培养的(肠球菌)和实时定量聚合酶链反应(qPCR)(EC23S857,Enterol和GenBac3)的FIB浓度在SD位置平均较高,但SDA海滩并没有始终如一的更高的分子FIB信号前往NSDA海滩。两种人相关标记(HF183和HumM2)仅在SDA海滩上同时发现。细菌科物种特异性qPCR标记(BsteriF1和BuniF2)根据海滩类型确定了细菌科群落的差异。普通细菌科动物的标记在SD位置最丰富,并且与可培养标记和其他分子标记均具有高度相关性。将分子信息与预测模型相结合,使我们能够将洋流的沿岸移动和SD流出识别为对沐浴区分子和可培养指示剂浓度的重大影响。数据还表明,结合使用方法学是一种有用且具有成本效益的方法,可以帮助了解粪便污染的运输动态并确定海洋海滩的潜在污染源。

著录项

  • 来源
    《Water Research》 |2014年第1期|196-208|共13页
  • 作者单位

    USEPA, Office of Research and Development, National Exposure Research Laboratory, Athens, GA, USA, 960 College Station Rd., Athens, GA 30605, USA;

    SSA Contractor to the USEPA, ORD, NERL, Athens, GA, USA,FDA, Human and Health Services, Atlanta, GA, USA;

    USEPA, Office of Research and Development, National Exposure Research Laboratory, Athens, GA, USA;

    USEPA, ORD, National Risk Management Research Laboratory, Cincinnati, OH, USA;

    USEPA, ORD, National Risk Management Research Laboratory, Cincinnati, OH, USA;

    USEPA, ORD, National Risk Management Research Laboratory, Cincinnati, OH, USA;

    SSA Contractor to the USEPA, ORD, NRMRL, Cincinnati, OH, USA;

    USEPA, Office of Research and Development, National Exposure Research Laboratory, Athens, GA, USA;

    USEPA, ORD, National Risk Management Research Laboratory, Cincinnati, OH, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    FIB; MST; Virtual Beach; Predictive modeling; Human contamination;

    机译:FIB;MST;虚拟海滩;预测建模;人为污染;

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