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The Lake Erie HABs Grab: A binational collaboration to characterize the western basin cyanobacterial harmful algal blooms at an unprecedented high-resolution spatial scale

机译:伊利湖抓住:融合的合作,以前所未有的高分辨率空间尺度表征西部盆地蓝藻有害藻类盛开

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摘要

Monitoring of cyanobacterial bloom biomass in large lakes at high resolution is made possible by remote sensing. However, monitoring cyanobacterial toxins is only feasible with grab samples, which, with only sporadic sam-pling, results in uncertainties in the spatial distribution of toxins. To address this issue, we conducted two intensive "HABs Grabs" of microcystin (MC)-producing Microcystis blooms in the western basin of Lake Erie. These were one-day sampling events during August of 2018 and 2019 in which 100 and 172 grab samples were collected, respectively, within a six-hour window covering up to 2,270 km(2) and analyzed using consistent methods to estimate the total mass of MC. The samples were analyzed for 57 parameters, including toxins, nutrients, chlorophyll, and genomics. There were an estimated 11,513 kg and 30,691 kg of MCs in the western basin during the 2018 and 2019 HABs Grabs, respectively. The bloom boundary poses substantial issues for spatial assessments because MC concentration varied by nearly two orders of magnitude over very short distances. The MC to chlorophyll ratio (MC:chl) varied by a factor up to 5.3 throughout the basin, which creates challenges for using MC:chl to predict MC concentrations. Many of the biomass metrics strongly correlated (r 0.70) with each other except chlorophyll fluorescence and phycocyanin concentration. While MC and chlorophyll correlated well with total phosphorus and nitrogen concentrations, MC:chl correlated with dissolved inorganic nitrogen. More frequent MC data collection can overcome these issues, and models need to account for the MC:chl spatial heterogeneity when forecasting MCs.
机译:通过遥感,可以在高分辨率下监测大型湖泊中的蓝藻绽放生物量。然而,监测蓝毒性毒素仅与抓取样品可行,只有散发性Sam-Pling,导致毒素的空间分布中的不确定性。为了解决这个问题,我们进行了两种密集的“HABS抓取”微囊藻(MC) - 在伊利湖西部盆地上发布的微囊杆菌绽放。这些是2018年8月期间为期一天的抽样事件,其中六小时窗口中分别收集100和172个抢占样品,覆盖2,270公里(2),并使用一致的方法进行分析以估计总质量MC。分析样品57个参数,包括毒素,营养,叶绿素和基因组学。在2018年和2019年HABS抓取期间,西部盆地估计有11,513公斤和30,691公斤MCS。绽放边界对空间评估构成了实质性问题,因为MC浓度在非常短的距离上变化了近两个数量级。叶绿素比(MC:CHL)在整个盆地中变化至5.3的因素,这会产生使用MC:CHL以预测MC浓度的挑战。除了叶绿素荧光和浮蛋白浓度外,许多生物质度量彼此强烈相关(R> 0.70)。虽然MC和叶绿素与总磷和氮浓度良好,但MC:CHL与溶解的无机氮相关。更频繁的MC数据收集可以克服这些问题,并且在预测MCS时,模型需要考虑MC:CHL空间异质性。

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  • 来源
    《Harmful Algae》 |2021年第8期|102080.1-102080.18|共18页
  • 作者单位

    Ohio State Univ FT Stone Lab & Ohio Sea Grant 878 Bayview Ave POB 119 Put In Bay OH 43456 USA;

    LimnoTech 501 Avis Dr Ann Arbor MI 48108 USA;

    LimnoTech 501 Avis Dr Ann Arbor MI 48108 USA;

    Ohio State Univ FT Stone Lab & Ohio Sea Grant 878 Bayview Ave POB 119 Put In Bay OH 43456 USA|Ohio Univ Dept Civil Engn Athens OH 45701 USA;

    Univ Toledo Lake Erie Ctr 6200 Bayshore Rd Oregon OH 43616 USA;

    Canada Ctr Inland Waters Environm & Climate Change Canada 867 Lakeshore Rd Burlington ON L7S 1A1 Canada;

    Wayne State Univ Lumigen Instrument Ctr 5101Cass Ave Detroit MI 48202 USA;

    Univ Toledo Lake Erie Ctr 6200 Bayshore Rd Oregon OH 43616 USA;

    Univ Windsor Great Lakes Inst Environm Res 401 Sunset Ave Windsor ON N9B 3P4 Canada|Yunnan Univ Sch Ecol & Environm Sci Kunming 650091 Yunnan Peoples R China;

    Univ Windsor Sch Environm 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Canada Ctr Inland Waters Fisheries & Oceans Canada 867 Lakeshore Rd Burlington ON L7S 1A1 Canada;

    Bowling Green State Univ Biol Sci Life Sci Bldg Bowling Green OH 43402 USA;

    Univ Michigan Dept Earth & Environm Sci 2534 North Univ Bldg 1100 North Univ Ave Ann Arbor MI 48109 USA;

    Univ Windsor Great Lakes Inst Environm Res 401 Sunset Ave Windsor ON N9B 3P4 Canada|Netherlands Inst Ecol NIOO KNAW Dept Aquat Ecol Droevendaalsesteeg 10 NL-6708 PB Wageningen Netherlands;

    NOAA Great Lakes Environm Res Lab Ann Arbor MI 48108 USA;

    Univ Windsor Great Lakes Inst Environm Res 401 Sunset Ave Windsor ON N9B 3P4 Canada|Netherlands Inst Ecol NIOO KNAW Dept Aquat Ecol Droevendaalsesteeg 10 NL-6708 PB Wageningen Netherlands;

    Univ Windsor Great Lakes Inst Environm Res 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    City Toledo Div Water Treatment Toledo OH 43605 USA;

    Univ Windsor Great Lakes Inst Environm Res 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Bowling Green State Univ Biol Sci Life Sci Bldg Bowling Green OH 43402 USA|Univ Michigan Dept Earth & Environm Sci 2534 North Univ Bldg 1100 North Univ Ave Ann Arbor MI 48109 USA;

    US EPA Cincinnati OH 45268 USA;

    Ohio State Univ FT Stone Lab & Ohio Sea Grant 878 Bayview Ave POB 119 Put In Bay OH 43456 USA;

    NOAA Natl Ocean Serv 1305 East West Highway Silver Spring MD 20910 USA;

    Univ Toledo Lake Erie Ctr 6200 Bayshore Rd Oregon OH 43616 USA;

    Univ Toledo Lake Erie Ctr 6200 Bayshore Rd Oregon OH 43616 USA;

    Wayne State Univ Lumigen Instrument Ctr 5101Cass Ave Detroit MI 48202 USA;

    Michigan Technol Univ Civil & Environm Engn 1400 Townsend Dr Houghton MI 49931 USA;

    Univ Michigan Dept Earth & Environm Sci 2534 North Univ Bldg 1100 North Univ Ave Ann Arbor MI 48109 USA;

    Canada Ctr Inland Waters Environm & Climate Change Canada 867 Lakeshore Rd Burlington ON L7S 1A1 Canada;

    Michigan Technol Univ Civil & Environm Engn 1400 Townsend Dr Houghton MI 49931 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cyanobacteria; Eutrophication; Environmental monitoring; International collaboration; Microcystis; Microcystin;

    机译:蓝藻;富营养化;环境监测;国际合作;微囊杆菌;微囊藻;

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