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首页> 外文期刊>Harmful Algae >Pseudo-nitzschia bloom dynamics in the Gulf of Maine: 2012-2016
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Pseudo-nitzschia bloom dynamics in the Gulf of Maine: 2012-2016

机译:2012-2016年缅因湾的拟南芥开花动态

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摘要

The toxic diatom genus Pseudo-nitzschia is a growing presence in the Gulf of Maine (GOM), where regionally unprecedented levels of domoic acid (DA) in 2016 led to the first Amnesic Shellfish Poisoning closures in the region. However, factors driving GOM Pseudo-nitzschia dynamics, DA concentrations, and the 2016 event are unclear. Water samples were collected at the surface and at depth in offshore transects in summer 2012, 2014, and 2015, and fall 2016, and a weekly time series of surface water samples was collected in 2013. Temperature and salinity data were obtained from NERACOOS buoys and measurements during sample collection. Samples were processed for particulate DA (pDA), dissolved nutrients (nitrate, ammonium, silicic acid, and phosphate), and cellular abundance. Species composition was estimated via Automated Ribosomal Intergenic Spacer Analysis (ARISA), a semi-quantitative DNA finger-printing tool. Pseudo-nitzschia biogeography was consistent in the years 2012, 2014, and 2015, with greater Pseudo-nitzschia cell abundance and P. plurisecta dominance in low-salinity inshore samples, and lower Pseudo-nitzschia cell abundance and P. delicatissana and P. seriata dominance in high-salinity offshore samples. During the 2016 event, pDA concentrations were an order of magnitude higher than in previous years, and inshore-offshore contrasts in biogeography were weak, with P. australis present in every sample. Patterns in temporal and spatial variability confirm that pDA increases with the abundance and the cellular DA of Pseudo-nitzschia species, but was not correlated with any one environmental factor. The greater pDA in 2016 was caused by P. australis - the observation of which is unprecedented in the region - and may have been exacerbated by low residual silicic acid. The novel presence of P. australis may be due to local growth conditions, the introduction of a population with an anomalous water mass, or both factors. A definitive cause of the 2016 bloom remains unknown, and continued DA monitoring in the GOM is warranted.
机译:有毒的硅藻属伪藻类在缅因湾(GOM)中的存在正在不断增长,2016年该地区的前所未有的海藻酸(DA)水平导致该地区首例健忘症贝类中毒关闭。但是,尚不清楚促成GOM假性尼兹菌动力学,DA浓度和2016年事件的因素。分别于2012年夏季,2014年和2015年以及2016年秋季在近海样带的地表和深度处收集水样,并在2013年收集每周一次的地表水样时间序列。温度和盐度数据是从NERACOOS浮标和样品采集期间进行测量。处理样品的颗粒DA(pDA),溶解的营养物(硝酸盐,铵,硅酸和磷酸盐)和细胞丰度。通过自动核糖体基因间间隔物分析(ARISA)(一种半定量DNA指纹识别工具)来估计物种组成。在2012年,2014年和2015年期间,拟南芥生物地理学是一致的,在低盐度近海样本中拟南芥细胞丰度和P. plurisecta优势较大,而拟南芥细胞丰度较低,P。delicatissana和P.seriata则较低。在高盐度离岸样品中占主导地位。在2016年的事件中,pDA的浓度比往年高一个数量级,生物地理学中的近海-近海对比很弱,每个样品中都存在P.australis。时间和空间变异性的模式证实,pDA随拟南芥属物种的丰度和细胞DA而增加,但与任何一种环境因素均不相关。 2016年较大的pDA是由澳大利亚假单胞菌引起的-该现象在该地区是前所未有的-可能由于残留硅酸含量低而加剧了。南极假单胞菌的新颖存在可能是由于当地的生长条件,水质异常的种群的引入或两者兼而有之。尚不清楚2016年绽放的确切原因,因此有必要在GOM中继续进行DA监测。

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