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A novel quantification method for stream-inhabiting, non-diatom benthic algae, and its application in bioassessment.

机译:一种新型的栖水非硅藻底栖藻类定量方法及其在生物评价中的应用。

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摘要

Non-diatom benthic algae from 104 streams in southern California were studied. We present a novel method for quantification of non-diatom algae that seeks to improve upon two important aspects of existing methods: separate processing of macroalgae and microalgae to avoid sample blending and consequent loss of macroalgal integrity, and for better viewing, counting a well-mixed microalgal subsample on a standard microscope slide instead of using a counting chamber. Our method provided high-quality taxonomic and quantitative data with low uncertainty. A total of 260 algal taxa were recorded, 180 of which were identified to species level. The median total algal biovolume per site was 22.7 mm3 cm-2 (range: <0.001-836.9 mm3 cm-2), the median species number was 11 (range: 2-43). Total algal biovolume and species number correlated with canopy cover (negative) and water temperature (positive), but not with measured water chemistry constituents. The proportion of heterocystous cyanobacteria and Zygnemataceae were strongly negatively correlated with nitrate concentrations and TN. The proportion of red algae was negatively correlated with TP. Species optima calculations combined with indicator species analysis identified >40 algal species as potential indicators of nutrient conditions. Proposed here is a practical tool for non-diatom algal quantification that enhances its application to stream bioassessment.
机译:研究了来自加利福尼亚南部104条溪流的非硅藻底栖藻类。我们提出了一种定量非硅藻藻类的新颖方法,旨在改善现有方法的两个重要方面:分别处理大型藻类和微藻类以避免样品混合以及随之而来的大型藻类完整性损失,以及为了更好地观察,计数井眼,在标准显微镜载玻片上混合微藻子样品,而不使用计数室。我们的方法提供了低不确定性的高质量分类和定量数据。总共记录了260个藻类群,其中180个被鉴定为物种水平。每个部位的藻类总生物量中位数为22.7 mm 3 cm -2 (范围:<0.001-836.9 mm 3 cm -2 ),物种中位数为11(范围:2-43)。藻类的总生物量和种类数与冠层覆盖(负)和水温(正)相关,但与测得的水化学成分无关。异性蓝藻细菌和虎杖科的比例与硝酸盐浓度和总氮呈极显着负相关。红藻的比例与总磷呈负相关。物种最佳计算与指标物种分析相结合,确定了40多个藻类物种为营养状况的潜在指标。本文提出了一种用于非硅藻藻类定量的实用工具,可增强其在流式生物评估中的应用。

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