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Laboratory sources of error for algal community attributes during sample preparation and counting

机译:样品制备和计数过程中藻类群落属性的实验室误差源

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Applied algal studies typically require enumeration of preserved cells. As applications of algal assessments proliferate, understanding sources of variability inherent in the methods by which abundance and species composition data are obtained becomes even more important for precision of measurements. We performed replicate counts of diatoms on permanently fixed coverglasses and all algae in Palmer-Maloney chambers to assess precision and accuracy of measurements derived from common counting methods. We counted diatoms and all algae with transects and random fields. Variability estimates (precision) of diatom density, species diversity, and species composition on permanent coverglasses were low between replicate subsamples and between replicate transects. However. average density estimates of diatoms settled on coverglasses determined with transect methods were 42-52% greater than density estimates made with random fields. This bias was due to a predictable, nonrandom distribution of diatoms on the coverglass with few diatoms near edges. Despite bias in density when counting diatoms alone, coverglass transects, no bias was observed in estimates of species composition. Estimates of density and taxa richness of all-algae in Palmer-Maloney chambers also had low variability among multiple transects and high similarity in species composition between transects. In addition, counting method in Palmer-Maloney chambers did not affect estimates of algal cell density, taxa richness, and species composition, which suggested that counting units were distributed randomly in the chambers. Thus, most sources of variability in sample preparation and analysis are small; however, transect counts should not be used to estimate cell density. and sufficient numbers of random fields must be counted to account for edge effects on cell distribution with material settled on permanently fixed coverglasses.
机译:应用的藻类研究通常需要枚举保存的细胞。随着藻类评估的应用激增,了解获取丰度和物种组成数据的方法固有的可变性来源对于测量精度变得更加重要。我们在永久固定的盖玻片和Palmer-Maloney箱中的所有藻类上进行了硅藻的重复计数,以评估源自普通计数方法的测量的精度和准确性。我们计算了硅藻和所有带有横断面和随机场的藻类。重复子样本之间和重复样带之间的永久覆盖玻璃上的硅藻密度,物种多样性和物种组成的变异性估计(精度)较低。然而。用断面法确定的落在盖玻片上的硅藻的平均密度估计值比使用随机场进行的密度估计值高42-52%。这种偏差是由于硅藻在盖玻片上的可预测的,非随机的分布所致,边缘附近的硅藻很少。尽管仅对硅藻,盖玻片进行计数时密度存在偏差,但在物种组成的估算中未观察到偏差。在Palmer-Maloney商会中,所有藻类的密度和分类单元丰富度的估算值在多个样带之间的变异性也很低,而样带之间物种组成的相似性也很高。此外,Palmer-Maloney室中的计数方法不会影响藻类细胞密度,分类单元丰富度和物种组成的估计,这表明计数单位在室中是随机分布的。因此,大多数样品制备和分析中的变异性来源很小。但是,横断面计数不应用于估计细胞密度。并且必须计算足够数量的随机场,以解决材料沉积在永久固定的盖玻片上时对细胞分布产生的边缘影响。

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