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Sample size effects on the assessment of eukaryotic diversity and community structure in aquatic sediments using high-throughput sequencing

机译:高通量测序对水生沉积物中真核生物多样性和群落结构评估的样本量影响

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Understanding how biodiversity changes in time and space is vital to assess the effects of environmental change on benthic ecosystems. Due to the limitations of morphological methods, there has been a rapid expansion in the application of high-throughput sequencing methods to study benthic eukaryotic communities. However, the effect of sample size and small-scale spatial variation on the assessment of benthic eukaryotic diversity is still not well understood. Here, we investigate the effect of different sample volumes in the genetic assessment of benthic metazoan and non-metazoan eukaryotic community composition. Accordingly, DNA was extracted from five different cumulative sediment volumes comprising 100% of the top 2?cm of five benthic sampling cores, and used as template for Ilumina MiSeq sequencing of 18?S rRNA amplicons. Sample volumes strongly impacted diversity metrics for both metazoans and non-metazoan eukaryotes. Beta-diversity of treatments using smaller sample volumes was significantly different from the beta-diversity of the 100% sampled area. Overall our findings indicate that sample volumes of 0.2?g (1% of the sampled area) are insufficient to account for spatial heterogeneity at small spatial scales, and that relatively large percentages of sediment core samples are needed for obtaining robust diversity measurement of both metazoan and non-metazoan eukaryotes.
机译:了解生物多样性在时间和空间上的变化对于评估环境变化对底栖生态系统的影响至关重要。由于形态学方法的局限性,高通量测序方法在研究底栖真核生物群落中的应用已迅速扩展。然而,样本量和小尺度空间变化对底栖真核生物多样性评估的影响尚不十分清楚。在这里,我们调查底栖后生动物和非metazoan真核生物群落组成的遗传评估中不同样本量的影响。因此,从五个底栖采样核心的前2?cm的100%的五个不同的累积沉积物体积中提取DNA,并将其用作Ilumina MiSeq测序18?S rRNA扩增子的模板。样品量极大地影响了后生和非metazoan真核生物的多样性指标。使用较小样本量的处理的β多样性与100%采样区域的β多样性显着不同。总体而言,我们的研究结果表明,0.2 µg(占采样面积的1%)的样品量不足以解决小空间尺度上的空间异质性,并且需要相对较大百分比的沉积物岩心样品来获得两种后生动物的稳健多样性测量和非metazoan真核生物。

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