Virtanen Laura K, Köngäs Petrina, Aitto-Oja Sanna, Soininen Janne
Department of Environmental Sciences, P.O. Box 65, FIN-00014, University of Helsinki, FinlandDepartment of Forest Science, P.O. Box 27, FIN-00014, University of Helsinki, FinlandDepartment of Environmental Sciences, P.O. Box 65, FIN-00014, University of Helsinki, Finland.
J Phycol. 2011 Dec;47(6):1445-53. doi: 10.1111/j.1529-8817.2011.01068.x. Epub 2011 Oct 20.
Water quality in streams typically changes fast, and sensitive biological indicators are crucial for monitoring these changes in water quality. Diatoms are widely used in biological stream quality assessment. However, interannual and intra-annual variation of diatom population densities is large, often hampering a reliable quality assessment. We studied the importance of different species traits on temporal occurrence of diatom species. We also examined whether temporal occurrence of diatoms is related to species' local abundance or regional distribution using a data set collected in Finnish streams. According to the general linear model (GLM), temporal occurrence of diatoms increased with increasing local abundance and regional distribution. Species that occurred more frequently also had larger niche breadths and nonmarginal niche positions. In addition, cell size and attachment ability were positively related to species temporal occurrence. Our results imply that abundant and widely distributed species with large niches and ability to attach sustain persistent populations in varying environmental conditions typical for streams. We suggest that future studies could concentrate on monitoring these common (abundant) species when detecting the possible changes in the biological state of streams. We advise, however, to consider a relatively large number of species as many of the most common species may have low indicator values.
溪流中的水质通常变化迅速,而敏感的生物指标对于监测水质的这些变化至关重要。硅藻被广泛用于生物溪流质量评估。然而,硅藻种群密度的年际和年内变化很大,常常妨碍进行可靠的质量评估。我们研究了不同物种特征对硅藻物种时间分布的重要性。我们还利用在芬兰溪流中收集的数据集,研究了硅藻的时间分布是否与物种的当地丰度或区域分布有关。根据一般线性模型(GLM),硅藻的时间分布随着当地丰度和区域分布的增加而增加。出现频率较高的物种也具有更大的生态位宽度和非边缘生态位位置。此外,细胞大小和附着能力与物种的时间分布呈正相关。我们的结果表明,具有大生态位和附着能力的丰富且广泛分布的物种,能够在溪流典型的不同环境条件下维持持久的种群。我们建议,未来的研究在检测溪流生物状态的可能变化时,可以集中监测这些常见(丰富)物种。然而,我们建议考虑相对较多的物种,因为许多最常见的物种可能具有较低的指示值。