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Relative Diversity and Community Structure of Ciliates in Stream Biofilms According to Molecular and Microscopy Methods

机译:流生物膜中纤毛虫的相对多样性和群落结构的分子和显微镜研究。

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摘要

Ciliates are an important component of aquatic ecosystems, acting as predators of bacteria and protozoa and providing nutrition for organisms at higher trophic levels. Understanding of the diversity and ecological role of ciliates in stream biofilms is limited, however. Ciliate diversity in biofilm samples from four streams subject to different impacts by human activity was assessed using microscopy and terminal restriction fragment length polymorphism (T-RFLP) analysis of 18S rRNA sequences. Analysis of 3′ and 5′ terminal fragments yielded very similar estimates of ciliate diversity. The diversity detected using microscopy was consistently lower than that suggested by T-RFLP analysis, indicating the existence of genetic diversity not apparent by morphological examination. Microscopy and T-RFLP analyses revealed similar relative trends in diversity between different streams, with the lowest level of biofilm-associated ciliate diversity found in samples from the least-impacted stream and the highest diversity in samples from moderately to highly impacted streams. Multivariate analysis provided evidence of significantly different ciliate communities in biofilm samples from different streams and seasons, particularly between a highly degraded urban stream and less impacted streams. Microscopy and T-RFLP data both suggested the existence of widely distributed, resilient biofilm-associated ciliates as well as ciliate taxa restricted to sites with particular environmental conditions, with cosmopolitan taxa being more abundant than those with restricted distributions. Differences between ciliate assemblages were associated with water quality characteristics typical of urban stream degradation and may be related to factors such as nutrient availability and macroinvertebrate communities. Microscopic and molecular techniques were considered to be useful complementary approaches for investigation of biofilm ciliate communities.
机译:纤毛虫是水生生态系统的重要组成部分,可作为细菌和原生动物的捕食者,并为营养水平较高的生物提供营养。然而,对纤毛在流生物膜中的多样性和生态作用的理解是有限的。使用18S rRNA序列的显微镜和末端限制性片段长度多态性(T-RFLP)分析,评估了受到人类活动影响的四个流中生物膜样品中纤毛的多样性。对3'和5'末端片段的分析得出纤毛多样性非常相似的估计。使用显微镜检测到的多样性始终低于T-RFLP分析所表明的多样性,这表明通过形态学检查不存在遗传多样性。显微镜检查和T-RFLP分析显示不同流之间的多样性具有相似的相对趋势,在受影响最小的流中,样本中发现的与生物膜相关的纤毛虫多样性最低,而在中等至严重影响的流中,样本中的多样性最高。多变量分析提供了证据,表明来自不同河流和季节的生物膜样品中的纤毛群落显着不同,特别是在高度退化的城市河流和受影响较小的河流之间。显微镜和T-RFLP数据均表明存在广泛分布的,与生物膜相关的弹性纤毛和纤毛类群,这些纤毛类群仅限于具有特定环境条件的场所,其中大都会类群比那些分布受限的种群更为丰富。纤毛虫组合之间的差异与城市河流退化典型的水质特征有关,并且可能与诸如养分有效性和大型无脊椎动物群落等因素有关。显微镜和分子技术被认为是调查生物膜纤毛虫群落的有用补充方法。

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