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不同流速下生物膜相关纤毛虫形态型的定殖动态

Colonization dynamics of biofilm-associated ciliate morphotypes at different flow velocities.

作者信息

Risse-Buhl Ute, Küsel Kirsten

机构信息

Limnology Research Group, Institute of Ecology, Friedrich Schiller University Jena, Jena, Germany.

出版信息

Eur J Protistol. 2009 Jan;45(1):64-76. doi: 10.1016/j.ejop.2008.08.001. Epub 2008 Nov 11.

Abstract

The impact of flow velocity on initial ciliate colonization dynamics on surfaces were studied in the third order Ilm stream (Thuringia, Germany) at a slow flowing site (0.09ms(-1)) and two faster flowing sites (0.31ms(-1)) and in flow channels at 0.05, 0.4, and 0.8ms(-1). At the slow flowing stream site, surfaces were rapidly colonized by ciliates with up to 60 cells cm(-2) after 24h. In flow channels, the majority of suspended ciliates and inorganic matter accumulated at the surface within 4.5h at 0.05ms(-1). At 0.4ms(-1) the increase in ciliate abundance in the biofilm was highest between 72 and 168h at about 3 cells cm(-2)h(-1). Faster flow velocities were tolerated by vagile flattened ciliates that live in close contact to the surface. Vagile flattened and round filter feeders preferred biofilms at slow flow velocities. Addition of inorganic particles (0, 0.6, and 7.3mgcm(-2)) did not affect ciliate abundance in flow channel biofilms, but small ciliate species dominated and number of species was lowest (16 species cm(-2)) in biofilms at high sediment content. Although different morphotypes dominated the communities at contrasting flow velocities, all functional groups contributed to initial biofilm communities implementing all trophic links within the microbial loop.

摘要

在德国图林根州的伊尔姆河三级支流中,研究了流速对表面初始纤毛虫定殖动态的影响。研究地点包括一个流速较慢的位点(0.09米/秒)、两个流速较快的位点(0.31米/秒),以及流速分别为0.05、0.4和0.8米/秒的流动通道。在流速较慢的河流位点,24小时后纤毛虫迅速在表面定殖,密度可达60个细胞/平方厘米。在流动通道中,在流速为0.05米/秒时,大部分悬浮的纤毛虫和无机物质在4.5小时内就积聚在表面。在流速为0.4米/秒时,生物膜中纤毛虫丰度在72至168小时之间增加最快,约为3个细胞/平方厘米·小时。能游动的扁平纤毛虫能够耐受较快的流速,它们与表面紧密接触生活。能游动的扁平纤毛虫和圆形滤食性纤毛虫在流速较慢时更喜欢生物膜。添加无机颗粒(0、0.6和7.3毫克/平方厘米)对流动通道生物膜中的纤毛虫丰度没有影响,但在沉积物含量高的生物膜中,小型纤毛虫物种占主导,物种数量最少(16种/平方厘米)。尽管在不同流速下不同形态类型在群落中占主导地位,但所有功能组都对初始生物膜群落有贡献,实现了微生物环内的所有营养联系。

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