在一个淡水水库的低通量水域中,一个新的纤毛虫谱系在纤毛虫群落和细菌中占主导地位

Karel Šimek, Usman Asghar, Bettina Sonntag, Vojtěch Kasalický, Tanja Shabarova, Indranil Mukherjee
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引用次数: 0

摘要

深、冷、暗低水是淡水湖中最大的水量,光养生物的出现有限。然而,原核生物的存在支持了嗜菌纤毛虫和异养纳米鞭毛虫(HNF)的种群。然而,原生细菌率和主要的低代谢纤毛虫细菌捕食者文献很少。在物理化学条件稳定、水温较低的夏季,我们对一个分层中富营养化水库的氧低磷进行了高频采样(每周3次)。利用荧光标记的细菌,我们估计纤毛虫和HNF对聚集的原核细菌的贡献平均分别为30%和70%,并且共同去除约三分之二的每日低酶原核生物产量。用定量原targol染色法分析纤毛虫群落。一种壳纤毛虫形态占低代谢纤毛虫群落的优势,占总纤毛虫的82%,占总纤毛虫的98%以上,平均细胞特异性摄取率为每小时202个原核生物。此外,长扩增子测序显示,该scuticociate属于一个未被识别的分支,与Ctedoctematidae和Eurystomatellidae家族密切相关。高分辨率采样、显微镜和测序方法揭示了低代谢环境下的本地微生物食物网,揭示了纤毛虫群落的功能简化,主要是一种新的细菌性scuticoiliate谱系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New lineage of scuticociliates dominates the ciliate community and bacterivory in hypolimnetic waters of a freshwater reservoir
Deep, cold, and dark hypolimnia represent the largest volume of water in freshwater lakes with limited occurrences of phototrophs. However, the presence of prokaryotes supports populations of bacterivorous ciliates and heterotrophic nanoflagellates (HNF). Nevertheless, protistan bacterivory rates and the major hypolimnetic ciliate bacterivores are poorly documented. We conducted a high frequency sampling (three-times a week) in the oxic hypolimnion of a stratified mesoeutrophic reservoir during summer, characterized by stable physicochemical conditions and low water temperature. Using fluorescently labeled bacteria we estimated that ciliates and HNF contributed, on average, 30% and 70% to aggregated protistan bacterivory, respectively, and collectively removed about two thirds of daily hypolimnetic prokaryotic production. The ciliate community was analyzed by the quantitative protargol staining method. One scuticociliate morphotype dominated the hypolimnetic ciliate community, accounting for 82% of total ciliates and over 98% of total ciliate bacterivory, with average cell-specific uptake rate of 202 prokaryotes per hour. Moreover, long-amplicon sequencing revealed that the scuticociliate belongs to an unidentified clade closely related to the Ctedoctematidae and Eurystomatellidae families. The high-resolution sampling, microscopic, and sequencing methods allowed uncovering indigenous microbial food webs in the hypolimnetic environment and revealed a functional simplification of ciliate communities, dominated by a new bacterivorous scuticociliate lineage.
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