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Diversity of the Microeukaryotic Community in Sulfide-Rich Zodletone Spring (Oklahoma)

机译:富含硫化物的地佐酮春季(俄克拉何马州)的微真核生物群落的多样性。

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摘要

The microeukaryotic community in Zodletone Spring, a predominantly anaerobic sulfide and sulfur-rich spring, was examined using an 18S rRNA gene cloning and sequencing approach. The majority of the 288 clones sequenced from three different locations at Zodletone Spring belonged to the Stramenopiles, Alveolata, and Fungi, with members of the phylum Cercozoa, order Diplomonadida, and family Jakobidae representing a minor fraction of the clone library. No sequences suggesting the presence of novel kingdom level diversity were detected in any of the three libraries. A large fraction of stramenopile clones encountered were monophyletic with either members of the genus Cafeteria (order Bicosoecida) or members of the order Labyrinthulida (slime nets), both of which have so far been encountered mainly in marine habitats. The majority of the observed fungal clone sequences belonged to the ascomycetous yeasts (order Saccharomycetales), were closely related to yeast genera within the Hymenobasidiomycetes (phylum Basidiomycetes), or formed a novel fungal lineage with several previously published or database-deposited clones. To determine whether the unexpected abundance of fungal sequences in Zodletone Spring clone libraries represents a general pattern in anaerobic habitats, we generated three clone libraries from three different anaerobic settings (anaerobic sewage digester, pond sediment, and hydrocarbon-exposed aquifer sediments) and partially sequenced 210 of these clones. Phylogenetic analysis indicated that clone sequences belonging to the kingdom Fungi represent a significant fraction of all three clone libraries, an observation confirmed by phospholipid fatty acid and ergosterol analysis. Overall, this work reveals an unexpected abundance of Fungi in anaerobic habitats, describes a novel, yet-uncultured group of Fungi that appears to be widespread in anaerobic habitats, and indicates that several of the previously considered marine protists could also occur in nonmarine habitats.
机译:使用18S rRNA基因克隆和测序方法检查了Zodletone Spring(主要为厌氧硫化物和富含硫的春天)中的微真核生物群落。从Zodletone Spring的三个不同位置测序的288个克隆中的大多数属于Stramenopiles,Alveolata和Fungi,其中Cercozoa门,Diplomonadida和Jakobidae家族的成员仅占克隆文库的一小部分。在三个文库中的任何一个中均未检测到表明存在新的王国水平多样性的序列。迄今为止,遇到的很大一部分stramenopile克隆与食堂属成员(Bicosoecida目)或迷路菌属(粘液网)是单系克隆,到目前为止,这两种克隆都主要在海洋生境中遇到。观察到的大多数真菌克隆序列都属于子囊酵母(酵母菌),与处女膜菌属(Basidiomycetes)内的酵母属密切相关,或者与几个先前发表或数据库保存的克隆形成了新的真菌谱系。为了确定Zodletone Spring克隆文库中意想不到的真菌序列的丰富性是否代表了厌氧生境中的一般模式,我们从三种不同的厌氧环境(厌氧污水消化池,池塘沉积物和暴露于碳氢化合物的含水层沉积物中)生成了三个克隆文库,并进行了部分测序这些克隆中的210个。系统发育分析表明,属于真菌界的克隆序列占所有三个克隆文库的很大一部分,这一发现已通过磷脂脂肪酸和麦角固醇分析得到证实。总的来说,这项工作揭示了厌氧生境中真菌的出乎意料的丰富,描述了一种新型但尚未养殖的真菌,似乎在厌氧生境中很普遍,并且表明以前认为的一些海洋生物也可能出现在非海洋生境中。

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