...
首页> 外文期刊>Applied and Environmental Microbiology >Distribution and Diversity of Sulfur-OxidizingThiomicrospira spp. at a Shallow-Water Hydrothermal Vent in the Aegean Sea (Milos, Greece)
【24h】

Distribution and Diversity of Sulfur-OxidizingThiomicrospira spp. at a Shallow-Water Hydrothermal Vent in the Aegean Sea (Milos, Greece)

机译:硫氧化硫微螺菌的分布和多样性在爱琴海的浅水热液排放口(希腊米洛斯)

获取原文

摘要

A shallow-water hydrothermal vent system in the Aegean Sea close to the island of Milos (Greece) was chosen to study the diversity and distribution of the chemolithoautotrophic sulfur-oxidizing bacteriumThiomicrospira. Cell numbers in samples from different regions around a solitary vent decreased toward the center of the vent (horizontal distribution), as well as with depth (vertical distribution), corresponding to an increase in temperature (from ca. 25 to 60°C) and a decrease in pH (from ca. pH 7 to 5).Thiomicrospira was one of the most abundant culturable sulfur oxidizers and was even dominant in one region. Phylogenetic analysis of Thiomicrospira spp. present in the highest most-probable-number (MPN) dilutions revealed that most of the obtained sequences grouped in two new closely related clusters within theThiomicrospira branch. Two different new isolates, i.e., Milos-T1 and Milos-T2, were obtained from high-dilution (10?5) enrichments. Phylogenetic analysis indicated that isolate Milos-T1 is related to the recently describedThiomicrospira kuenenii and Hydrogenovibrio marinus, whereas isolate Milos-T2 grouped with the MPN sequences of cluster 2. The predominance of strain Milos-T2 was indicated by its identification in several environmental samples by hybridization analysis of denaturing gradient gel electrophoresis (DGGE) patterns and by sequencing of one of the corresponding bands, i.e., ML-1, from the DGGE gel. The results shown in this paper support earlier indications that Thiomicrospira species are important members of hydrothermal vent communities.
机译:选择了位于米洛斯岛(希腊)附近的爱琴海中的浅水热液喷口系统,以研究化学自养型硫氧化细菌硫微螺菌的多样性和分布。来自单独通风孔周围不同区域的样品中的细胞数朝着通风孔中心(水平分布)以及深度(垂直分布)减少,与温度升高(从大约25到60°C)相对应,并且降低pH值(从大约pH 7到5)。硫微螺菌是最丰富的可培养硫氧化剂之一,甚至在一个区域中占主导地位。硫微螺菌属的系统发育分析。最高的最可能数(MPN)稀释液中存在的N-氨基丁酸显示,大多数获得的序列归为Thiomicrospira分支内两个紧密相关的新簇。从高稀释度(10?5)富集中获得了两种不同的新分离株,即Milos-T1和Milos-T2。系统发育分析表明,Milos-T1分离株与最近描述的库氏梭菌和海蓝藻(Hydrogenovibrio marinus)有关,而Milos-T2分离株与簇2的MPN序列分组。通过在几个环境样品中的鉴定,表明了Milos-T2菌株的优势。变性梯度凝胶电泳(DGGE)模式的杂交分析,以及对来自DGGE凝胶的相应条带之一(即ML-1)进行测序。本文显示的结果支持较早的迹象表明,硫微螺菌属是热液喷口群落的重要成员。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号