Costa Kyle C, Navarro Jason B, Shock Everett L, Zhang Chuanlun L, Soukup Debbie, Hedlund Brian P
School of Life Sciences, University of Nevada, Las Vegas, NV 89154, USA.
Extremophiles. 2009 May;13(3):447-59. doi: 10.1007/s00792-009-0230-x. Epub 2009 Feb 27.
A coordinated study of water chemistry, sediment mineralogy, and sediment microbial community was conducted on four >73 degrees C springs in the northwestern Great Basin. Despite generally similar chemistry and mineralogy, springs with short residence time (approximately 5-20 min) were rich in reduced chemistry, whereas springs with long residence time (>1 day) accumulated oxygen and oxidized nitrogen species. The presence of oxygen suggested that aerobic metabolisms prevail in the water and surface sediment. However, Gibbs free energy calculations using empirical chemistry data suggested that several inorganic electron donors were similarly favorable. Analysis of 298 bacterial 16S rDNAs identified 36 species-level phylotypes, 14 of which failed to affiliate with cultivated phyla. Highly represented phylotypes included Thermus, Thermotoga, a member of candidate phylum OP1, and two deeply branching Chloroflexi. The 276 archaeal 16S rDNAs represented 28 phylotypes, most of which were Crenarchaeota unrelated to the Thermoprotei. The most abundant archaeal phylotype was closely related to "Candidatus Nitrosocaldus yellowstonii", suggesting a role for ammonia oxidation in primary production; however, few other phylotypes could be linked with energy calculations because phylotypes were either related to chemoorganotrophs or were unrelated to known organisms.
在大盆地西北部的四个温度超过73摄氏度的泉水中,开展了一项关于水化学、沉积物矿物学和沉积物微生物群落的协同研究。尽管化学性质和矿物学总体相似,但停留时间短(约5 - 20分钟)的泉水富含还原态化学物质,而停留时间长(超过1天)的泉水则积累了氧气和氧化态氮物质。氧气的存在表明需氧代谢在水体和表层沉积物中占主导。然而,利用经验化学数据进行的吉布斯自由能计算表明,几种无机电子供体同样有利。对298个细菌16S rDNA的分析确定了36个物种水平的系统发育型,其中14个未能与已培养的门类相关联。高度代表性的系统发育型包括嗜热栖热菌属、嗜热栖热袍菌属、候选门类OP1的一个成员以及两个深度分支的绿弯菌门。276个古菌16S rDNA代表了28个系统发育型,其中大多数是与嗜热栖热菌纲无关的泉古菌门。最丰富的古菌系统发育型与“嗜热亚硝化钙菌”密切相关,表明氨氧化在初级生产中发挥作用;然而,很少有其他系统发育型能与能量计算联系起来,因为这些系统发育型要么与化能有机营养菌有关,要么与已知生物无关。