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在一个常年被冰覆盖的南极湖中发现了 II 型 RubisCO(cbbM)。

Evidence of form II RubisCO (cbbM) in a perennially ice-covered Antarctic lake.

机构信息

Department of Microbiology, Miami University, Oxford, OH 45045, USA.

出版信息

FEMS Microbiol Ecol. 2012 Nov;82(2):491-500. doi: 10.1111/j.1574-6941.2012.01431.x. Epub 2012 Jul 5.

Abstract

The permanently ice-covered lakes of the McMurdo Dry Valleys, Antarctica, harbor microbially dominated food webs. These organisms are adapted to a variety of unusual environmental extremes, including low temperature, low light, and permanently stratified water columns with strong chemo- and oxy-clines. Owing to the low light levels during summer caused by thick ice cover as well as 6 months of darkness during the polar winter, chemolithoautotrophic microorganisms could play a key role in the production of new carbon for the lake ecosystems. We used clone library sequencing and real-time quantitative PCR of the gene encoding form II Ribulose 1, 5-bisphosphate carboxylase/oxygenase to determine spatial and seasonal changes in the chemolithoautotrophic community in Lake Bonney, a 40-m-deep lake covered by c. 4 m of permanent ice. Our results revealed that chemolithoautotrophs harboring the cbbM gene are restricted to layers just above the chemo- and oxi-cline (≤ 15 m) in the west lobe of Lake Bonney (WLB). Our data reveal that the WLB is inhabited by a unique chemolithoautotrophic community that resides in the suboxic layers of the lake where there are ample sources of alternative electron sources such as ammonium, reduced iron and reduced biogenic sulfur species.

摘要

南极洲麦克默多干谷永久性冰雪覆盖的湖泊中,存在以微生物为主导的食物网。这些生物适应了多种不同的异常环境极端条件,包括低温、低光照以及化学和氧化分层强烈且水层常年稳定的环境。由于夏季厚厚的冰层导致光照水平较低,以及极地冬季长达 6 个月的黑暗,化能自养微生物可能在湖泊生态系统中为新碳的产生发挥关键作用。我们使用克隆文库测序和编码 II 型核酮糖-1,5-二磷酸羧化酶/加氧酶的基因的实时定量 PCR,来确定位于被约 4 米厚的永久性冰层覆盖的 40 米深的邦尼湖中的化能自养微生物群落的空间和季节性变化。我们的结果表明,携带 cbbM 基因的化能自养生物仅限于邦尼湖西 lobe(WLB)中化学和氧化分层上方的层(≤15 米)。我们的数据表明,WLB 居住着一个独特的化能自养微生物群落,它们栖息在湖泊的缺氧层中,这里有丰富的替代电子源,如铵、还原铁和还原生物硫物种。

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