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在好氧与反硝化条件下,脱氮硫杆菌对硫代硫酸盐进行化能自养氧化的全基因组转录分析。

Whole-genome transcriptional analysis of chemolithoautotrophic thiosulfate oxidation by Thiobacillus denitrificans under aerobic versus denitrifying conditions.

作者信息

Beller Harry R, Letain Tracy E, Chakicherla Anu, Kane Staci R, Legler Tina C, Coleman Matthew A

机构信息

Lawrence Livermore National Laboratory, P. O. Box 808, L-542, Livermore, CA 94551-0808, USA.

出版信息

J Bacteriol. 2006 Oct;188(19):7005-15. doi: 10.1128/JB.00568-06.

Abstract

Thiobacillus denitrificans is one of the few known obligate chemolithoautotrophic bacteria capable of energetically coupling thiosulfate oxidation to denitrification as well as aerobic respiration. As very little is known about the differential expression of genes associated with key chemolithoautotrophic functions (such as sulfur compound oxidation and CO2 fixation) under aerobic versus denitrifying conditions, we conducted whole-genome, cDNA microarray studies to explore this topic systematically. The microarrays identified 277 genes (approximately 10% of the genome) as differentially expressed using RMA (robust multiarray average) statistical analysis and a twofold cutoff. Genes upregulated (ca. 6- to 150-fold) under aerobic conditions included a cluster of genes associated with iron acquisition (e.g., siderophore-related genes), a cluster of cytochrome cbb3 oxidase genes, cbbL and cbbS (encoding the large and small subunits of form I ribulose 1,5-bisphosphate carboxylase/oxygenase, or RubisCO), and multiple molecular chaperone genes. Genes upregulated (ca. 4- to 95-fold) under denitrifying conditions included nar, nir, and nor genes (associated, respectively, with nitrate reductase, nitrite reductase, and nitric oxide reductase, which catalyze successive steps of denitrification), cbbM (encoding form II RubisCO), and genes involved with sulfur compound oxidation (including two physically separated but highly similar copies of sulfide:quinone oxidoreductase and of dsrC, associated with dissimilatory sulfite reductase). Among genes associated with denitrification, relative expression levels (i.e., degree of upregulation with nitrate) tended to decrease in the order nar > nir > nor > nos. Reverse transcription-quantitative PCR analysis was used to validate these trends.

摘要

脱氮硫杆菌是少数已知的专性化能无机自养细菌之一,能够在能量上耦合硫代硫酸盐氧化与反硝化作用以及有氧呼吸。由于对于在有氧与反硝化条件下与关键化能无机自养功能(如硫化合物氧化和二氧化碳固定)相关基因的差异表达了解甚少,我们进行了全基因组cDNA微阵列研究以系统地探索这一主题。使用RMA(稳健多阵列平均)统计分析和两倍的截断值,微阵列鉴定出277个基因(约占基因组的10%)为差异表达基因。在有氧条件下上调(约6至150倍)的基因包括一组与铁获取相关的基因(如铁载体相关基因)、一组细胞色素cbb3氧化酶基因、cbbL和cbbS(分别编码I型核酮糖-1,5-二磷酸羧化酶/加氧酶或RubisCO的大亚基和小亚基)以及多个分子伴侣基因。在反硝化条件下上调(约4至95倍)的基因包括nar、nir和nor基因(分别与硝酸盐还原酶、亚硝酸盐还原酶和一氧化氮还原酶相关,它们催化反硝化的连续步骤)、cbbM(编码II型RubisCO)以及与硫化合物氧化相关的基因(包括硫化物:醌氧化还原酶和dsrC的两个物理上分离但高度相似的拷贝,与异化亚硫酸盐还原酶相关)。在与反硝化相关的基因中,相对表达水平(即硝酸盐诱导的上调程度)往往按nar>nir>nor>nos的顺序降低。使用逆转录定量PCR分析来验证这些趋势。

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