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1.
PLoS One ; 10(7): e0134149, 2015.
Article in English | MEDLINE | ID: mdl-26230316

ABSTRACT

The Lactobacillus buchneri CD034 strain, known to improve the ensiling process of green fodder and the quality of the silage itself was transcriptionally analyzed by sequencing of transcriptomes isolated under anaerobic vs. aerobic conditions. L. buchneri CD034 was first cultivated under anaerobic conditions and then shifted to aerobic conditions by aeration with 21% oxygen. Cultivations already showed that oxygen was consumed by L. buchneri CD034 after aeration of the culture while growth of L. buchneri CD034 was still observed. RNA sequencing data revealed that irrespective of the oxygen status of the culture, the most abundantly transcribed genes are required for basic cell functions such as protein biosynthesis, energy metabolism and lactic acid fermentation. Under aerobic conditions, 283 genes were found to be transcriptionally up-regulated while 198 genes were found to be down-regulated (p-value < 0.01). Up-regulated genes i. a. play a role in oxygen consumption via oxidation of pyruvate or lactate (pox, lctO). Additionally, genes encoding proteins required for decomposition of reactive oxygen species (ROS) such as glutathione reductase or NADH peroxidase were also found to be up-regulated. Genes related to pH homeostasis and redox potential balance were found to be down-regulated under aerobic conditions. Overall, genes required for lactic acid fermentation were hardly affected by the growth conditions applied. Genes identified to be differentially transcribed depending on the aeration status of the culture are suggested to specify the favorable performance of the strain in silage formation.


Subject(s)
Lactobacillus/genetics , Oxygen/metabolism , RNA, Bacterial/metabolism , RNA, Messenger/metabolism , Sequence Analysis, RNA , Down-Regulation , Genes, Bacterial , Lactobacillus/growth & development , RNA, Bacterial/genetics , RNA, Messenger/genetics , Transcriptome , Up-Regulation
2.
J Biotechnol ; 201: 43-53, 2015 May 10.
Article in English | MEDLINE | ID: mdl-25455016

ABSTRACT

The final step of the biogas production process, the methanogenesis, is frequently dominated by members of the genus Methanoculleus. In particular, the species Methanoculleus bourgensis was identified to play a role in different biogas reactor systems. The genome of the type strain M. bourgensis MS2(T), originally isolated from a sewage sludge digestor, was completely sequenced to analyze putative adaptive genome features conferring competitiveness within biogas reactor environments to the strain. Sequencing and assembly of the M. bourgensis MS2(T) genome yielded a chromosome with a size of 2,789,773 bp. Comparative analysis of M. bourgensis MS2(T) and Methanoculleus marisnigri JR1 revealed significant similarities. The absence of genes for a putative ammonium uptake system may indicate that M. bourgensis MS2(T) is adapted to environments rich in ammonium/ammonia. Specific genes featuring predicted functions in the context of osmolyte production were detected in the genome of M. bourgensis MS2(T). Mapping of metagenome sequences derived from a production-scale biogas plant revealed that M. bourgensis MS2(T) almost completely comprises the genetic information of dominant methanogens present in the biogas reactor analyzed. Hence, availability of the M. bourgensis MS2(T) genome sequence may be valuable regarding further research addressing the performance of Methanoculleus species in agricultural biogas plants.


Subject(s)
Biofuels , Genome, Archaeal/genetics , Methanomicrobiaceae/genetics , Chromosomes, Archaeal/genetics , DNA, Archaeal/genetics , Nitrogen/metabolism
3.
J Biotechnol ; 168(4): 734-6, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24184088

ABSTRACT

Methanobacterium sp. Mb1, a hydrogenotrophic methanogenic Archaeon, was isolated from a rural biogas plant producing methane-rich biogas from maize silage and cattle manure in Germany. Here we report the complete genome sequence of the novel methanogenic isolate Methanobacterium sp. Mb1 harboring a 2,029,766 bp circular chromosome featuring a GC content of 39.74%. The genome encodes two rRNA operons, 41 tRNA genes and 2021 coding sequences and represents the smallest genome currently known within the genus Methanobacterium.


Subject(s)
Genome, Archaeal/genetics , Methanobacterium/genetics , Sequence Analysis, DNA , Animals , Base Sequence , Cattle/microbiology , Methane/metabolism , Molecular Sequence Data , Phylogeny , RNA, Ribosomal, 16S/genetics , Zea mays/microbiology
4.
J Bacteriol ; 194(19): 5487-8, 2012 Oct.
Article in English | MEDLINE | ID: mdl-22965103

ABSTRACT

Methanoculleus bourgensis, of the order Methanomicrobiales, is a dominant methanogenic archaeon in many biogas-producing reactor systems fed with renewable primary products. It is capable of synthesizing methane via the hydrogenotrophic pathway utilizing hydrogen and carbon dioxide or formate as the substrates. Here we report the complete and finished genome sequence of M. bourgensis strain MS2(T), isolated from a sewage sludge digester.


Subject(s)
Gene Expression Regulation, Archaeal/physiology , Genome, Archaeal , Hydrogen/metabolism , Methane/biosynthesis , Methanomicrobiaceae/classification , Methanomicrobiaceae/genetics , Carbon Dioxide/metabolism , Molecular Sequence Data
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