Doctoral thesis (Dissertations and theses)
Integration of omics data for biotechnology-relevant microbial communities
Herold, Malte
2018
 

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Keywords :
Integrated omics; Biomining; Lipid-accumulating organisms; wastewater treatment; chalcopyrite
Abstract :
[en] Naturally occurring and artificial bacterial communities play an import role in many biotechnological processes. To elucidate bacterial interactions that are important for potential optimized biotechnological applications, high-throughput measurements of biomolecules, metagenomics, metratranscriptomics,metaproteomics, and meta-metabolomics provide a detailed snapshot of mixed microbial consortia. Integration of multiple layers of omics data allows to reconstruct structure and function of complex microbial communities and is demonstrated for two different model systems. The first chapter focuses on synthetic communities consisting of strains representing key species found in biomining operations and acid mine drainage and that are of economical interest for copper production. A high-quality closed reference genome for L. ferriphilum was obtained by DNA sequencing and was subsequently used to integrate functional omics data, i.e. transcriptomic and proteomic profiling. The combination of genomics, genome annotation, and functional omics data allowed an in-depth characterization of L. ferriphilum in culture medium and in the presence of the iron sulfide mineral chalcopyrite, an economically relevant copper ore. Subsequently, analyses were performed for co-cultures of up to three organisms highlighting specific interaction mechanisms. The cultures without L. ferriphilum showed higher copper solubilisation rates, as the highly efficient iron oxidiser might raise the redox potential above the optimal range. For in situ studies, reference-based analyses are of limited use, e.g. due to a lack in reference genomes of culturable isolates. Hence, the second chapter focuses on an approach to study mixed microbial communities independent of prior knowledge and available reference genomes. A timeseries of oleaginous floating sludge samples that spans over one and a half years was analysed by integrating metagenomic, metatranscriptomic, metaproteomic, and meta-metabolomic data. This allowed the reconstruction of population level genomes and the characterization of the niches of the respective populations. The functional potential was assessed, as well as expression profiles over time, yielding a detailed view on lifestyle strategies and the potential impact of abiotic factors. Understanding the niche ecology of the predominant lipid accumulators in the system could lead towards optimized biofuel production.
Research center :
- Luxembourg Centre for Systems Biomedicine (LCSB): Eco-Systems Biology (Wilmes Group)
Disciplines :
Biochemistry, biophysics & molecular biology
Microbiology
Environmental sciences & ecology
Author, co-author :
Herold, Malte ;  University of Luxembourg > Luxembourg Centre for Systems Biomedicine (LCSB) ; University of Luxembourg > Faculty of Science, Technology and Communication (FSTC)
Language :
English
Title :
Integration of omics data for biotechnology-relevant microbial communities
Defense date :
20 November 2018
Number of pages :
xii, 131 + 144
Institution :
Unilu - University of Luxembourg, Esch-sur-Alzette, Luxembourg
Degree :
Docteur en Biologie
Promotor :
Secretary :
Jury member :
Abram, Florence
Pope, Phillip
Focus Area :
Systems Biomedicine
European Projects :
FP7 - 321567 - ERASYSAPP - ERASysAPP - Systems Biology Applications
Name of the research project :
SysMetEx
Funders :
FNR - Fonds National de la Recherche [LU]
CE - Commission Européenne [BE]
Available on ORBilu :
since 06 December 2018

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