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evaluating new quantitative mass spectrometry methods. Using a broad range of industry vaccine and antigen samples (not live bacteria or toxins) you will assess the specificity and selectivity, as
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-time postdoctoral fellow to study the ecology and evolution of the vaginal microbiome using wet lab and/or computational approaches. Our research focuses on phage–bacteria and bacteria–bacteria
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variety of wet-lab and dry-lab projects investigating bacteria, fungi, and other microbes that live in fermented foods such as surface-ripened cheeses, fermented vegetables, and sourdough. They will also
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geotechnical barriers. Carbonate minerals such as siderite (FeCO3) play a central role in clay formations and as secondary phases on corroded waste containers. Iron-reducing bacteria can also form this mineral
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on hydrogen. Mutant strains will then be optimized for growth on hydrogen through adaptive laboratory evolution. Changes in the bacteria will be analyzed through sequencing and proteomics infrastructure
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. Ewelina Małecka is seeking a highly motivated, creative, and independent Postdoctoral Researcher to join our team. You will join the project entitled “RNA biology at the phage–bacteria interface” carried
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. coli. The selected candidate will identify the molecular mechanisms involved in the dissemination of pathogenic bacteria into the bloodstream, despite activation of the complement and coagulation systems
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. About us The research of the department focusses on plants, but other organisms such as virus, bacteria, fungi, insects, yeast cells and even human cells are also studied. Our main areas or research
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: Expertise with sterile techniques and bacterial culturing techniques. Experience with genetic transformation and mutagenesis in bacteria. Experience with microscopy techniques. Experience with execution
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within plant microbiomes. As a postdoc, you will delve into genomics and metagenomics data to dissect the signaling systems of plant-associated bacteria and analyze the genomic features of beneficial