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techniques (e.g., DNA/RNA extraction, PCR, qPCR, metagenomics, transcriptomics) to study microbial communities in soil environments. Develop and optimize laboratory protocols for characterization, and
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metagenomic, transcriptomic, and proteomic analyses to understand microbial responses to metal stress. Apply biotechnological or bioaugmentation strategies to enhance remediation performance. Publish findings
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. Expertise in microbiome data analysis, metagenomics, or metaproteomics. Proficiency in bioinformatics tools for multi-omics data processing Strong publication record in relevant fields. Ability to work in a
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. Isolate, characterize, and manipulate microbial strains with metal resistance capabilities. Conduct metagenomic, transcriptomic, and proteomic analyses to understand microbial responses to metal stress
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independently and collaboratively in a multidisciplinary research environment. Desired Skills: Familiarity with advanced microbiome analysis techniques (16S rRNA sequencing, shotgun metagenomics…). Experience
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bioproducts on soil biology, soil carbon, microbial diversity, and functional genomics. Apply molecular biology techniques (e.g., DNA/RNA extraction, PCR, qPCR, metagenomics, transcriptomics) to study microbial
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, Bioinformatics, Soil Science, Plant Science, Environmental Science, or a related field. Expertise in microbiome data analysis, metagenomics, or metaproteomics. Proficiency in bioinformatics tools for multi-omics
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advanced microbiome analysis techniques (16S rRNA sequencing, shotgun metagenomics…). Experience with soil biodiversity assessments and bioinformatics tools for microbial community analysis. Knowledge