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provirus. The group focuses on understanding how non-self DNA sequences, such as the integrated HIV-1 genome, is controlled by interactions between host and viral mechanisms. Infection by HIV-1 establishes a
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is to improve the understanding of adaptive mechanisms employed by different gut bacteria at a high resolution to guide next generation microbiota aided therapies. Project description Studying
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by the Knut and Alice Wallenberg Foundation and the Swedish Research Council’s centres of excellence, this research school focuses on modelling adaptive mechanisms in living systems under stress. It
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, is controlled by interactions between host and viral mechanisms. Infection by HIV-1 establishes a persistent reservoir of infected cells. This reservoir is initially heterogenous, but during antiviral
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wide differences within human gut bacteria species across different populations. Our goal is to improve the understanding of adaptive mechanisms employed by different gut bacteria at a high resolution to
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methods to unravel the gene regulatory mechanisms underlying fundamental biological processes. We aim to understand how these processes are disrupted in various diseases. Our extensive collaborations with
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regeneration fails. We use a multidisciplinary approach that involves stem cell biology, systems biology, computational biology, molecular engineering and mouse models of disease. The current project will use in
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at Luleå University of Technology (www.ltu.se ). AMD is the single largest environmental challenge for the mining industry, both in terms of potential consequences and operating costs. AMD is a natural
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master regulatory mechanisms of plant stress responses. The position is for four years of full-time doctoral studies. The employment starts in August 2025 or according to an agreement. The application
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strain wide differences within human gut bacteria species across different populations. Our goal is to improve the understanding of adaptive mechanisms employed by different gut bacteria at a high