Sort by
Refine Your Search
-
Listed
-
Program
-
Employer
- Chalmers University of Technology
- SciLifeLab
- Karolinska Institutet (KI)
- Lunds universitet
- Swedish University of Agricultural Sciences
- University of Lund
- Luleå tekniska universitet
- Mälardalen University
- Sveriges Lantbruksuniversitet
- The Faculty of Technology and Society
- Umeå University
- Institutionen för mark och miljö
- KTH Royal Institute of Technology
- Linköping University
- Lulea University of Technology
- The Swedish University of Agricultural Sciences
- universitypositions
- 7 more »
- « less
-
Field
-
, represented as a set of raw sequences, graphs, or sequence alignments. In this project, we will conduct a comparative study of noncoding genomic regions. You should have expertise in algorithm design and high
-
, represented as a set of raw sequences, graphs, or sequence alignments. In this project, we will conduct a comparative study of noncoding genomic regions. You should have expertise in algorithm design and high
-
, DNA and RNA sequencing, and in vivo models. You must also enjoy scientific discussion, teamwork and active contribution to the projects by others in the lab. Your profile To be eligible for employment
-
About the position The exact tasks will depend on the skillset of the researcher and desired employment duration, but will include anaerobic cultivation of bacteria, single cell RNA sequencing, and
-
threatened by ash dieback. The successful candidate will contribute to developing the first Swedish-focused European ash pangenome, integrating long-read genome assemblies with population-scale sequencing
-
duration, but will include anaerobic cultivation of bacteria, single cell RNA sequencing, and communication with collaborators. Your profile The applicant must have expertise in molecular methods and be able
-
. Together with other research groups, we offer state-of-the-art core facilities providing cell sorting techniques, microscopy, sequencing, mouse facilities, and provide access to clinical samples
-
lab (marklundlab.com ), we investigate how sequence information in biological macromolecules governs recognition, binding, and dynamical structure. We combine high-throughput measurements of molecular
-
employing a combination of genetics, molecular biology, including Ribo-Seq, RNA pull-down and mass spectrometry, reporter assays in cells and tissues, and computational sequence analyses. This implies to work
-
double mutants and analyze their structure using cryo-Electron Microscopy technology. Interactions with CUL proteins will also be analyzed at the structural level. The phenotype of the multiple mutants