Area of research
Molecular Biology · Molecular Medicine
Research interest
Research interests include Genomics and Phylogenetic Studies, RNA Research and Splicing, Antibiotic Resistance in Bacteria, and Bioinformatics and Genomic Networks.
Pathogenic proteotoxicity of cryptic splicing is alleviated by ubiquitination and ER-phagy
The MetaInvert soil invertebrate genome resource provides insights into below-ground biodiversity and evolution
Adjustment of photosynthetic activity to drought and fluctuating light in wheat
What Is in Umbilicaria pustulata? A Metagenomic Approach to Reconstruct the Holo-Genome of a Lichen
Apoptotic tumor cell-derived microRNA-375 uses CD36 to alter the tumor-associated macrophage phenotype
Advances and Applications in the Quest for Orthologs
Combined single-cell profiling of expression and DNA methylation reveals splicing regulation and heterogeneity
Natural product diversity associated with the nematode symbionts Photorhabdus and Xenorhabdus
The draft genome of blunt snout bream (<i>Megalobrama amblycephala</i>) reveals the development of intermuscular bone and adaptation to herbivorous diet
An Annotated Draft Genome for Radix auricularia (Gastropoda, Mollusca)
An evolutionary perspective of AMPK–TOR signaling in the three domains of life
Acinetobacter baumannii Virulence Is Mediated by the Concerted Action of Three Phospholipases D
Positive selection in development and growth rate regulation genes involved in species divergence of the genus Radix
A transcriptome approach to ecdysozoan phylogeny
Transcriptome Data Reveal Syndermatan Relationships and Suggest the Evolution of Endoparasitism in Acanthocephala via an Epizoic Stage
Improved software detection and extraction of ITS1 and <scp>ITS</scp> 2 from ribosomal <scp>ITS</scp> sequences of fungi and other eukaryotes for analysis of environmental sequencing data
Decisive Data Sets in Phylogenomics: Lessons from Studies on the Phylogenetic Relationships of Primarily Wingless Insects
New phylogenomic data support the monophyly of Lophophorata and an Ectoproct-Phoronid clade and indicate that Polyzoa and Kryptrochozoa are caused by systematic bias