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1. Gene content evolution in the arthropods

2. The genome and developmental transcriptome of the strongylid nematode Haemonchus contortus

3. Whole-genome sequence of the bovine blood fluke Schistosoma bovis supports interspecific hybridization with S. haematobium.

4. Improved genomic resources and new bioinformatic workflow for the carcinogenic parasite Clonorchis sinensis: Biotechnological implications.

5. Use of a bioinformatic-assisted primer design strategy to establish a new nested PCR-based method for Cryptosporidium.

6. Making sense of genomes of parasitic worms: Tackling bioinformatic challenges.

7. Chapter Two - Harnessing the Toxocara Genome to Underpin Toxocariasis Research and New Interventions.

8. The Haemonchus contortus kinome - a resource for fundamental molecular investigations and drug discovery.

9. Comparative bioinformatic analysis suggests that specific dauer-like signalling pathway components regulate Toxocara canis development and migration in the mammalian host.

10. Molecular alterations during larval development of Haemonchus contortus in vitro are under tight post-transcriptional control.

11. The apicoplast genomes of two taxonomic units of Babesia from sheep.

12. Mitochondrial genomes of two Babesia taxa from sheep in China as a foundation for population genetic and epidemiological investigations.

13. Bioinformatic exploration of RIO protein kinases of parasitic and free-living nematodes.

14. Getting the most out of parasitic helminth transcriptomes using HelmDB: Implications for biology and biotechnology.

15. Mitochondrial genomes of Trichinella species and genotypes – a basis for diagnosis, and systematic and epidemiological explorations.

16. Insights into the immuno-molecular biology of Angiostrongylus vasorum through transcriptomics—Prospects for new interventions.

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