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1. Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria.

2. Using long-read sequencing to detect imprinted DNA methylation

3. Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome

4. De novo assembly, characterization, functional annotation and expression patterns of the black tiger shrimp (Penaeus monodon) transcriptome

5. Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome.

6. Introducing BASE: the Biomes of Australian soil environments soil microbial diversity database

7. Introducing BASE: the Biomes of Australian Soil Environments soil microbial diversity database

8. Changing of the Guard: Migrating 16S and ITS Diversity Profiling from 454 Onto Alternate NGS Platforms

9. A comprehensive assessment of RNA-seq accuracy, reproducibility and information content by the Sequencing Quality Control Consortium

10. Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria.

12. Genome assembly of the Australian black tiger shrimp (Penaeus monodon) reveals a novel fragmented IHHNV EVE sequence.

13. Using long-read sequencing to detect imprinted DNA methylation.

14. De novo assembly, characterization, functional annotation and expression patterns of the black tiger shrimp (Penaeus monodon) transcriptome.

15. Optical and physical mapping with local finishing enables megabase-scale resolution of agronomically important regions in the wheat genome.

16. Erratum to: Introducing BASE: the Biomes of Australian Soil Environments soil microbial diversity database.

17. Introducing BASE: the Biomes of Australian Soil Environments soil microbial diversity database.

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