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De novo assembly of the Pasteuria penetrans genome reveals high plasticity, host dependency, and BclA-like collagens
Jamie Orr
, Tim H. Mauchline
, Peter Cock
, Vivian Blok
,
Keith Davies
Agriculture, Food and Veterinary Sciences
Crop Protection and Climate Change
Department of Clinical, Pharmaceutical and Biological Science
Centre for Agriculture, Food and Environmental Management Research
Research output
:
Working paper
29
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Dive into the research topics of 'De novo assembly of the Pasteuria penetrans genome reveals high plasticity, host dependency, and BclA-like collagens'. Together they form a unique fingerprint.
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Immunology and Microbiology
Pasteuria
100%
Endospore
100%
Nematode
33%
Parasitic Nematodes
33%
Molecular Weight
33%
Cuticle
33%
Meloidogyne
33%
Cladistics
33%
Gene Amplification
33%
Transposase
33%
Molecular Mechanic
33%
Thermoactinomyces
33%
In Vitro
33%
Bacterium
33%
Parasite
33%
Biochemistry, Genetics and Molecular Biology
Genomics
100%
Pasteuria
100%
Metabolic Pathway
50%
Nematode
50%
Genetics
25%
Cladistics
25%
Molecular Weight
25%
Meloidogyne
25%
Gene Amplification
25%
Transposase
25%
Molecular Mechanic
25%
Bacilli
25%
Parasitic Plant
25%
Thermoactinomyces
25%
Parasite
25%
Bacterium
25%
Keyphrases
Phenotypic Plasticity
33%
Assembly Algorithm
33%