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Published on: January 17, 2014
Natural competence in Histophilus somni strain 2336
Nehal Shah1, Aloka B Bandara1, Indra Sandal1
1Virginia-Maryland Regional College of Veterinary Medicine, Blacksburg, VA 24061, USA.
Abstract:
Histophilus somni is an etiologic agent of shipping fever pneumonia, myocarditis, and other systemic diseases of bovines. Virulence factors that have been identified in H. somni include biofilm formation, lipooligosaccharide phase variation, immunoglobulin binding proteins, survival in phagocytic cells, and many others. However, to identify the genes responsible for virulence, an efficient mutagenesis system is needed. Mutagenesis of H. somni using allelic exchange is difficult, likely due to its tight restriction modification system. Mutagenesis by natural transformation in Haemophilus influenzae is well established and shows a strong bias for fragments containing specific uptake signal sequences (USS) within the genome. We hypothesized that natural transformation may also be possible in H. somni strain 2336 because its genome is over-represented with H. influenzae USS (5'-AAGTGCGGT-3') and contains most of the genes necessary for competence. H. somni strain 2336 was successfully transformed and mutated with genomic linear DNA from an H. somni mutant (738Δlob2a), which contains a kanamycin-resistance (Kan(R)) gene and the USS within lob2A. Although most of the competence genes found in H. influenzae were present in H. somni, comD and the 5' portion of comE were absent, which may account for the low transformation efficiency. The transformation efficiency of strain 2336 was greatest during mid-log growth phase and when cyclic adenosine monophosphate was added to the transformation medium. However, mutants were not isolated when strain 2336 was transformed with genomic DNA containing the same Kan(R) gene from H. somni luxS or uspE mutants, which lack the USS in these specific genes. Shuttle vector pNS3K was also naturally transformed into strain 2336, though at a lower efficiency. However, natural transformation with either H. somni linear DNA (2336Δlob2A) or pNS3K was unsuccessful with H. somni commensal strain 129Pt and several other disease isolates.
Insights
Developing a mutagenesis system for Histophilus somni is crucial for identifying virulence genes. Researchers successfully used natural transformation with specific DNA fragments, optimizing conditions for better efficiency in H. somni strain 2336.
Area of Science:
- Bacteriology
- Molecular Biology
- Animal Health
Background:
- Histophilus somni causes significant diseases in bovines, including pneumonia and myocarditis.
- Identifying virulence genes requires an efficient mutagenesis system, which is currently lacking for H. somni due to its restriction modification system.
- Natural transformation is a viable mutagenesis strategy in related bacteria like Haemophilus influenzae, relying on specific uptake signal sequences (USS).
Purpose of the Study:
- To investigate the feasibility of natural transformation as a mutagenesis system for H. somni.
- To identify optimal conditions for successful transformation and mutation in H. somni strain 2336.
- To determine the role of uptake signal sequences (USS) in H. somni natural transformation.
Main Methods:
- H. somni strain 2336 was transformed using linear genomic DNA containing a kanamycin-resistance gene and USS from a known mutant.
- Transformation efficiency was assessed under varying growth phases and media supplements (cyclic adenosine monophosphate).
- Shuttle vector pNS3K was also used for natural transformation, and attempts were made with other H. somni strains.
Main Results:
- Successful transformation and mutagenesis of H. somni strain 2336 were achieved using linear DNA with USS.
- Transformation efficiency was highest during mid-log growth phase with cyclic adenosine monophosphate supplementation.
- Transformation was unsuccessful with DNA lacking USS and with other H. somni strains, indicating strain-specific and USS-dependent transformation.
Conclusions:
- Natural transformation is a potential mutagenesis system for H. somni, particularly strain 2336.
- Uptake signal sequences (USS) are critical for efficient natural transformation in H. somni.
- Further optimization is needed, as evidenced by the absence of some competence genes and low efficiency with shuttle vectors.

