Genetic Approaches to The Study of Oral Microflora: A Review

Author:

Macrina Francis L.1,Dertzbaugh Mark T.2,Halula Madelon C.3,Krah E. Regis4,Jones Kevin R.5

Affiliation:

1. Department of Microbiology and Immunology, 5-047 Sanger Hall, Virginia Commonwealth University Box 678 MCV Station, Richmond, Virginia 23298-0678

2. Department of Gastroenterology, University of Alabama, Birmingham

3. Department of Microbiology and Immunology, Virginia Commonwealth University, Richmond

4. Research Fellow, Central Research and Development, E.I. du Pont, P.O. Box 80328, Wilmington, Delamare 19880-0328

5. Department of Microbiology and Immunology, Medicale College of Virginia—Virginia Commonwealth University, Richmond

Abstract

As the study of oral microorganisms intensified almost 2 decades ago, the application of genetic techniques resulted in important contributions to the understanding of this clinically and ecologically important group of bacteria. The isolation and characterization of mutants of cariogenic streptococci helped to focus attention on traits that were important in colonization and virulence. Such classic genetic approaches gave way to molecular genetic techniques, including recombinant DNA methodology in the late 1970s. Gene cloning systems and methods to move DNA into cells have been developed for oral streptococci. Many streptococcal genes thought to be important in colonization and virulence have since been cloned and their nucleotide sequence determined. Mutant strains have been constructed using defective copies of cloned genes in order to create specific genetic lesions on the bacterial chromosome. By testing such mutants in animal models, a picture of the cellular and molecular basis of dental caries is beginning to emerge. These modem genetic methodologies also are being employed to develop novel and efficacious cell-free or whole cell vaccines against this infection. Genetic approaches and analyses are now being used to dissect microorganisms important in periodontal disease as well. Such systems should be able to exploit advances made in genetically manipulating related anaerobes, such as the intestinal Bacteroides. Gene cloning techniques in oral anaerobes, Actinomyces and Actinobacillus, are already beginning to pay dividends in helping understand gene structure and expression. Additional effort is needed to develop facile systems for genetic manipulation of these important groups of microorganisms.

Publisher

SAGE Publications

Subject

General Dentistry,Otorhinolaryngology

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