Actinomyces israelii NEUF2011: Difference between revisions

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==Genome structure==
==Genome structure==
Describe the size and content of the genome.  How many chromosomes?  Circular or linear?  Other interesting features?  What is known about its sequence?


The 16S ribosomal RNA sequence in Actinomyces bacteria is used to differentiate between more and less closely related species within the genus. Most literature about Actinomyces israelii currently discusses this sequence as significant, with little discussion about other gene sequences (Clinical Microbiology Review, NCBI).
The 16S ribosomal RNA sequence in Actinomyces bacteria is used to differentiate between more and less closely related species within the genus. This is because this sequence tends to vary between species in the genus. Literature about ''A. israelii'' currently discusses this sequence as significant, with little discussion about other gene sequences (Clinical Microbiology Review, NCBI).


==Cell structure and metabolism==
==Cell structure and metabolism==

Revision as of 18:36, 1 November 2011

This student page has not been curated.

A Microbial Biorealm page on the genus Actinomyces israelii NEUF2011

Classification

Higher order taxa

Superkingdom: Bacteria Phylum: Actinobacteria Class: Actinobacteria Order: Actinomycetales Family: Actinomycetaceae Genus: Actinomyces

 Use NCBI link to find]

Species

NCBI: Taxonomy

Species: A. israelii

http://microbewiki.kenyon.edu/images/3/3c/Screen_Shot_2011-10-04_at_4.00.36_PM.png

Description and significance

Actinomyces israelii is a filamentous anaerobic bacteria that is gram positive, non-spore forming, and non-acid-fast("Actinomyces israelii" ). It is an organism typically found in the soil and in decaying organic matter including wet hay and straw, but is can also be found in oral cavities, dental plaques2 and the intestinal tract of mammals. Although A. israelii is not normally a disease causing organism, it is the primary causative agent of Actinomycosis, a long term infection that commonly affects the face and neck3. A. israelii is sensitive to penicillin, ampicillin, tetracyclines, chloramphenicol, clindamycin, and selected aminoglycosides("Actinomyces israelii" ).



1 Actinomyces israelii | humen health.. (n.d.). Retrieved from http://www.humenhealth.com/actinomyces-israelii

2 Roque, Manolette R. "Actinomycosis in Opthalmology." Medscape Reference. Web. 4 Oct. 2011. <http://emedicine.medscape.com/article/1203061-overview#a0101>

3 "Actinomycosis - PubMed Health." PubMed Health. Ed. David C. Dugdale. 1 Dec. 2009. Web. 04 Oct. 2011. <http://www.ncbi.nlm.nih.gov/pubmedhealth/PMH0001625/>

Genome structure

The 16S ribosomal RNA sequence in Actinomyces bacteria is used to differentiate between more and less closely related species within the genus. This is because this sequence tends to vary between species in the genus. Literature about A. israelii currently discusses this sequence as significant, with little discussion about other gene sequences (Clinical Microbiology Review, NCBI).

Cell structure and metabolism

The cell surface of A. israelii is covered with a thick and fuzzy coat. The Gram-positive cell wall is surrounded by the fuzzy outer coat, with hair-like fimbriae covering the surface and extending from it (Figdor).

Gram-stain of A. israelii from the article Experimental Oral Chronic Infection Induced by Actinomyces israelii and Propionibacterium acnes, published in Arquivos em Odontologia. Quirino et al. 2007.

A. israelii is anaerobic to micro-aerobic (Porteous). A. israelii requires nicotinic acid, riboflavin, pyridoxal, and biotin as growth factors in media. The bacteria synthesize coenzyme-A de novo for metabolic function. The amino acid L-cysteine is essential to the nutrition of A. israelii (Christie). A. israelii does not produce catalase, and does not contain CAMP factors. The bacteria is able to reduce nitrate and hydrolyze urea, as well as ferment arabinose, maltose, sucrose, xylose, and trehalose. A. israelii produces Beta-galactosidase, meaning it is able to break down lactose (JCM).

Ecology

Habitat; symbiosis; contributions to the environment.

A. israelii is a very successful species of bacteria which can be found in a wide range of habitats including both natural and man made habitats. This bacteria is a natural component of the human gastrointestinal and oral flora1.

Also commonly found in soil, among other members of its order Actinomycetales, A. israelii have a significant role in the recycling of nutrients. This bacteria is considered a thermophile, and generally only become metabolically active in the presence of appropriate nutrients and conditions2. Actinomycetes, including A. israelii are thought to be very efficient in degrading polymers occurring naturally in plant litter and soil. A. israelii primarily finds means of dispersal through water movement, and arthropods2.



1Ferrari, T. A., Couto, C. A., Murta-Oliveira, C. C., Conceição, S. A., & Silva, R. G. (2000). Actinomycosis of the Colon: A Rare Form of Presentation. Scandinavian Journal of Gastroenterology, 35(1), 108-109.

2Goodfellow, M., and S. T. Williams. "Ecology of Actinomycetes." Ann. Rev. Microbial. 1983. 37:189-216 37 (1983): 189-216. Print.

Pathology

How does this organism cause disease? Human, animal, plant hosts? Virulence factors, as well as patient symptoms.

A. israelii is the cause of 56% of actinomycotic abscess and empyema. Actinomycosis is a rare infection in humans which manifests itself in abscess formation, tissue fibrosis, and the formation of drainage sinuses. The most common forms of actinomycosis are cervicofacial actinomycosis, thoracic actinomycosis, adbominopelvic actinomycosis, and central nervous system actinomycosis (Gaini). A. israelii is able to grow in host tissue by surviving the host's defenses such as phagocytes. The bacteria do this by growing in colonies made up of cohesive branching filaments of cells. Structures called fimbriae on the cell surface that are similar to, but smaller than flagella, and made of protein located on the bacterial cell surface allow A. israelii to grow in these colonies. A. israelii cells make connections to surfaces, such as tissues and teeth, as well as to one another, forming the filamentous colonies that allow the cells to avoid phagocytosis by the host immune response (Figdor).

Treatment of Actinomycosis caused by A. israelii is usually with antibiotics for a long period of time, up to a year. If the abscess persists after this treatment the abscess is drained surgically. Since A. israelii is usually a normal non-pathogenic organism living in the mouth, good oral hygiene can prevent some forms of Actinomycosis caused by A. israelii (Dugdale).

Current Research

A current study by Braz-Silva et al. (2010) discusses the usefulness of simple cytological techniques, such as stains, to identify the infectious agents growing in the mouth. This could help to diagnose infections like Actinomycosis caused by A. israelii sooner by using the rapid techniques such as Gram-staining. A gram stain of A. israeli would show a Gram-positive organism, highlighting the branching filaments covering the cell that would allow fast identification of the bacteria.

Cool Factor

Describe something you fing "cool" about this microbe.

References

[Sample reference] Takai, K., Sugai, A., Itoh, T., and Horikoshi, K. "Palaeococcus ferrophilus gen. nov., sp. nov., a barophilic, hyperthermophilic archaeon from a deep-sea hydrothermal vent chimney". International Journal of Systematic and Evolutionary Microbiology. 2000. Volume 50. p. 489-500.

Edited by student of Iris Keren

Braz-Silva P., Magalhães M., Hofman P., et al. (2010). Usefulness of oral cytopathology in the diagnosis of infectious diseases. Cytopathology, 21(5):285-299.

Clinical Microbiology Reviews. (2004). NCBI, 17, 840–862. http://www.ncbi.nlm.nih.gov/pmc/articles/PMC523561/pdf/0041-04.pdf

Porteous, J.W. The nutrition of the micro-aerophilic pathogen Actinomyces israelii. Nutrition of Microorganisms, 23.

Dugdale, D.C., Vyas, J.M.. (2009). Actinomycosis. MedlinePlus, NIH. http://www.nlm.nih.gov/medlineplus/ency/article/000599.htm

Christie, A.O., & Porteous, J.W. (1962). The Growth Factor Requirements of the Wills Strain of Actimonyces israelii Growing in a Chemically Defined Medium. General Microbiology, 28.

Journal of Clinical Microbiology. (2001). 39,11, 3955-3961.

Gaini, S., Roge, B., Pedersen, C., Pedersen, S., & Brenoe, A. (2006). Severe Actinomyces israelii infection involving the entire spinal cord. Scandinavian Journal of Infectious Diseases, 38(3), 211-213.

Figdor, D. & Davies, J. (1997). Cell surface structures of Actinomyces israelii. Australian Dental Journal, 42:(2):125-128.