Lactobacillus acidophilus: Difference between revisions

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==Genome structure==
==Genome structure==


The complete genome of ''Lactobacillus acidophilus'' NCFM contains 1,993,564 nucleotides and has no plasmids. Its average GC content is 34.71% and 1,864 ORFs were predicted. 72.5% of the ORFs were classified as functional.
The complete genome of ''Lactobacillus acidophilus'' NCFM contains 1,993,564 nucleotides and has no plasmids. Its average GC content is 34.71% and 1,864 ORFs were predicted. 72.5% of the ORFs were classified as functional.<ref>http://www.pnas.org/content/102/11/3906.full.pdf+html</ref>




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http://www.jacn.org/cgi/reprint/18/1/43.pdf [http://www.jacn.org/cgi/reprint/18/1/43.pdf]
http://www.jacn.org/cgi/reprint/18/1/43.pdf [http://www.jacn.org/cgi/reprint/18/1/43.pdf]
http://www.pnas.org/content/102/11/3906.full.pdf+html [http://www.pnas.org/content/102/11/3906.full.pdf+html]

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Lactobacillus acidophilus
Lacidophilus01.png
Scientific classification
Domain: Bacteria
Phylum: Firmicutes
Class: Bacilli
Order: Lactobacillales
Family: Lactobacillaceae
Genus: Lactobacillus
Species: L. acidophilus
Binomial name
Lactobacillus acidophilus

Description and significance

Lactobacillus acidophilus is a species of gram-positive bacteria commonly used in dairy production. L. acidophilus is also one of the most common forms of probiotics, which are "friendly bacteria".[1] L. acidophilus is found in the human and animal gut, mouth, and vagina. It functions as a lactic acid producer, by metabolizing lactose to lactic acid. The acid produced by L. acidophilus can control the growth of the fungus Candida albicans, which is the cause of Oral thrush and vaginal yeast infections.[2] The acid produced can also prevent unwanted organisms living in the gut. L. acidophilus is commonly used in the production of yogurt, where it is labeled as an active or live culture. People that are lactose intolerant are able to digest dairy products containing L. acidophilus better than dairy products without it.[3] Selected strains of L. acidophilus have shown significant reductions of cholesterol in humans, lowering the risk of coronary heart disease.[4]

Genome structure

The complete genome of Lactobacillus acidophilus NCFM contains 1,993,564 nucleotides and has no plasmids. Its average GC content is 34.71% and 1,864 ORFs were predicted. 72.5% of the ORFs were classified as functional.[5]



Cell structure and metabolism

Ecology

Pathology

Application to Biotechnology

Current Research

References

http://www.umm.edu/altmed/articles/lactobacillus-acidophilus-000310.htm [1]

http://jds.fass.org/cgi/reprint/63/5/830.pdf [2]

http://jds.fass.org/cgi/content/abstract/66/5/959 [3]

http://www.jacn.org/cgi/reprint/18/1/43.pdf [4]

http://www.pnas.org/content/102/11/3906.full.pdf+html [5]