Myxococcus xanthus: Difference between revisions

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==Description and significance==
==Description and significance==
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'''''Myxococcus xanthus''''' is a social organism, which are self-organized, saprotrophic and predatory. M. Xanthus is a rod shaped, gram negative bacteria, which uses a form of gliding for locomotion. There's been recent discovery of two types of systems used for locomotion. The first system is type IV pilli, which is used as a type of hook. The second system is mucus secreting, which tend to form sites of focal adhesion.
'''''Myxococcus xanthus''''' is a social organism, which are self-organized, saprotrophic and predatory. M. Xanthus is a rod shaped, gram negative bacteria, which uses a form of gliding for locomotion. There's been recent discovery of two types of systems used for locomotion. The first system is type IV pilli, which is used as a type of hook. The second system is mucus secreting, which tend to form sites of focal adhesion. During starvation periods M. xanthus tends to form fruiting bodies. Within these fruiting bodies there are spores. These spores will germinate in order to return to a vegetative cycle as soon as conditions are favorable.


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

Revision as of 13:40, 18 April 2009

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Scientific classification


Description and significance

[1] Myxococcus xanthus is a social organism, which are self-organized, saprotrophic and predatory. M. Xanthus is a rod shaped, gram negative bacteria, which uses a form of gliding for locomotion. There's been recent discovery of two types of systems used for locomotion. The first system is type IV pilli, which is used as a type of hook. The second system is mucus secreting, which tend to form sites of focal adhesion. During starvation periods M. xanthus tends to form fruiting bodies. Within these fruiting bodies there are spores. These spores will germinate in order to return to a vegetative cycle as soon as conditions are favorable.

Genome structure

Cell structure and metabolism

Ecology

Pathology

Application to biotechnology

Current research

Current locomotion studies have revealed that the synchronizing of both motor systems is due to spatial oscillation of motility proteins.

References

<http://en.wikipedia.org/wiki/Myxococcus_xanthus>

<http://microbewiki.kenyon.edu/index.php/Mycoccus_xanthus>

<Genetic circuitry controlling motility behaviors of Myxococcus xanthus Taˆ m Mignot1* and John R. Kirby2 >


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  1. reference here