Antibiosis

Antibiosis is a biological interaction between two or more organisms that is detrimental to at least one of them; it can also be an antagonistic association between an organism and the metabolic substances produced by another.[1] Examples of antibiosis include the relationship between antibiotics and bacteria or animals and disease-causing pathogens. The study of antibiosis and its role in antibiotics has led to the expansion of knowledge in the field of microbiology. Molecular processes such cell wall synthesis and recycling, for example, have become better understood through the study of how antibiotics affect beta-lactam development through the antibiosis relationship and interaction of the particular drugs with the bacteria subjected to the compound.[2]

Antibiosis is typically studied in host plant populations and extends to the insects which feed upon them.

"Antibiosis resistance affects the biology of the insect so pest abundance and subsequent damage is reduced compared to that which would have occurred if the insect was on a susceptible crop variety. Antibiosis resistance often results in increased mortality or reduced longevity and reproduction of the insect."[3]

See also

References

  1. "antibiosis". The Free Dictionary.
  2. KF, Kong (January 2010). "Beta-lactam antibiotics: from antibiosis to resistance and bacteriology". APMIS : Acta pathologica, microbiologica, et immunologica Scandinavica. 118 (1): 1–36. doi:10.1111/j.1600-0463.2009.02563.x. PMC 2894812. PMID 20041868.
  3. Teetes, George L. "Plant Resistance to Insects: A Fundamental Component of IPM". Radcliffe's IPM World Textbook. University of Minnesota. Archived from the original on 2012-03-24. Retrieved 2011-11-07.
  • Fravel, D R (1988). "Role of Antibiosis in the Biocontrol of Plant Diseases". Annual Review of Phytopathology. 26 (1): 75–91. doi:10.1146/annurev.py.26.090188.000451.
  • Haggag, W.; H. Mohamed (2007). "Biotechnological Aspects of Microorganisms Used in Plant Biological Control" (PDF). World Journal of Agricultural Sciences. 3 (6): 771–776.


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