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Dexamethasone, a Specific $PLA_2$ Inhibitor, Allows Nonpathogenic Pseudomonas fluorescens to Induce Virulence Against Spodoptera exigua
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  • Dexamethasone, a Specific $PLA_2$ Inhibitor, Allows Nonpathogenic Pseudomonas fluorescens to Induce Virulence Against Spodoptera exigua
  • Dexamethasone, a Specific $PLA_2$ Inhibitor, Allows Nonpathogenic Pseudomonas fluorescens to Induce Virulence Against Spodoptera exigua
저자명
Cho. Sung-Hwan,Kim. Yong-Gyun
간행물명
Journal of Asia-Pacific entomology
권/호정보
2006년|9권 1호|pp.31-36 (6 pages)
발행정보
한국응용곤충학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Phospholipase $A_2;(PLA_2)$ catalyzes phospholipids at sn-2 position to release arachidonic acid (20:4n-6). The arachidonic acid is further oxidized to form different eicosanoids, which play biological mediators to express cellular or humoral immune reactions in response to pathogen infection. Xenorahbdus and Photorhabdus, the symbiotic bacteria of entomopathogenic nematodes, have been known to inhibit $PLA_2$ to express their pathogenicity. This research aimed to test a hypothesis that other entomopathogenic bacteria also inhibit $PLA_2$ to express their pathogenicity in Spodopera exigua. Two bacterial species of Enterococcus faecalis and Pseudomonas fluorescens presumably different in entomopathogenicity were analyzed in their PLA2 inhibitory activities. A pathogenic E. faecalis induced significantly immunodepression of S. exigua by inhibiting $PLA_2$ activity because the bacteriainfected S. exigua recovered immune reactions after the addition of arachidonic acid. However, the nonpathogenic P. fluorescens did not induce immunodepression because the addition of arachidonic acid to P. fluorescens-infected S. exigua did not further increase immune capacities while dexamethasone, a $PLA_2$ inhibitor, could decrease the immune activities. Injection of E. faecalis along with $10{mu}g$ of dexamethasone significantly increased pathogenicity in comparison with the bacteria alone. Moreover, the addition of dexamethasone transformed nonpathogenic P. fluorescens into pathogenic bacterium. This study suggests an evidence that $PLA_2$ is an inhibitory target even for entomopathogenic bacteria not related with entomopathogenic nematodes, and that the inhibition of $PLA_2$ determines the bacterial virulence in S. exigua.