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首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Evidence that caterpillar labial saliva suppresses infectivity of potential bacterial pathogens
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Evidence that caterpillar labial saliva suppresses infectivity of potential bacterial pathogens

机译:毛虫唇唾液抑制潜在细菌病原体传染性的证据

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Salivary enzyme, glucose oxidase (GOX) from the caterpillar Helicoverpa zea, catalyzes the conversion of glucose to gluconic acid and hydrogen peroxide. Because hydrogen peroxide has well-known antimicrobial properties, we examined whether caterpillar labial saliva could reduce the infectivity of bacterial pathogens. We examined the effects of caterpillar saliva on the growth of two bacteria species Serratia marcescens and Pseudomonas aeruginosa. Wells formed in LB agar contained a solution of salivary gland extract (Sx) and glucose, GOX and glucose, Sx only, GOX only, or glucose only. After 18 h of incubation, the diameter of cleared bacteria was measured. Wells treated with only GOX, Sx, or glucose showed no measurable area of clearing, while wells treated with GOX with glucose or Sx with glucose had considerable clearing. To determine if saliva could provide protection to caterpillars in vivo, a surgery was performed on caterpillars that prevented the secretion of labial saliva. Caterpillars were fed a diet containing either no added bacteria or treated with high levels of S. marcescens or P. aeruginosa. Caterpillars that could not secrete saliva had significantly higher levels of mortality when feeding on diet treated with either bacterium than caterpillars that could secrete saliva when feeding on equal levels of bacteria-treated diet. Our evidence demonstrates for the first time that insect saliva in situ can provide protection against bacterial pathogens and that the salivary enzyme GOX appears to provide the antimicrobial properties.
机译:毛虫Helicoverpa zea的唾液酶葡萄糖氧化酶(GOX)催化葡萄糖转化为葡萄糖酸和过氧化氢。因为过氧化氢具有众所周知的抗菌特性,所以我们检查了毛毛虫的唾液是否可以减少细菌病原体的传染性。我们检查了毛毛虫唾液对两种细菌粘质沙雷氏菌和铜绿假单胞菌生长的影响。 LB琼脂中形成的孔包含唾液腺提取物(Sx)和葡萄糖,GOX和葡萄糖,仅Sx,仅GOX或仅葡萄糖的溶液。温育18小时后,测量清除细菌的直径。仅用GOX,Sx或葡萄糖处理的孔没有可测量的清除面积,而用GOX葡萄糖或Sx葡萄糖处理的孔有相当大的清除量。为了确定唾液是否可以在体内为毛虫提供保护,对毛虫进行了手术以防止其唾液的分泌。给毛毛虫饲喂不含添加细菌的饮食,或用高水平的粘菌链霉菌或铜绿假单胞菌处理。以两种细菌处理的饮食喂养时,不能分泌唾液的毛毛虫比以相同水平的细菌处理饮食喂养时可以分泌唾液的毛毛虫具有更高的死亡率。我们的证据首次证明昆虫唾液可就细菌病原体提供保护,唾液酶GOX似乎具有抗菌特性。

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