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Two geographical biotypes of Nomuraea rileyi (from Ecuador and the United States) were topically bioassayed against seven lepidopteran species, i.e., Anticarsia gemmatalis, Heliothis zea, Heliothis virescens, Heliothis subflexa, Pseudoplusia includens, Spodoptera exigua, and Trichoplusia ni. There was an average difference of 1.7-fold in mortality in how cultures of the same insect species from different sources responded to topical applications of either biotype of N. rileyi. Regression equations and LC50 values were obtained for each insect species and fungal biotype combination. Larvae of S. exigua were equally susceptible to both biotypes of N. rileyi. Although larvae of A. gemmatalis were moderately susceptible to the Ecuadoran biotype, they were relatively nonsusceptible to the Mississippian biotype. Species of Heliothis (H. zea, H. virescens, and H. subflexa) were about equally susceptible to the Mississippian biotype. Larvae of H. subflexa and H. virescens, however, were significantly less susceptible than H. zea to the Ecuadoran biotype. When the integumental barrier was breached via intrahemocoelic injections, larvae of H. virescens were as susceptible as H. zea larvae to blastospores of either biotype of N. rileyi.  相似文献   
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The entomopathogenic entomophthoraceae (zygomycotina) Erynia rhizospora, Erynia dipterigena, and Erynia neoaphidis and the deuteromycete Aspergillus flavus produced single novel endoproteases (pI ca. 9) with activity against trypsin and chymotrypsin substrates. In contrast, the deuteromycete Paecilomyces farinosus produced a chymotrypsin (pI ca. 10).Inhibitor studies confirmed that the mixed activities (purified by isoelectric focusing) were derived from single endoproteases. The most potent inhibitor was Chicken ovoinhibitor. Little or no inhibition was observed for P. farinosus endoprotease by any of the chemicals tested.Although the different fungi possessed a broad spectrum of aminopeptidase activity, 3 species (E. rhizospora, E. dipterigena, and A. flavus) showed a preference for leucine at the N-terminal position and 2 species (E. neoaphidis and P. farinosus) showed maximal activity against arginine. Inhibitor studies confirmed these aminopeptidases as metallo-enzymes.  相似文献   
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