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首页> 外文期刊>Current Microbiology: An International Journal >Laboratory Evaluation of Beauveria bassiana ARP14 Against Grapholita molesta (Lepidoptera: Tortricidae)
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Laboratory Evaluation of Beauveria bassiana ARP14 Against Grapholita molesta (Lepidoptera: Tortricidae)

机译:Beauveria Bassiana ARP14对Grapholita Molesta的实验室评估(Lepidoptera:Tortricidae)

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摘要

Entomopathogenic fungi often have wide host range and can be important biological control agents against the oriental fruit moth, Grapholita molesta (Busck) (Lepidoptera: Tortricidae), a significant pest of stone and pome fruits. The virulence of six entomopathogenic fungi, including three strains of Beauveria bassiana (Balsamo) Vuillemin (Hypocreales: Cordycipitaceae) (ARP14, GHA, A) and one strain each of Metarhizium robertsii Bischoff, Rehner, & Humber (Hypocreales: Clavicipitaceae), Metarhizium brunneum (Petch) (Hypocreales: Clavicipitaceae), and Isaria farinosa (Holmsk.) (Hypocreales: Cordycipitaceae) was assessed against first instars (< 5 h old) of G. molesta held in glass scintillation vials. Compared to commercialized strain of B. bassiana (GHA), B. bassiana ARP14, which was recovered from a cadaver of Riptortus pedestris (F.) (Hemiptera: Alydidae), killed first instar larvae 2.6 times faster at 12 h after exposure to 1 x 10(8) conidia/ml concentration at 95.9% RH and 25.4 degrees C. However, the mycosis rate after 14 days was similar to that of B. bassiana GHA in all treatments. Beauveria bassiana ARP14 also killed adult moths 2.7 (males) and 2.2 (females) times faster than did B. bassiana GHA, measured 168 h (7 days) after exposure. However, the mycosis rate after 14 days was similar from both fungi. In assay using three conidial concentrations (1 x 10(7), 1 x 10(8), and 1 x 10(9) conidia/ml) and three RHs levels (55, 75, and 95%). Mortality became higher as concentration and RH increase, but mycosis rate at 14 days wasn't significantly different among treatments. These results suggest that B. bassiana ARP14 can be a potential biological control agent against G. molesta.
机译:昆虫病原真菌通常有宿主范围广,可以是对食心虫重要的生物控制剂,梨小食心虫(Busck)(鳞翅目:卷蛾科),一个显著核果与水果害虫。六个昆虫病原真菌,包括白僵菌的三个菌株的毒力(Balsamo的)Vuillemin(肉座菌目:Cordycipitaceae)(ARP14,GHA,A)和一个应变每个绿僵robertsii Bischoff的,Rehner,&亨伯的(肉座菌目:Clavicipitaceae),绿僵brunneum (佩奇)(肉座菌目:Clavicipitaceae)和棒束孢farinosa(Holmsk。)(肉座菌目:Cordycipitaceae)评估针对第一龄(<5小时龄)的G.在玻璃闪烁瓶中食心虫保持。相比(GHA)球孢白僵菌的商业化的应变,球孢白僵菌ARP14,将其从Riptortus pedestris(F.)的尸体回收(半翅目:Alydidae),杀第一龄幼虫快2.6倍在暴露于1后12小时×10(8)个分生孢子/ ml的浓度在95.9%RH和25.4℃。然而,14天后的真菌病率为所有处理类似于B的白僵菌GHA。白僵菌ARP14也被杀成蛾2.7(男性)和2.2(女)次球孢白僵菌GHA,测量曝光中96小时(7天),比得更快。然而,经过14天蕈率为来自真菌相似。在测定使用三个分生孢子浓度(1×10(7),1×10(8),和1×10(9)分生孢子/ ml)和三个RHS水平(55,75,和95%)。死亡变得像浓度和RH的增幅,但蕈14天率为处理之间没有显著不同。这些结果表明,白僵菌ARP14可以对抗G.食心虫潜在的生物控制剂。

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