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首页> 外文期刊>Neotropical Entomology >External Events Related to the Infection Process of Cornitermes cumulam (Kollar) (Isoptera: Termitidae) by the Entomopathogenic Fungi Beauveria bassiana and Metarhizium anisopliae
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External Events Related to the Infection Process of Cornitermes cumulam (Kollar) (Isoptera: Termitidae) by the Entomopathogenic Fungi Beauveria bassiana and Metarhizium anisopliae

机译:昆虫致病性球孢白僵菌和无核白僵菌感染角质积(Kollar)(等翅目:螨科)的感染过程的外部事件。

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The objectives of this study were to observe the external development of Metarhizium anisopliae and Beauveria bassiana on workers and soldiers of Cornitermes cumulans (Kollar) and to establish comparisons between the insect fixation techniques known as critical point and desiccator. Termite workers and soldiers inoculated with B. bassiana (447) and M. anisopliae (1037) were utilized. After inoculation, the insects were left at 25±0.5°C. In order to make observations, samples from both castes were removed at 0,6,12,24,48,72,96,120,144, and 168h after inoculation. The external development of M. anisopliae and B. bassiana conidia on the termite C. cumulans showed that M. anisopliae and B. bassiana conidial germination occurred on several regions of the termites body mainly between 6h and 12h and penetration mainly between 12h and 24h after fungal application. Several penetration points were observed originating from the same germ tube. Colonization of the host by M. anisopliae occurred between 24h and 72h, and most insects died between 72h and 96h. Conidiogenesis began between 96h and 120h with the peak between 144h and 166h for M. anisopliae and between 120h and 144h for B. bassiana. Thus, only conidiogenesis for B. bassiana started earlier, probably because this fungus/isolate shows a higher insect colonization speed. This factor, in addition to multiple penetration points for the same germination tube, could explain the higher virulence of the isolates. The critical point fixation technique provided the best preservation of structures in both the pathogen and the insect.
机译:这项研究的目的是观察Cornitermes cumulans(Kollar)工人和士兵身上的金属异杆菌和球孢白僵菌的外部发育,并建立被称为临界点和干燥剂的昆虫固定技术之间的比较。利用接种了球孢杆菌(B. bassiana)(447)和米氏分枝杆菌(M. anisopliae)(1037)的白蚁工人和士兵。接种后,将昆虫置于25±0.5℃下。为了进行观察,在接种后的0、6、12、24、48、72、96、120、144和168h去除了两种种姓的样品。白蚁C. cumulans上M. anisopliae和B. bassiana分生孢子的外部发育表明,M. anisopliae和B. bassiana分生孢子萌发发生在白蚁体的多个区域,主要在6h至12h之间,穿透主要在12h至24h之间真菌应用。观察到源自同一胚芽管的几个穿透点。 M. anisopliae对宿主的定殖发生在24h至72h之间,大多数昆虫在72h至96h之间死亡。分生孢子开始于96h至120h之间,最高分枝杆菌(M. anisopliae)介于144h至166h之间,而B. bassiana介于120h至144h之间。因此,只有球孢白僵菌的分生孢子才开始得更早,可能是因为这种真菌/分离物显示出更高的昆虫定殖速度。除了同一发芽管的多个穿透点外,该因素还可以解释分离株的更高毒力。临界点固定技术可以在病原体和昆虫中提供最佳的结构保存。

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