首页> 外文期刊>Journal of Insect Science >The effect of Beauveria brongniartii and its secondary me-tabolites on the detoxification enzymes of the pine caterpillar, Dendrolimus tabulaeformis
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The effect of Beauveria brongniartii and its secondary me-tabolites on the detoxification enzymes of the pine caterpillar, Dendrolimus tabulaeformis

机译:球孢白僵菌及其次生代谢产物对松毛虫毛状松毛虫解毒酶的影响

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The mortality of pine caterpillar, Dendrolimus tabulaeformis Tsai et Liu (Lepidoptera: Lasio-campidae), larvae treated with Beauveria brongniartii (Saccardo) Petch (Hypocreales: Clavicipitaceae) conidia and cell-free culture supernatants enriched for the secondary metabolites of the fungus was investigated. In addition, the effects of the treatments on the activities of two insect-related defense response proteins, glutathione S-transferase (GST) and esterase (EST), were measured over time. Bioassays were performed using a range of fungal spore (6 ×105through 6 × 107spores/mL) and supernatant extract concentrations (5.5–550 μg/mL). The results showed that the mortalities of D. tabulaeformis larvae were closely related to the concentration of the conidia and the metabolites of B. brongniartii. The differences among the treatments all reached a significant level. The activities of the two detoxifying enzymes, GST and EST, in the larvae increased simultaneously post-treatment. After infection with the conidial suspensions, the highest GST activity appeared at 3 days, and the activities of the caterpillars infected with 6 ×106spores/mL and 6 × 107spores/mL were significantly higher than in the control. Using α-naphthyl, the highest activity of EST also appeared at 3 days, and the differences for the three different concentrations were significant. A similar trend of change in the EST activity was observed using β-naphthyl. After treatment with the secondary metabolite solution, the highest GST activity ap-peared at 6 hr, and significant differences were found both for the different durations (2, 4, 6, 12, 24, and 48 hr) and in the three concentration groups. When using α-naphthyl, the EST activity peak appeared at 24 hr, and the differences were significant among the durations of 2, 4, 6, 12, 24, and 48 hr. The effect of the concentration of the secondary metabolite solution notably in-duced the EST activity in the insects, and a similar result was obtained using β-naphthyl. The data suggest that B. brongniartii produces secondary metabolites that disable the immune mecha-nisms of D. tabulaeformis, allowing the fungus to overcome and then kill its host. It was concluded that both the conidial suspensions and the metabolites of B. brongniartii were toxic to D. tabulaeformis larvae.
机译:对松毛虫,油松Dendrolimus tabulaeformis Tsai et Liu(鳞翅目:Lasio-campidae),白僵菌(Beauveria brongniartii)(Saccardo)Petch(Hypocreales:Clavicipitaceae)分生孢子处理的幼虫和无细胞培养物上清液的致死率进行了研究。另外,随着时间的推移,测量了该处理对两种昆虫相关防御反应蛋白谷胱甘肽S-转移酶(GST)和酯酶(EST)活性的影响。使用一定范围的真菌孢子(6×10 5 至6×10 7 孢子/ mL)和上清液提取物浓度(5.5-550μg/ mL)进行生物测定。结果表明,油松线虫幼虫的死亡率与分枝杆菌的分生孢子浓度和代谢产物密切相关。治疗之间的差异均达到了显着水平。处理后,幼虫中的两种解毒酶GST和EST的活性同时增加。用分生孢子悬液感染后,在3天时GST活性最高,被6×10 6 孢子/ mL和6×10 7 感染的毛毛虫的活性最高。孢子/ mL显着高于对照。使用α-萘基时,EST的最高活性也出现在3天时,并且三种不同浓度的差异都很大。使用β-萘基可观察到类似的EST活性变化趋势。用次级代谢物溶液处理后,在6小时时GST活性最高,并且在不同的持续时间(2、4、6、12、24和48小时)以及三个浓度组中都发现了显着差异。当使用α-萘基时,EST活性峰出现在24小时,并且在2、4、6、12、24和48小时的持续时间之间存在显着差异。次级代谢产物溶液浓度的影响显着诱导了昆虫的EST活性,使用β-萘基获得了相似的结果。数据表明,B。brongniartii产生次级代谢产物,使D. tabulaeformis的免疫机制破坏,从而使真菌得以克服,然后杀死其宿主。结论是,B。brongniartii的分生孢子悬浮液和代谢产物均对油松D. tabulaeformis幼虫有毒。

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