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首页> 外文期刊>Journal of Insect Science >Effects of passages through a suitable host of the fungus, Metarhizium anisopliae, on the virulence of acaricide- susceptible and resistant strains of the tick, Rhipicephalus microplus
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Effects of passages through a suitable host of the fungus, Metarhizium anisopliae, on the virulence of acaricide- susceptible and resistant strains of the tick, Rhipicephalus microplus

机译:通过合适的真菌寄主(Metrahizium anisopliae)传代对the虫敏感和抗药性the(Rhipicephalus microplus)毒力的影响

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The aim of this work was to assess the virulence of strain M379 of the fungus, Metarhizium anisopliae (Metchnikoff) Sorokin (Hypocreales: Clavicipitaceae) after different passages through a suitable host and at different concentrations for the control of both acaricide-susceptible and resistant strains of the tick, Rhipicephalus (formerly Boophilus) microplus Canestrini (Ixodida: Ixodidae) in vitro. The highest value of LC50 for the susceptible strain corresponded to zero passage with 7.68 × 107 conidia/ml followed by the fourth passage with 2.68 × 107, which reduced 2.87-fold the lethal concentration. When comparing LC50 values of the fourth vs. the seventh passage (2.59 × 105 conidia/ml), the lethal concentration was reduced 103.47-fold by the seventh passage. In addition, in the resistant strain the LC50 highest value corresponded to zero passage with 4.95 × 107 conidia/ml followed by the fourth passage with 7.86 × 106, which reduced 6.30-fold the lethal concentration. When comparing LC50 values of the fourth vs. the seventh passage (1.04 × 105 conidia/ml) in the resistant strain, the lethal concentration was reduced 75.58-fold by the seventh passage. These results suggest that the number of passages on M. anisopliae through a suitable host increased its virulence on both R microplus strains. When comparing LC50 of the zero passage through a suitable host of both acaricide-susceptible and resistant strains, the highest LC50 values corresponded to the susceptible strain with 7.68 × 107 conidia/ml followed by the resistant one with 4.95 × 107, showing that on the resistant strain the lethal concentration is reduced by 1.55-fold. When comparing the fourth passage, the highest values of LC50 corresponded to the susceptible strain with 2.68 × 107 conidia/ml followed by the resistant one with 7.86 × 106 conidia/ml, showing for the resistant strain a 3.41-fold reduced lethal concentration. Moreover, when comparing the seventh passages, the highest values of LC50 corresponded to the susceptible strain with 2.59 × 105 followed by the resistant with 1.04 × 105 conidia/ml, revealing for the resistant strain a 2.49-fold reduced lethal concentration. These results suggest that the resistant strain needs a lower concentration of conidia than the susceptible strain. In this case, the acaricide-resistant strain is more susceptible to M. anisopliae of zero- and seven-passage strains.
机译:这项工作的目的是评估在经过合适的宿主并以不同的浓度不同传代后,控制真菌的M379菌株Metarhizium anisopliae(Metchnikoff)Sorokin(Hypocreales:Clavicipitaceae)的毒力,以控制易受杀螨剂和抗性菌株的the虫(Rhipicephalus,以前称为Boophilus)microplus Canestrini(Ixodida:Ixodidae)在体外。敏感菌株的LC 50 的最高值对应于零传代,为7.68×10 7 分生孢子/ ml,其次为第四传代,其值为2.68×10 7 < / sup>,其致死浓度降低了2.87倍。比较第四代与第七代的LC50值(2.59×10 5 分生孢子/ ml)时,第七代的致死浓度降低了103.47倍。此外,在抗性菌株中,LC 50 的最高值对应于零传代(4.95×10 7 分生孢子/ ml),其次是第四传代(7.86×10 ) 6 ,其致死浓度降低了6.30倍。当比较抗性菌株中第四代与第七代的LC 50 值(1.04×10 5 分生孢子/ ml)时,致死浓度降低了75.58倍第七段。这些结果表明,通过合适的寄主在M.anisopliae上的传代数增加了其对两种R microplus菌株的毒力。当比较零代的LC 50 通过合适的杀螨剂和抗性菌株宿主时,最高LC 50 值对应于7.68×10 < sup> 7 分生孢子/ ml,然后是4.95×10 7 的抗药性,表明在抗性菌株上,致死浓度降低了1.55倍。比较第四代时,LC 50 的最大值对应于敏感菌株,其分生孢子为2.68×10 7 / ml,其次是抗药性菌株,其为7.86×10 6 分生孢子/ ml,表明抗性菌株的致死浓度降低了3.41倍。此外,比较第七代时,LC 50 的最高值对应的敏感菌株为2.59×10 5 ,其次为1.04×10 5 分生孢子/ ml,表明抗性菌株的致死浓度降低了2.49倍。这些结果表明抗性菌株比易感菌株需要较低的分生孢子浓度。在这种情况下,抗杀螨剂菌株更易受到零和七代菌株的分枝杆菌的影响。

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