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首页> 外文期刊>European journal of entomology >Influence of host plant on susceptibility of the aphid Acyrthosiphon pisum (Hemiptera: Aphididae) to the fungal pathogen Pandora neoaphidis (Zygomycetes: Entomophthorales).
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Influence of host plant on susceptibility of the aphid Acyrthosiphon pisum (Hemiptera: Aphididae) to the fungal pathogen Pandora neoaphidis (Zygomycetes: Entomophthorales).

机译:寄主植物对蚜虫蚜虫(半翅目:蚜虫)对真菌病原体新蚜虫(Zygomycetes:昆虫纲)的敏感性的影响。

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摘要

The performance of the aphid-specific fungal pathogen Pandora neoaphidis was studied in relation to changes in herbivore resources for the pea aphid, Acyrthosiphon pisum, on different host plant species. Dose-response bioassays were conducted with A. pisum which had been reared on dwarf bean then inoculated with P. neoaphidis and returned to dwarf bean or inoculated and transferred to field bean, pea or lucerne. The smallest estimated median lethal concentration (LC50) was 7.7 conidia mm-2 (95% confidence interval 5.4-11.2) for aphids returned to dwarf bean, with LC50s of 13.0 (9.2-19.1) and 14.6 (10.2-21.5) conidia mm-2 for aphids transferred to field bean or pea, respectively. The LC50 when aphids were transferred to lucerne [2941.0 conidia mm-2 (237.3-2.1x109)] was greater than for the other three plants. In a subsequent experiment, A. pisum were reared on pea as well as dwarf bean for four generations before bioassays. The LC50 was 7.3 conidia mm-2 (4.4-12.4) for aphids reared and incubated on dwarf bean, compared to 13.3 (8.0-23.9) and 15.3 (8.8-29.9) conidia mm-2 when aphids were transferred between dwarf bean and pea, and vice versa, respectively. The LC50 for aphids reared then incubated on pea plants was 27.9 (15.8-57.3) conidia mm-2. Hence, the virulence of P. neoaphidis, measured by LC50, was greatest when A. pisum was reared and maintained on dwarf bean, the plant used for long-term routine culturing of the aphid in our facilities. In conclusion, virulence of P. neoaphidis was greater on plant species to which A. pisum had become adapted during long-term laboratory rearing. Plant resources may affect infection by P. neoaphidis and the fungal entomopathogen will have a greater impact on aphid herbivores which are not suffering physiological stress related to a change in host plant..
机译:研究了蚜虫特有的真菌病原体新蚜虫(Pandora neoaphidis)的性能与豌豆蚜虫(Acyrthosiphon pisum)在不同寄主植物上的草食动物资源变化的关系。用已经在矮豆上饲养的豌豆曲霉进行剂量反应生物测定,然后接种新蚜虫,然后返回矮豆中,或接种并转移到田豆,豌豆或卢塞恩。对于返回到矮豆的蚜虫,最小的估计平均致死浓度(LC50)为7.7分生孢子mm-2(95%置信区间5.4-11.2),LC50为13.0(9.2-19.1)和14.6(10.2-21.5)分生孢子mm-蚜虫分别转移到田豆或豌豆上需2个。当蚜虫转移到卢塞恩[2941.0分生孢子mm-2(237.3-2.1x109)]时,LC50大于其他三株植物。在随后的实验中,在生物测定之前,将豌豆和矮小豌豆在豌豆和矮豆上饲养了四代。在矮豆上饲养和培养的蚜虫的LC50为7.3分生孢子mm-2(4.4-12.4),而将蚜虫在矮豆和豌豆之间转移时的LC50为13.3(8.0-23.9)和15.3(8.8-29.9)分生孢子mm-2 ,反之亦然。在豌豆植物上培育并培育的蚜虫的LC50为27.9(15.8-57.3)分生孢子mm-2。因此,当在我们设施中用于长期常规培养蚜虫的矮豆中饲养和维持A. pisum时,通过LC50测得的新蚜虫的毒性最大。总之,在长期的实验室饲养过程中,已经对Pi。A. pisum适应的植物物种中新蚜虫的毒力更高。植物资源可能会影响新蚜虫的感染,而真菌性昆虫病原菌将对没有遭受与寄主植物变化有关的生理胁迫的蚜虫草食动物产生更大的影响。

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