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Phenotypic and molecular characterization of the causal agent of chafer beetle mortality in the wheat fields of the Kurdistan province, Iran

机译:伊朗库尔德斯坦省麦田中金龟子甲虫死亡的病原体的表型和分子表征

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We report the first case of chafer beetleAnisoplia austriaca (Herbst 1783)] mortality caused by Actinomucor elegans var. elegans in wheat fields of the Kurdistan province, Iran. For three years, dead larvae of Anisoplia austriaca were collected fromwheat fields of the Kurdistan province. Similar isolates of a fast-growing fungus were recovered from aU samples. The fungal isolates were identified as A. elegans var. elegans based on morphological and cultural characteristics. The identity of the species was further confirmed using sequence data of the ITS (Internal Transcribed Spacer) region of ribosomal DNA. Koch's postulates were fulfilled by the inoculation of the larvae of A. austriaca and Galleria mellonella (Linnaeus, 1758) (as the model insect) using the spore suspension of A. elegans var. elegans. The viability of sporangiospores was evaluated using a spore dilution technique on germination medium. The results on the pathogenicity (100% mortality in A. austriaca larvae) and viability tests(germination: 95.45%) demonstrated that A. elegans var. elegans can be considered as a potential biocontrol agent against the chafer beetle. Field experiments are still required to evaluate the capacity of elegans as a biological control agent.
机译:我们报告了第一例金龟子 Anisoplia austriaca(Herbst 1783)]由Actinomucor elegans var引起的死亡。伊朗库尔德斯坦省麦田中的线虫。三年来,从库尔德斯坦省的麦田中收集了南方An(Anisoplia austriaca)的幼虫。从aU样品中回收了类似的快速生长真菌分离株。真菌分离物被鉴定为线虫变种。线虫基于形态和文化特征。使用核糖体DNA的ITS(内部转录间隔区)区域的序列数据进一步确认了物种的身份。 Koch的假设是通过使用秀丽隐杆线虫的孢子悬浮液接种南方曲霉和梅勒内尔幼虫(Linnaeus,1758)(作为模型昆虫)来实现的。线虫。使用孢子稀释技术在萌发培养基上评估孢子囊孢子的生存力。致病性(A. austriaaca幼虫的死亡率为100%)和生存力测试(发芽率:95.45%)的结果表明,秀丽隐杆线虫是无性系。线虫可以被认为是针对金龟子甲虫的潜在生物防治剂。仍然需要现场试验来评估线虫作为生物防治剂的能力。

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