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The Continual Forming and Contribution of Infective Juveniles Produced Via Endotokia Matricida of Entomopathogenic Nematodes in the Family of Steinernematidae and Heterorhabditidae

机译:蠕形线虫科和杂种线虫科通过致病性线虫的线虫内生毛虫的感染性幼体的持续形成和贡献。

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摘要

The non-feeding developmentally arrested infective juveniles (IJs) of entomopathogenic nematodes in the family of Steinernematidae and Heterorhabditidae seek out a susceptible insect host and initiate infections. The aim of the research was to examine the continualforming and contribution of IJs produced via endotokia matricida (IJs-EM) of Heterorhabditis bacteriophora, Steinernema glaseri, and S. carpocapsae. The research was conducted at the Laboratory of Nematology of the Saga University, Japan (April 2001-April2002) and the Laboratory of Nematology of the Indonesian Legume and Tuber Crops Research Institute (June 2003-October 2004). The nematode progenies were investigated using the greater wax moth, Galleria mellonella, pre-inoculated with 50 IJs at 25°C.Results showed that three reproductive adult generations were observed at day 18th. There were 135,000, 128,000 and 133,000 IJs per insect cadaver produced in H. bacteriophora, S. glaseri and S. carpocapsae, respectively. Endotokia matricida contributed a higher number of IJs than that of a normal mode of IJs production. The ratios are 81%, 28% and 64% for H. bacteriophora, S. glaseri, and S. carpocapsae of the IJs total production, respectively. Among the generations, the highest contribution of IJs was come from thethird adult generation bearing endotokia matricida, i.e., 63%, 24% and 51% for the three nematode species. Although the IJs-EM were more transparent compared to the normal IJs, they were morphologically similar. The results show that endotokia matricida has a pivotal role in a species maintenance and survival strategy of entomopathogenic nematodes in extreme environmental conditions.
机译:Steinernematidae和Heterorhabditidae家族的昆虫食虫线虫的非进食发育停滞的感染性幼虫(IJs)寻找易感的昆虫宿主并开始感染。该研究的目的是检查通过细菌异种性细菌性细菌,细菌性Steinernema glaseri和炭疽链球菌的内质网(IJs-EM)产生的IJ的持续形成和贡献。该研究是在日本佐贺大学的血液学实验室(2001年4月至2002年4月)和印度尼西亚豆类和块茎作物研究所的血液学实验室(2003年6月至2004年10月)进行的。使用在25°C下预先接种了50 IJ的较大蜡蛾(Malleria mellonella)调查了线虫的后代。结果表明,在第18天观察到了三个繁殖成年世代。每个细菌尸体分别在H. bacteriophora,S。glaseri和S. carpocapsae中产生135,000、128,000和133,000 IJ。与正常IJs生产方式相比,matricida的Endotokia贡献了更多的IJs。 IJ的总产量中,幽门螺杆菌,格拉瑟氏链霉菌和腕果链霉菌的比率分别为81%,28%和64%。在这些世代中,IJ的贡献最大来自第三代携带内生真菌的成人,即三种线虫物种分别为63%,24%和51%。尽管与正常的IJ相比,IJs-EM更加透明,但是它们在形态上相似。结果表明,在极端环境条件下,内分泌纲对线虫病线虫的物种维持和生存策略具有关键作用。

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