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无菌斯氏线虫、博维氏致病杆菌及细菌 - 蠕虫复合体对甘蓝大蚊(双翅目)和米蛾(鳞翅目)幼虫的致病性

Pathogenicity of axenic Steinernema feltiae, Xenorhabdus bovienii, and the bacto-helminthic complex to larvae of Tipula oleracea (Diptera) and Galleria mellonella (Lepidoptera).

作者信息

Ehlers R U, Wulff A, Peters A

机构信息

Department for Biotechnology and Biological Control, University Kiel, Raisdorf, Germany.

出版信息

J Invertebr Pathol. 1997 May;69(3):212-7. doi: 10.1006/jipa.1996.4647.

Abstract

The pathogenicity of the nematode-bacterium complex Steinernema feltiae-Xenorhabdus bovienii to larvae of Tipula oleracea and Galleria mellonella was investigated by injection of dauer juvenile nematodes carrying their bacterial symbiont cells (monoxenic nematodes). Axenic nematodes (free of bacteria) and the symbiotic bacteria themselves were tested. The LC50 of X. bovienii in T. oleracea was 15,700 colony forming units (CFU)/larva compared to < or = 8 CFU in G. mellonella. Xenorhabdus bovienii is apparently removed from the tipulids hemolymph, possibly by cellular defense mechanisms. Axenic nematodes were less pathogenic than monoxenic nematodes for both insects. The difference was less pronounced in G. mellonella larvae: one axenic nematode was sufficient to kill 80% in 1 day. The remaining insects found dead after 50 days were developmentally arrested. In T. oleracea 20 axenic nematodes caused 39% whereas 20 monoxenic dauer juveniles caused 90% mortality within 8 days. The data indicate that the virulence of the S. feltiae/X. bovienii complex is greater than the additive effect of the nematodes and their bacteria, further evidence for the synergistic activity of the symbiotic bacto-helminthic complex during pathogenesis.

摘要

通过注射携带其细菌共生细胞的 dauer 期幼虫线虫(单菌线虫),研究了线虫 - 细菌复合体斯氏线虫 - 伯氏致病杆菌对甘蓝大蚊幼虫和大蜡螟幼虫的致病性。测试了无菌线虫(不含细菌)和共生细菌本身。伯氏致病杆菌在甘蓝大蚊中的半数致死浓度(LC50)为 15,700 菌落形成单位(CFU)/幼虫,而在大蜡螟中≤8 CFU。伯氏致病杆菌显然从大蚊的血淋巴中被清除,可能是通过细胞防御机制。无菌线虫对两种昆虫的致病性均低于单菌线虫。在大蜡螟幼虫中差异不太明显:一条无菌线虫足以在 1 天内杀死 80%。50 天后发现死亡的其余昆虫发育停滞。在甘蓝大蚊中,20 条无菌线虫在 8 天内导致 39%的死亡率,而 20 条单菌 dauer 期幼虫导致 90%的死亡率。数据表明,斯氏线虫/伯氏致病杆菌复合体的毒力大于线虫及其细菌的相加效应,这是共生细菌 - 蠕虫复合体在发病过程中协同活性的进一步证据。

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