Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
Parasitology. 2010 Sep;137(11):1695-706. doi: 10.1017/S0031182010000508. Epub 2010 May 26.
Photorhabdus sp. are entomopathogenic bacteria which, upon experimental infection, interact with the insect immune system, but little is known about the roles of their symbiotic nematode partners Heterorhabditis sp. in natural infections. Here, we investigated the respective contributions of nematodes and bacteria by examining humoral and cellular immune reactions of the model lepidopteran insect Manduca sexta against Heterorhabditis carrying Photorhabdus, nematodes free of bacteria (axenic nematodes) and bacteria alone. Insect mortality was slower following infection with axenic nematodes than when insects were infected with nematodes containing Photorhabdus, or the bacteria alone. Nematodes elicited host immune responses to a lesser extent than bacteria. Transcription of certain recognition and antibacterial genes was lower when insects were naturally infected with nematodes carrying no bacteria compared to insects that received bacteria, either with or without nematodes. Axenic nematodes also did not elicit such high levels of phenoloxidase activity and haemocyte aggregates as did treatments involving Photorhabdus. By contrast, the phagocytic capability of host haemocytes was decreased by both axenic and bacteria-associated nematodes, but not by Photorhabdus alone. These results imply that both bacteria and nematodes contribute separately to the pathogenic modulation of host immune responses during natural infections by the mutualistic Heterorhabdus-Photorhabdus complex.
Photorhabdus sp. 是一种昆虫病原细菌,在实验感染中会与昆虫免疫系统相互作用,但对于其共生的线虫伙伴 Heterorhabditis sp. 在自然感染中的作用知之甚少。在这里,我们通过检查模式鳞翅目昆虫 Manduca sexta 对携带 Photorhabdus 的 Heterorhabditis 的体液和细胞免疫反应,研究了线虫和细菌各自的贡献,以及没有细菌的线虫(无菌线虫)和单独的细菌。与感染携带 Photorhabdus 的线虫或单独感染细菌相比,无菌线虫感染后的昆虫死亡率较慢。线虫引起的宿主免疫反应程度低于细菌。与接受细菌(无论是否有线虫)的昆虫相比,当昆虫自然感染不带细菌的线虫时,某些识别和抗菌基因的转录水平较低。无菌线虫也不像涉及 Photorhabdus 的处理那样引起酚氧化酶活性和血细胞聚集的高水平。相比之下,宿主血细胞的吞噬能力被无菌和与细菌相关的线虫降低,但 Photorhabdus 单独不会。这些结果表明,在自然感染中,共生的 Heterorhabditis-Photorhabdus 复合体通过细菌和线虫分别对宿主免疫反应的致病性调节做出贡献。