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For the Insect Pathogen Photorhabdus luminescens Which End of a Nematode Is Out?

机译:对于昆虫病原体光虫线虫的哪一端出来了?

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摘要

The nematode Heterorhabditis bacteriophora is the vector for transmitting the entomopathogenic bacterium Photorhabdus luminescens between insect larvae. The dauer juvenile (DJ) stage nematode selectively retains P. luminescens in its intestine until it releases the bacteria into the hemocoel of an insect host. We report the results of studying the transmission of the bacteria by its nematode vector. Cells of P. luminescens labeled with green fluorescent protein preferentially colonized a region of the DJ intestine immediately behind the basal bulb, extending for various distances toward the anus. Incubation of DJ nematodes in vitro in insect hemolymph induced regurgitation of the bacteria. Following a 30-min lag, the bacteria migrated in a gradual and staggered movement toward and ultimately exited the mouth. This regurgitation reaction was induced by a low-molecular-weight, heat- and protease-stable, anionic component present in arthropod hemolymph and in supernatants from insect cell cultures. Nematodes anesthetized with levamisole or treated with the antihelmenthic agent ivermectin did not release their bacteria into hemolymph. The ability to visualize P. luminescens in the DJ nematode intestine provides the first clues to the mechanism of release of the bacteria during infection of insect larvae. This and the partial characterization of a component of hemolymph triggering release of the bacteria render this fascinating example of both a mutualistic symbiosis and disease transmission amenable to future genetic and molecular study.
机译:线虫细菌异形杆菌是在昆虫幼虫之间传播昆虫病原细菌发光光细菌的载体。道尔幼虫(DJ)阶段线虫在其肠中选择性地保留了发光假单胞菌,直到将细菌释放到昆虫宿主的血细胞中。我们报告了通过线虫载体研究细菌传播的结果。标记有绿色荧光蛋白的发光假单胞菌的细胞优先在基底球后方的DJ小肠区域内定殖,并向肛门延伸了各种距离。 DJ线虫在昆虫血淋巴中的体外培养引起细菌反流。滞后30分钟后,细菌以渐进和交错的方式向口腔迁​​移并最终离开口腔。这种返流反应是由节肢动物血淋巴和昆虫细胞培养物上清液中存在的低分子量,热稳定和蛋白酶稳定的阴离子成分诱导的。用左旋咪唑麻醉的线虫或用抗赫维特剂伊维菌素处理的线虫不会将其细菌释放到血淋巴中。在DJ线虫肠中可视化P. luminescens的能力为感染昆虫幼虫期间细菌释放的机制提供了第一个线索。触发细菌释放的血淋巴成分的这一特征和部分表征,使得这个有趣的例子说明了共生共生和疾病传播都适合未来的遗传和分子研究。

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