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Invertebrate Microbiology

New Insights into the Colonization and Release Processes of Xenorhabdus nematophila and the Morphology and Ultrastructure of the Bacterial Receptacle of Its Nematode Host, Steinernema carpocapsae

Holly Snyder, S. Patricia Stock, Sam-Kyu Kim, Yolanda Flores-Lara, Steven Forst
Holly Snyder
1Department of Biological Sciences, University of Wisconsin—Milwaukee, Milwaukee, Wisconsin
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S. Patricia Stock
2Department of Entomology, University of Arizona, Tucson, Arizona 85721-0036
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Sam-Kyu Kim
2Department of Entomology, University of Arizona, Tucson, Arizona 85721-0036
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Yolanda Flores-Lara
2Department of Entomology, University of Arizona, Tucson, Arizona 85721-0036
3Universidad de Sonora, Unidad Caborca, Sonora, Mexico
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Steven Forst
1Department of Biological Sciences, University of Wisconsin—Milwaukee, Milwaukee, Wisconsin
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  • For correspondence: sforst@uwm.edu
DOI: 10.1128/AEM.02947-06
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ABSTRACT

We present results from epifluorescence, differential interference contrast, and transmission electron microscopy showing that Xenorhabdus nematophila colonizes a receptacle in the anterior intestine of the infective juvenile (IJ) stage of Steinernema carpocapsae. This region is connected to the esophagus at the esophagointestinal junction. The process by which X. nematophila leaves this bacterial receptacle had not been analyzed previously. In this study we monitored the movement of green fluorescent protein-labeled bacteria during the release process. Our observations revealed that Xenorhabdus colonizes the distal region of the receptacle and that exposure to insect hemolymph stimulated forward movement of the bacteria to the esophagointestinal junction. Continued exposure to hemolymph caused a narrow passage in the distal receptacle to widen, allowing movement of Xenorhabdus down the intestine and out the anus. Efficient release of both the wild type and a nonmotile strain was evident in most of the IJs incubated in hemolymph, whereas only a few IJs incubated in nutrient-rich broth released bacterial cells. Incubation of IJs in hemolymph treated with agents that induce nematode paralysis dramatically inhibited the release process. These results suggest that bacterial motility is not required for movement out of the distal region of the receptacle and that hemolymph-induced esophageal pumping provides a force for the release of X. nematophila out of the receptacle and into the intestinal lumen.

  • Copyright © 2007 American Society for Microbiology
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New Insights into the Colonization and Release Processes of Xenorhabdus nematophila and the Morphology and Ultrastructure of the Bacterial Receptacle of Its Nematode Host, Steinernema carpocapsae
Holly Snyder, S. Patricia Stock, Sam-Kyu Kim, Yolanda Flores-Lara, Steven Forst
Applied and Environmental Microbiology Aug 2007, 73 (16) 5338-5346; DOI: 10.1128/AEM.02947-06

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New Insights into the Colonization and Release Processes of Xenorhabdus nematophila and the Morphology and Ultrastructure of the Bacterial Receptacle of Its Nematode Host, Steinernema carpocapsae
Holly Snyder, S. Patricia Stock, Sam-Kyu Kim, Yolanda Flores-Lara, Steven Forst
Applied and Environmental Microbiology Aug 2007, 73 (16) 5338-5346; DOI: 10.1128/AEM.02947-06
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KEYWORDS

Nematoda
Xenorhabdus

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