Growth and flagellation of Vibrio fischeri during initiation of the sepiolid squid light organ symbiosis
- 1 February 1993
- journal article
- Published by Springer Nature in Archiv für Mikrobiologie
- Vol. 159 (2) , 160-167
- https://doi.org/10.1007/bf00250277
Abstract
A pure culture of the luminous bacterium Vibrio fischeri is maintained in the light-emitting organ of the sepiolid squid Euprymna scolopes. When the juvenile squid emerges from its egg it is symbiont-free and, because bioluminescence is part of an anti-predatory behavior, therefore must obtain a bacterial inoculum from the surrounding environment. We document here the kinetics of the process by which newly hatched juvenile squids become infected by symbiosis-competent V. fischeri. When placed in seawater containing as few as 240 colony-forming-units (CFU) per ml, the juvenile became detectably bioluminescent within a few hours. Colonization of the nascent light organ was initiated with as few as 1 to 10 bacteria, which rapidly began to grow at an exponential rate until they reached a population size of approximately 105 cells by 12 h after the initial infection. Subsequently, the number of bacteria in the established symbiosis was maintained essentially constant by a combination of both a >20-fold reduction in bacterial growth rate, and an expulsion of excess bacteria into the surrounding seawater. While V. fischeri cells are normally flagellated and motile, these bacteria did not elaborate these appendages once the symbiosis was established; however, they quickly began to synthesize flagella when they were removed from the light organ environment. Thus, two important biological characteristics, growth rate and flagellation, were modulated during establishment of the association, perhaps as part of a coordinated series of symbiotic responses.Keywords
This publication has 47 references indexed in Scilit:
- Symbiont Recognition and Subsequent Morphogenesis as Early Events in an Animal-Bacterial MutualismScience, 1991
- ORGANIZATION and REGULATION OF BACTERIAL LUMINESCENCE GENESPhotochemistry and Photobiology, 1991
- The Anatomy and Morphology of the Adult Bacterial Light Organ of Euprymna scolopes Berry (Cephalopoda:Sepiolidae)The Biological Bulletin, 1990
- Induction of Salmonella Stress Proteins Upon Infection of MacrophagesScience, 1990
- Rhizobium-legume nodulation: Life together in the undergroundCell, 1989
- Initiation and Control of the Bioluminescent Symbiosis between Photobacterium leiognathi and Leiognathid FishAnnals of the New York Academy of Sciences, 1987
- PHYSIOLOGICAL AND MORPHOLOGICAL STATE OF THE SYMBIOTIC BACTERIA FROM LIGHT ORGANS OF PONYFISHThe Biological Bulletin, 1984
- Relationship of iron and extracellular virulence factors to Pseudomonas aeruginosa lung infectionsJournal of Medical Microbiology, 1984
- A Cellulolytic Nitrogen-Fixing Bacterium Cultured from the Gland of Deshayes in Shipworms (Bivalvia: Teredinidae)Science, 1983
- Total Quantum Flux of Isotropic Sources*Journal of the Optical Society of America, 1963