4.4 Article

Vibrio fischeri lux genes play an important role in colonization and development of the host light organ

期刊

JOURNAL OF BACTERIOLOGY
卷 182, 期 16, 页码 4578-4586

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.182.16.4578-4586.2000

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资金

  1. NCRR NIH HHS [RR-12294, R01 RR012294] Funding Source: Medline
  2. NIGMS NIH HHS [F32GM17424-02, F32 GM017424] Funding Source: Medline

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The bioluminescent bacterium Vibrio fischeri and juveniles of the squid Euprymna scolopes specifically recognize and respond to one another during the formation of a persistent colonization within the host's nascent Light-emitting organ. The resulting fully developed light organ contains brightly luminescing bacteria and has undergone a bacterium-induced program of tissue differentiation, one component of which is a swelling of the epithelial cells that line the symbiont-containing crypts. While the luminescence (lux) genes of symbiotic V. fischeri have been shown to be highly induced within the crypts, the role of these genes in the initiation and persistence of the symbiosis has not been rigorously examined. We have constructed and examined three mutants (luxA, luxI, and luxR), defective in either luciferase enzymatic or regulatory proteins, All three are unable to induce normal luminescence levels in the host and, 2 days after initiating the association, had a three- to fourfold defect in the extent of colonization. Surprisingly, these lax mutants also were unable to induce swelling in the crypt epithelial cells. Complementing, in trans, the defect in light emission restored both normal colonization capability and induction of swelling. We hypothesize that a diminished level of oxygen consumption by a luciferase-deficient symbiotic population is responsible for the reduced fitness of lux mutants in the tight organ crypts, This study is the first to show that the capacity for bioluminescence is critical for normal cell-cell interactions between a bacterium and its animal host and presents the first examples of V. fischeri genes that affect normal host tissue development.

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