Iron Sources Used by the Nonpathogenic Lactic Acid Bacterium Lactobacillus sakei as Revealed by Electron Energy Loss Spectroscopy and Secondary-Ion Mass Spectrometry

Author:

Duhutrel Philippe1,Bordat Christian2,Wu Ting-Di34,Zagorec Monique1,Guerquin-Kern Jean-Luc34,Champomier-Vergès Marie-Christine1

Affiliation:

1. Unité Flore Lactique et Environnement Carné, UR309, INRA, Domaine de Vilvert, F-78350 Jouy en Josas, France

2. Unité Nurélice, UR909, INRA, Domaine de Vilvert, F-78350 Jouy en Josas, France

3. U 759 INSERM, F-91405 Orsay, France

4. Institut Curie, Laboratoire de Microscopie Ionique, F-91405 Orsay, France

Abstract

ABSTRACT Lactobacillus sakei is a lactic acid bacterium naturally found on meat. Although it is generally acknowledged that lactic acid bacteria are rare species in the microbial world which do not have iron requirements, the genome sequence of L. sakei 23K has revealed quite complete genetic equipment dedicated to transport and use of this metal. Here, we aimed to investigate which iron sources could be used by this species as well as their role in the bacterium's physiology. Therefore, we developed a microscopy approach based on electron energy loss spectroscopy (EELS) analysis and nano-scale secondary-ion mass spectrometry (SIMS) in order to analyze the iron content of L. sakei cells. This revealed that L. sakei can use iron sources found in its natural ecosystem, myoglobin, hemoglobin, hematin, and transferrin, to ensure long-term survival during stationary phase. This study reveals that analytical image methods (EELS and SIMS) are powerful complementary tools for investigation of metal utilization by bacteria.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference41 articles.

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2. Bockelmann, U., H. Lunsdorf, and U. Szewzyk. 2007. Ultrastructural and electron energy-loss spectroscopic analysis of an extracellular filamentous matrix of an environmental bacterial isolate. Environ. Microbiol.9:2137-2144.

3. Bordat, C., A. Constans, O. Bouet, I. Blanc, C. L. Trubert, R. Girot, and G. Cournot. 1993. Iron distribution in thalassemic bone by energy-loss spectroscopy and electron spectroscopic imaging. Calcif. Tissue Int.53:29-37.

4. Bordat, C., and J. L. Guerquin-Kern. 2008. Cryo-preparation procedures for elemental imaging by SIMS and EFTEM, p. 499-536. In A. Cavalier, D. Spehner, and B. Humbel (ed.), Handbook of cryo-preparation methods for electron microscopy,vol. 7. CRC Press, Boca Raton, FL.

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