Production of a Polyunsaturated Isoprenoid Wax Ester during Aerobic Metabolism of Squalene by Marinobacter squalenivorans sp. nov

Author:

Rontani Jean-François1,Mouzdahir Abdelkrim12,Michotey Valerie1,Caumette Pierre3,Bonin Patricia1

Affiliation:

1. Laboratoire d'Océanographie et de Biogéochimie (UMR 6535), Centre d'Océanologie de Marseille—OSU, Campus de Luminy, 13288 Marseille

2. Laboratoire de Chimie Organique et Bioorganique, Université Chouaïb Doukkali, El Jadida, Morocco

3. Laboratoire d'Ecologie Moléculaire-Microbiologie, Université de Pau et des Pays de l'Adour, 64013 Pau, France

Abstract

ABSTRACT This paper describes the production of 5,9,13-trimethyltetradeca-4 E ,8 E ,12-trienyl-5,9,13-trimethyltetradeca-4 E ,8 E ,12-trienoate during the aerobic degradation of squalene by a Marinobacter strain, 2Asq64, isolated from the marine environment. A pathway involving initial cleavage of the C 10 -C 11 or C 14 -C 15 double bonds of the squalene molecule is proposed to explain the formation of this polyunsaturated isoprenoid wax ester. The isoprenoid wax ester content reached 1.1% of the degraded squalene at the mid-exponential growth phase and then decreased during the stationary phase. The wax ester content increased by approximately threefold in N-limited cultures, in which the ammonium concentration corresponds to conditions often found in marine sediments. This suggests that the bacterial formation of isoprenoid wax esters might be favored in such environments. The bacterial strain is then characterized as a member of a new species, for which we propose the name Marinobacter squalenivorans sp. nov.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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