4.7 Article

Culture temperature affects gene expression and metabolic pathways in the 2-methylisoborneol-producing cyanobacterium Pseudanabaena galeata

期刊

JOURNAL OF PLANT PHYSIOLOGY
卷 171, 期 3-4, 页码 292-300

出版社

ELSEVIER GMBH
DOI: 10.1016/j.jplph.2013.09.005

关键词

2-MIB; Cyanobacteria; Gene expression; Metabolomics; Temperature-induction

资金

  1. Funding Program for Next Generation World-Leading Researchers (NEXT Program)
  2. River Fund in charge of River Foundation, Japan
  3. Grants-in-Aid for Scientific Research [25840098, 24656292, 12J10084] Funding Source: KAKEN

向作者/读者索取更多资源

A volatile metabolite, 2-methylisoborneol (2-MIB), causes an unpleasant taste and odor in tap water. Some filamentous cyanobacteria produce 2-MIB via a two-step biosynthetic pathway: methylation of geranyl diphosphate (GPP) by methyl transferase (GPPMT), followed by the cyclization of methyl-GPP by monoterpene cyclase (MIBS). We isolated the genes encoding GPPMT and MIBS from Pseudanabaena galeata, a filamentous cyanobacterium known to be a major causal organism of 2-MIB production in Japanese lakes. The predicted amino acid sequence showed high similarity with that of Pseudanabaena limnetica (96% identity in GPPMT and 97% identity in MIBS). P. galeata was cultured at different temperatures to examine the effect of growth conditions on the production of 2-MIB and major metabolites. Gas chromatograph-mass spectrometry (GC-MS) measurements showed higher accumulation of 2-MIB at 30 degrees C than at 4 degrees C or 20 degrees C after 24 h of culture. Real-time-RT PCR analysis showed that the expression levels of the genes encoding GPPMT and MIBS decreased at 4 degrees C and increased at 30 degrees C, compared with at 20 degrees C. Furthermore, metabolite analysis showed dramatic changes in primary metabolite concentrations in cyanobacteria grown at different temperatures. The data indicate that changes in carbon flow in the TCA cycle affect 2-MIB biosynthesis at higher temperatures. (C) 2013 Elsevier GmbH. All rights reserved.

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