Literature DB >> 19730970

Expression of genes for sulfur oxidation in the intracellular chemoautotrophic symbiont of the deep-sea bivalve Calyptogena okutanii.

Maiko Harada1, Takao Yoshida, Hirokazu Kuwahara, Shigeru Shimamura, Yoshihiro Takaki, Chiaki Kato, Tetsuya Miwa, Hiroshi Miyake, Tadashi Maruyama.   

Abstract

To understand sulfur oxidation in thioauto-trophic deep-sea clam symbionts, we analyzed the recently reported genomes of two chemoautotrophic symbionts of Calyptogena okutanii (Candidatus Vesicomyosocius okutanii strain HA: Vok) and C. magnifica (Candidatus Ruthia magnifica strain Cm: Rma), and examined the sulfur oxidation gene expressions in the Vok by RT-PCR. Both symbionts have genes for sulfide-quinone oxidoreductase (sqr), dissimilatory sulfite reductase (dsr), reversible dissimilatory sulfite reductase (rdsr), sulfur-oxidizing multienzyme system (sox)(soxXYZA and soxB but lacking soxCD), adenosine phosphosulfate reductase (apr), and ATP sulfurylase (sat). While these genomes share 29 orthologous genes for sulfur oxidation implying that both symbionts possess the same sulfur oxidation pathway, Rma has a rhodanese-related sulfurtransferase putative gene (Rmag0316) that has no corresponding ortholog in Vok, and Vok has one unique dsrR (COSY0782). We propose that Calyptogena symbionts oxidize sulfide and thiosulfate, and that sulfur oxidation proceeds as follows. Sulfide is oxidized to sulfite by rdsr. Sulfite is oxidized to sulfate by apr and sat. Thiosulfate is oxidized to zero-valence sulfur by sox, which is then reduced to sulfide by dsr. In addition, thiosulfate may also be oxidized into sulfate by another component of sox. The result of the RT-PCR showed that genes (dsrA, dsrB, dsrC, aprA, aprB, sat, soxB, and sqr) encoding key enzymes catalyzing sulfur oxidation were all equally expressed in the Vok under three different environmental conditions (aerobic, semioxic, and aerobic under high pressure at 9 MPa), indicating that all sulfur oxidation pathways function simultaneously to support intracellular symbiotic life.

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Year:  2009        PMID: 19730970     DOI: 10.1007/s00792-009-0277-8

Source DB:  PubMed          Journal:  Extremophiles        ISSN: 1431-0651            Impact factor:   2.395


  17 in total

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2.  Novel genes of the sox gene cluster, mutagenesis of the flavoprotein SoxF, and evidence for a general sulfur-oxidizing system in Paracoccus pantotrophus GB17.

Authors:  D Rother; H J Henrich; A Quentmeier; F Bardischewsky; C G Friedrich
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4.  Cospeciation of chemoautotrophic bacteria and deep sea clams.

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8.  Reduced genome of the thioautotrophic intracellular symbiont in a deep-sea clam, Calyptogena okutanii.

Authors:  Hirokazu Kuwahara; Takao Yoshida; Yoshihiro Takaki; Shigeru Shimamura; Shinro Nishi; Maiko Harada; Kazuyo Matsuyama; Kiyotaka Takishita; Masaru Kawato; Katsuyuki Uematsu; Yoshihiro Fujiwara; Takako Sato; Chiaki Kato; Masanari Kitagawa; Ikunoshin Kato; Tadashi Maruyama
Journal:  Curr Biol       Date:  2007-05-15       Impact factor: 10.834

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Journal:  PLoS Biol       Date:  2006-11       Impact factor: 8.029

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9.  Exploring Viral Diversity in a Gypsum Karst Lake Ecosystem Using Targeted Single-Cell Genomics.

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10.  Metatranscriptomics reveal differences in in situ energy and nitrogen metabolism among hydrothermal vent snail symbionts.

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