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Unusual Plastoquinones in Non-Phototrophic Nitrifying Bacteria

delete2025-08-05
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OA
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N
Nicole J. Bale
H
Hayato Fujimura
P
Petra Pjevac
M
Michel Koenen
H
Hikaru Ikeda
S
Satohiro Itagaki
Y
Yojiro Yamamoto
J
Johanna Palmetzhofer
C
Christopher J. Sedlacek
H
Hayk Palabikyan
J
Jaap S. Sinninghe Damsté
M
Michael Wagner
H
Hiroshi Shiigi
H
Holger Daims *
DOI:10.1111/1758-2229.70174delete
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Abstract

Abstract

En 中文
Isoprenoid quinones are important compounds in most organisms. They are essential in electron and proton transport in respiratory and photosynthetic electron transport chains, and additional functions include oxidative stress defence. The biologically most relevant quinones are naphthoquinones including menaquinone and benzoquinones including ubiquinone and plastoquinone. They differ in their polar headgroup structures, physicochemical properties, and distribution among organisms. Menaquinone is the most widespread quinone in prokaryotes, ubiquinone occurs only in bacteria of the phylum Pseudomonadota and eukaryotes, and plastoquinone exists in phototrophic Cyanobacteria and plants. We found that chemolithoautotrophic nitrifying bacteria of the genus Nitrospira (phylum Nitrospirota) exclusively possess unusual methyl-plastoquinones with a standard redox potential below that of canonical plastoquinone and ubiquinone but above menaquinone, suggesting functional roles in reverse electron transport, ammonia oxidation, alternative energy metabolisms, and oxidative stress mitigation. This extends the known diversity of quinones and suggests that plastoquinone derivatives are essential in ecologically important, non-phototrophic bacteria.
Keywords:
comammox
methyl-plastoquinones
nitrification
Nitrospira
respiration
reverse electron transport
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Environmental Microbiology Reports cover
Environmental Microbiology Reports
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2.7
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University of Southern Indiana
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Osaka Metropolitan University
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University of Vienna
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