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Data from: Living apart together—bacterial volatiles influence methanotrophic growth and activity
负责人:
关键词:
Stenotrophomonas maltophilia;Methylocystis parvus;Methylobacter luteus;volatile organic compounds;Pseudomonas mandelii;methanotrophs;Exiguobacterium undae;chemical communication;Bacillus pumilus;Bacillus simplex;Methane oxidation;volatiles
DOI:
doi:10.5061/dryad.v31rb
摘要:
methane-oxidizing bacteria, grown in co-culture with five different heterotrophs. Both growth and methane oxidation of Methylobacter luteus were stimulated by interacti
Data from: Weak phylogenetic signal in physiological traits of methane-oxidizing bacteria
负责人:
关键词:
Traits Phylogenomics Methane oxidation Modeling Horizontal gene transfer Microorganisms
DOI:
doi:10.5061/dryad.6f27f
摘要:
of methane oxidation. We used a Blomberg's K from comparative biology to quantify the strength of phylogenetic signal of physiological traits. Phylogeneti
Khalil:CH4 and N2O Emissions From Sub-tropical Rice Agriculture In China
负责人:
关键词:
methane nitrous oxide rice agriculture China
DOI:
doi:10.5063/aa/nceas.883.2
摘要:
ear to be caused more by reduced oxidation than higher production. Nitrous oxide emissions, when they were detected, usually occurred within a few days aft
Khalil:CH4 and N2O Emissions From Sub-tropical Rice Agriculture In China
负责人:
关键词:
methane nitrous oxide rice agriculture China
DOI:
doi:10.5063/aa/nceas.883.1
摘要:
ear to be caused more by reduced oxidation than higher production. Nitrous oxide emissions, when they were detected, usually occurred within a few days aft
Khalil:CH4 and N2O Emissions From Sub-tropical Rice Agriculture In China
负责人:
关键词:
methane nitrous oxide rice agriculture China
DOI:
doi:10.5063/aa/nceas.883.4
摘要:
ear to be caused more by reduced oxidation than higher production. Nitrous oxide emissions, when they were detected, usually occurred within a few days aft
Data from: Not so old Archaea - the antiquity of biogeochemical processes in the archaeal domain of life
负责人:
关键词:
euryarchaeota;crenarchaeota;microbial metabolism;archaea\/evolution;Neoproterozoic;Paleoproterozoic;Phanerozoic;Evolution;methanogens;Archaea;Precambrian;phylogenetics;Mesoproterozoic
DOI:
doi:10.5061/dryad.71r61
摘要:
, aerobic respiration, nitrate reduction, mesophilic methanogenesis in sedimentary environments) appear, first in environments containing terrestrial Crenarcha
Data from: Timing of morphological and ecological innovations in the cyanobacteria – a key to understanding the rise in atmospheric oxygen
负责人:
关键词:
cyanobacteria\/classification;Neoproterozoic;Cyanobacteria;phylogenetics;Paleoproterozoic;Mesoproterozoic;Evolution;cyanobacteria\/growth;Phanerozoic;oxygen;Precambrian
DOI:
doi:10.5061/dryad.11vj2
摘要:
ibly explaining why oxygen rose so rapidly. Rapid atmospheric oxidation could have destroyed the methane-driven greenhouse with simultaneous drawdown in pCO

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