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作 者:Fei Xu Xiang Zeng Yadong Gong Zongze Shao
机构地区:[1]School of Fisheries and Life,Shanghai Ocean University,Shanghai 201306,China [2]Key Laboratory of Marine Biogenetic Resources,Third Institute of Oceanography,Ministry of Natural Resources,Xiamen 361005,China [3]Faculty of Marine Biology,Xiamen Ocean Vocational College,Xiamen 361100,China
出 处:《Acta Oceanologica Sinica》2024年第8期89-97,共9页海洋学报(英文版)
基 金:The National Natural Science Foundation of China under contract Nos 91951201 and 42030412;the National Key R&D Program of China under contract No.2021YFF0501304;the Scientific Research Foundation of Third Institute of Oceanography,MNR under contract No.2019021.
摘 要:The genus Marinobacter is very broadly distributed in global environments and is considered as aerobic heterotroph.In this study,six Marinobacter strains were identified with autotrophic thiosulfate oxidation capacity.These strains,namely Marinobacter guineae M3B^(T),Marinobacter aromaticivorans D15-8PT,Marinobacter vulgaris F01^(T),Marinobacter profundi PWS21^(T),Marinobacter denitrificans JB02H27T,and Marinobacter sp.ST-1M(with a 99.93%similarity to the 16S rDNA sequences of Marinobacter salsuginis SD-14B^(T)),were screened out of 32 Marinobacter strains by autotrophic thiosulfate oxidization medium.The population of cells grew in a chemolithotrophic medium,increasing from 105 cells/mL to 10^(7) cells/mL within 5 d.This growth was accompanied by the consumption of thiosulfate 3.59 mmol/L to 9.64 mmol/L and the accumulation of sulfate up to 0.96 mmol/L,and occasionally produced sulfur containing complex particles.Among these Marinobacter strains,it was also found their capability of oxidizing thiosulfate to sulfate in a heterotrophic medium.Notably,M.vulgaris F01^(T)and M.antarcticus ZS2-30^(T)showed highly significant production of sulfate at 9.45 mmol/L and 3.10 mmol/L.Genome annotation indicated that these Marinobacter strains possess a complete Sox cluster for thiosulfate oxidation.Further phylogenetic analysis of the soxB gene revealed that six Marinobacter strains formed a separate lineage within Gammaproteobacteria and close to obligate chemolithoautotroph Thiomicrorhabdus arctica.The results indicated that thiosulfate oxidizing and chemolithoautotrophic potential in Marinobacter genus,which may contribute to the widespread of Marinobacter in the global ocean.
关 键 词:MARINOBACTER thiosulfate oxidation AUTOTROPHIC mixotroph
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