Two yellow-pigmented, Gram-stain-negative, aerobic, motile and rod-shaped bacterial strains, designated RHCKP32 T and RRHST58 T , were isolated from the citrus leaves in Renhua County, a famous planting area located in Guangdong Province, China ...
Songzhen Yang +7 more
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Pantoea pleuroti sp. nov., Isolated from the Fruiting Bodies of Pleurotus eryngii
Current Microbiology, 2015Four Gram-negative-staining, facultatively anaerobic bacterial isolates were obtained from the fruiting bodies of the edible mushroom Pleurotus eryngii showing symptoms of bacterial blight disease in Beijing, China. Nearly complete 16S rRNA gene sequencing placed these isolates in the genus Pantoea.
Yuanwei, Ma +6 more
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Purification and identification of an aflatoxin B1 degradation enzyme from Pantoea sp. T6
Toxicon, 2019Aflatoxin B1 (AFB1) is a secondary metabolite produced by Aspergillus flavus and other fungi. Soil, crops, food, feed, etc. were susceptible to aflatoxin B1 contamination, which caused adverse economic and health consequences. It is necessary to search for microorganisms or microbial enzymes that can degrade AFB1.
Yanli Xie, Wei Wang, Shujie Zhang
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Pantoea beijingensis sp. nov., isolated from the fruiting body of Pleurotus eryngii
Antonie van Leeuwenhoek, 2013Four Gram-negative-staining, facultatively anaerobic bacterial isolates were obtained from a fruiting body of the edible mushroom Pleurotus eryngii showing symptoms of soft rot disease in Beijing, China. Partial 16S rRNA gene sequencing, together with partial rpoB sequencing, placed these isolates in the genus Pantoea.
Yu, Liu +6 more
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Pantoea hericii sp. nov., Isolated from the Fruiting Bodies of Hericium erinaceus
Current Microbiology, 2016Three Gram-negative, facultatively anaerobic bacterial isolates were obtained from the fruiting bodies of the edible mushroom Hericium erinaceus showing symptoms of soft rot disease in Beijing, China. Sequences of partial 16S rRNA gene placed these isolates in the genus Pantoea. Multilocus sequence analysis based on the partial sequences of atpD, gyrB,
Chengbo, Rong +7 more
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Cloning and Heterologous Expression of Phytase Gene from Pantoea sp. 3.5.1
BioNanoScience, 2016© 2016, Springer Science+Business Media New York.Phytases (myo-inositol hexakisphosphate phosphohydrolase) catalyzes the stepwise hydrolysis of phosphate groups from phytic acid (myo-inositol hexakisphosphate) or its salt phytate. These enzymes could be potentially used for the stereospecific and efficient production of different myo-inositol phosphate
Suleimanova A. +4 more
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Accumulation of U(VI) on the Pantoea sp. TW18 isolated from radionuclide-contaminated soils
Journal of Environmental Radioactivity, 2018Pantoea sp. TW18 isolated from radionuclide-contaminated soils was used for the bioremediation of radionuclides pollution. Accumulation mechanism of U(VI) on Pantoea sp. TW18 was investigated by batch experiments and characterization techniques. The batch experiments revealed that Pantoea sp.
Zexin Zhang +6 more
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Heterologous Expression of Histidine Acid Phytase from Pantoea sp. 3.5.1 in Yarrowia lipolytica
BioNanoScience, 2018© 2018, Springer Science+Business Media, LLC, part of Springer Nature. The dimorphic yeasts Yarrowia lipolytica are used as effective expression system and are characterized by a high level of production of heterologous protein. In this work, we aimed to clone and express Pantoea sp. 3.5.1 agpP phytase gene in Yarrowia lipolytica.
Suleimanova, Aliya D. +3 more
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Biosorption of chromium(VI), cadmium(II) and copper(II) by Pantoea sp TEM
2020Microorganisms and microbial products can be highly efficient bioaccumulators of soluble and particulate forms of metals, especially from dilute external solutions, and microbe-related technologies may provide an alternative or adjunct to conventional techniques of metal removal/recovery.
Özdemir, Güven +4 more
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[Redox Transformation of Arsenic and Antimony in Soils Mediated by Pantoea sp. IMH].
Huan jing ke xue= Huanjing kexue, 2018Soil contamination with co-existing arsenic (As) and antimony (Sb) has become a serious environmental problem worldwide. Microorganisms play a dominant role in the redox transformation and mobilization of As and Sb. As and Sb belong to the same family; they are alike in nature and have related microbial oxidation-reduction mechanisms.
Lin, Zhang, Jin-Suo, Lu
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