Gut bacterium Acinetobacter sp. assists Camellia weevil with host plant adaptation by degrading tea saponin via the benzoate pathway. [PDF]
Song F, Shu J, Zhang S.
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Size-dependent ability of AtaA to immobilize cells in Acinetobacter sp. Tol 5. [PDF]
Yoshimoto S +4 more
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Halotolerant plant growth-promoting bacteria <i>Enterobacter</i> sp. Av16 and <i>Acinetobacter</i> sp. Av23 enhance seed germination and seedling photosynthesis of <i>Apocynum pictum</i> under salt stress. [PDF]
Wang X +6 more
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Chromosomal <i>dif</i> sites and associated modules identified in <i>Acinetobacter</i> sp. drive the horizontal transfer of antibiotic resistance. [PDF]
Wang Q +7 more
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Grid partitioning image analysis of highly aggregative bacterium <i>Acinetobacter</i> sp. Tol 5. [PDF]
Ohara Y, Yoshimoto S, Hori K.
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<i>Acinetobacter</i> sp. ME1: a multifunctional bacterium for phytoremediation utilizing melanin production, heavy metal tolerance, and plant growth promotion. [PDF]
Lee SY, Cho KS.
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Crc Regulates Succinate-Mediated Repression of Mineral Phosphate Solubilization in <i>Acinetobacter</i> sp. SK2 by Modulating Membrane Glucose Dehydrogenase. [PDF]
Bharwad K, Ghoghari N, Rajkumar S.
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Degradation of p-benzyloxyphenol by Acinetobacter sp. [PDF]
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Immobilization of <i>Acinetobacter</i> sp. A-1 and Applicability in Removal of Difenoconazole from Water-Sediment Systems. [PDF]
Chen F +8 more
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Biosorption of arsenic (III) from aqueous solution using calcium alginate immobilized dead biomass of Acinetobacter sp. strain Sp2b. [PDF]
Khandelwal R +5 more
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