Systematic and Applied Microbiology, ISSN 0723-2020, 10/2013, Volume 36, Issue 7, pp. 467 - 473
In a survey of rhizobia associated with the native legumes in Yunnan Province, China, seven and nine strains isolated from the root nodules of , and were...
Ensifer psoraleaesp. nov | Ensifer sesbaniaesp. nov | Ensifer morelensecomb. nov | Ensifer americanumcomb. nov | Ensifer sesbaniae sp. nov | Ensifer psoraleae sp. nov | Ensifer morelense comb. nov | Ensifer americanum comb. nov | DEOXYRIBONUCLEIC-ACID | MAXIMUM-LIKELIHOOD | CLASSIFICATION | MICROBIOLOGY | MOLECULAR SYSTEMATICS | IDENTIFICATION | MULTILOCUS SEQUENCE-ANALYSIS | RHIZOBIUM | Ensifer sesbaniae sp nov | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | DNA | Ensifer psoraleae sp nov | DIVERSITY | BRADYRHIZOBIUM | Nucleic Acid Hybridization | Rhizobiaceae - chemistry | Root Nodules, Plant - microbiology | Fatty Acids - analysis | Molecular Sequence Data | Plants - microbiology | DNA, Bacterial - chemistry | Phylogeny | DNA, Ribosomal - chemistry | Genes, Essential | Sequence Analysis, DNA | DNA, Bacterial - genetics | Base Composition | Bacterial Typing Techniques | China | Rhizobiaceae - classification | RNA, Ribosomal, 16S - genetics | Rhizobiaceae - isolation & purification | Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization | Cluster Analysis | DNA, Ribosomal - genetics | Rhizobiaceae - genetics | Legumes | Beans | RNA | Analysis | Forest management | Fatty acids | Mimosaceae | Soil microbiology
Ensifer psoraleaesp. nov | Ensifer sesbaniaesp. nov | Ensifer morelensecomb. nov | Ensifer americanumcomb. nov | Ensifer sesbaniae sp. nov | Ensifer psoraleae sp. nov | Ensifer morelense comb. nov | Ensifer americanum comb. nov | DEOXYRIBONUCLEIC-ACID | MAXIMUM-LIKELIHOOD | CLASSIFICATION | MICROBIOLOGY | MOLECULAR SYSTEMATICS | IDENTIFICATION | MULTILOCUS SEQUENCE-ANALYSIS | RHIZOBIUM | Ensifer sesbaniae sp nov | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | DNA | Ensifer psoraleae sp nov | DIVERSITY | BRADYRHIZOBIUM | Nucleic Acid Hybridization | Rhizobiaceae - chemistry | Root Nodules, Plant - microbiology | Fatty Acids - analysis | Molecular Sequence Data | Plants - microbiology | DNA, Bacterial - chemistry | Phylogeny | DNA, Ribosomal - chemistry | Genes, Essential | Sequence Analysis, DNA | DNA, Bacterial - genetics | Base Composition | Bacterial Typing Techniques | China | Rhizobiaceae - classification | RNA, Ribosomal, 16S - genetics | Rhizobiaceae - isolation & purification | Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization | Cluster Analysis | DNA, Ribosomal - genetics | Rhizobiaceae - genetics | Legumes | Beans | RNA | Analysis | Forest management | Fatty acids | Mimosaceae | Soil microbiology
Journal Article
Applied Soil Ecology, ISSN 0929-1393, 11/2017, Volume 120, pp. 35 - 43
Rhizobia play important roles in agriculture owing to their ability to fix nitrogen through a symbiosis with legumes. The specificity of rhizobia-legume...
Rhizobial gyrB | Rhizobium | Phylogeny | Ensifer | Legume
Rhizobial gyrB | Rhizobium | Phylogeny | Ensifer | Legume
Journal Article
FEMS Microbiology Ecology, ISSN 0168-6496, 2018, Volume 94, Issue 11
Journal Article
4.
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Production of 5-O-α-glucosylgingerol via glucosylation of 6-gingerol by Ensifer sp. M-26
Journal of Molecular Catalysis. B, Enzymatic, ISSN 1381-1177, 11/2016, Volume 133, pp. S200 - S203
6-Gingerol (( )-5-hydroxy-1-(4-hydroxy-3-methoxyphenyl)-3-decanone), the major gingerol present in ginger rhizomes, has been found to prevent fat accumulation...
Screening | Bioconversion | Ensifer sp | 6-Gingerol | Microbial glucosylation
Screening | Bioconversion | Ensifer sp | 6-Gingerol | Microbial glucosylation
Journal Article
Systematic and Applied Microbiology, ISSN 0723-2020, 2013
In a survey of rhizobia associated with the native legumes in Yunnan Province, China, seven and nine strains isolated from the root nodules of Psoralea...
Legumes | Ensifer sesbaniae sp. nov | Rhizobia | Ensifer psoraleae sp. nov
Legumes | Ensifer sesbaniae sp. nov | Rhizobia | Ensifer psoraleae sp. nov
Journal Article
Journal of Ecology and Rural Environment, ISSN 1673-4831, 02/2019, Volume 35, Issue 2, pp. 248 - 254
Journal Article
Acta Horticulturae, ISSN 0567-7572, 2018, Volume 1227, pp. 417 - 424
Journal Article
International Biodeterioration & Biodegradation, ISSN 0964-8305, 09/2014, Volume 93, pp. 10 - 17
A thiacloprid (THI)-degrading bacterium CGMCC 7333 was isolated from soil and identified as the N -fixing bacterium . The major metabolite was identified as...
Biodegradation | Thiacloprid amide | Ensifer meliloti | Thiacloprid | Nitrile hydratase
Biodegradation | Thiacloprid amide | Ensifer meliloti | Thiacloprid | Nitrile hydratase
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 04/2016, Volume 67, Issue 8, pp. 2483 - 2494
NopL of Sinorhizobium sp. NGR234 is targeted to plant nuclei and functions as a MAP kinase substrate. Symbiotic effector activity depends on serine-proline...
mitogen-activated protein kinase | NopL | type 3 protein secretion system | Effector | Sinorhizobium (Ensifer) sp. strain NGR234 | multiple phosphorylation | RHIZOBIUM SP NGR234 | PLANT DEFENSE REACTIONS | NODULATION OUTER PROTEINS | PSEUDOMONAS-SYRINGAE | strain NGR234 | SACCHAROMYCES-CEREVISIAE | PLANT SCIENCES | GRAM-NEGATIVE BACTERIA | Sinorhizobium (Ensifer) sp | BRADYRHIZOBIUM-JAPONICUM | FUNCTIONAL-ANALYSIS | CULTURED TOBACCO TISSUES | III SECRETION SYSTEM | Symbiosis | Sinorhizobium - metabolism | Phaseolus - physiology | Phosphorylation | Substrate Specificity | Mutation - genetics | Serine - metabolism | Sinorhizobium - enzymology | MAP Kinase Signaling System | Saccharomyces cerevisiae - metabolism | Tobacco | Cell Nucleus - metabolism | Plant Root Nodulation | Protein Binding | Bacterial Proteins - metabolism | Mitogen-Activated Protein Kinases - metabolism
mitogen-activated protein kinase | NopL | type 3 protein secretion system | Effector | Sinorhizobium (Ensifer) sp. strain NGR234 | multiple phosphorylation | RHIZOBIUM SP NGR234 | PLANT DEFENSE REACTIONS | NODULATION OUTER PROTEINS | PSEUDOMONAS-SYRINGAE | strain NGR234 | SACCHAROMYCES-CEREVISIAE | PLANT SCIENCES | GRAM-NEGATIVE BACTERIA | Sinorhizobium (Ensifer) sp | BRADYRHIZOBIUM-JAPONICUM | FUNCTIONAL-ANALYSIS | CULTURED TOBACCO TISSUES | III SECRETION SYSTEM | Symbiosis | Sinorhizobium - metabolism | Phaseolus - physiology | Phosphorylation | Substrate Specificity | Mutation - genetics | Serine - metabolism | Sinorhizobium - enzymology | MAP Kinase Signaling System | Saccharomyces cerevisiae - metabolism | Tobacco | Cell Nucleus - metabolism | Plant Root Nodulation | Protein Binding | Bacterial Proteins - metabolism | Mitogen-Activated Protein Kinases - metabolism
Journal Article
Microbiological Research, ISSN 0944-5013, 01/2020, Volume 231, p. 126356
In -legume symbiosis, the nodule is the most frequently studied compartment, where the endophytic/symbiotic microbiota demands critical investigation for...
Metagenomics | Illumina sequencing of 16S rRNA gene | Acinetobacter | Ensifer | Site-specific dominance | Bradyrhizobium
Metagenomics | Illumina sequencing of 16S rRNA gene | Acinetobacter | Ensifer | Site-specific dominance | Bradyrhizobium
Journal Article
Microbiological Research, ISSN 0944-5013, 01/2020, Volume 231, p. 126354
Quorum sensing (QS) in rhizobia regulates diverse processes determining the success and efficiency of association with the legume host. Despite the notable...
N-Acyl homoserine lactone | Pigeon pea | Quorum sensing | Ensifer
N-Acyl homoserine lactone | Pigeon pea | Quorum sensing | Ensifer
Journal Article
Biochemical and Biophysical Research Communications, ISSN 0006-291X, 08/2019, Volume 516, Issue 3, pp. 907 - 913
Despite the conservative DNA sequences among (Acyl Homoserine Lactones synthase gene) homologs, structure-product relationship of AHL synthase remains to be...
Ensifer adhaerens | Acyl homoserine lactones | Docking affinity | 3D structures | Structure-products relationship | BACTERIA | BIOPHYSICS | BIOCHEMISTRY & MOLECULAR BIOLOGY | Genetic research | Enzymes | Biological products | Nucleotide sequencing | DNA sequencing
Ensifer adhaerens | Acyl homoserine lactones | Docking affinity | 3D structures | Structure-products relationship | BACTERIA | BIOPHYSICS | BIOCHEMISTRY & MOLECULAR BIOLOGY | Genetic research | Enzymes | Biological products | Nucleotide sequencing | DNA sequencing
Journal Article
In Vitro Cellular & Developmental Biology - Plant, ISSN 1054-5476, 10/2016, Volume 52, Issue 5, pp. 461 - 478
The importance of cassava as the fourth largest source of calories in the world requires that contributions of biotechnology to improving this crop, advances...
Artificial TALs | Propagation | Somatic embryogenesis | Transgenic cassava | Cassava viruses whiteflies CBB | Ensifer -mediated transformation | Synthetic seeds | Cell Biology | Plant Genetics & Genomics | Life Sciences | Climate change | Plant Breeding/Biotechnology | Nutritional improvement | Genome editing | Developmental Biology | Plant Sciences | Effector binding element EBE | Ensifer-mediated transformation | SHOOT TIPS | MASS PROPAGATION | PLANT-REGENERATION | FRIABLE EMBRYOGENIC CALLUS | DEVELOPMENTAL BIOLOGY | AGROBACTERIUM-MEDIATED TRANSFORMATION | MANIHOT-ESCULENTA CRANTZ | PLANT SCIENCES | CELL BIOLOGY | DISEASE-SUSCEPTIBILITY GENE | BACTERIAL-BLIGHT | Bacterial infections | Potatoes | Agricultural biotechnology | Analysis | Genomics | Vegetable industry | Aleyrodidae | Climatic changes | Genetic engineering | Studies | Biotechnology | Agricultural production | Crop diseases | Transgenic plants | Cassava | Invited Review
Artificial TALs | Propagation | Somatic embryogenesis | Transgenic cassava | Cassava viruses whiteflies CBB | Ensifer -mediated transformation | Synthetic seeds | Cell Biology | Plant Genetics & Genomics | Life Sciences | Climate change | Plant Breeding/Biotechnology | Nutritional improvement | Genome editing | Developmental Biology | Plant Sciences | Effector binding element EBE | Ensifer-mediated transformation | SHOOT TIPS | MASS PROPAGATION | PLANT-REGENERATION | FRIABLE EMBRYOGENIC CALLUS | DEVELOPMENTAL BIOLOGY | AGROBACTERIUM-MEDIATED TRANSFORMATION | MANIHOT-ESCULENTA CRANTZ | PLANT SCIENCES | CELL BIOLOGY | DISEASE-SUSCEPTIBILITY GENE | BACTERIAL-BLIGHT | Bacterial infections | Potatoes | Agricultural biotechnology | Analysis | Genomics | Vegetable industry | Aleyrodidae | Climatic changes | Genetic engineering | Studies | Biotechnology | Agricultural production | Crop diseases | Transgenic plants | Cassava | Invited Review
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Soybean inoculation: Dose, N fertilizer supplementation and rhizobia persistence in soil
Field Crops Research, ISSN 0378-4290, 2009, Volume 113, Issue 3, pp. 352 - 356
The effect of rate of application of ( ) SMH12 or USDA110 inoculants on grain yields of soybean [ (L.) Merrill] cv. Osumi was studied in a field experiment...
Sinorhizobium ( Ensifer) fredii | Soybean | N fertilizer | Bradyrhizobium japonicum | Inoculation rate | Survival in soil | Sinorhizobium (Ensifer) fredii | AGRONOMY | N-2 FIXATION | YIELD | NITROGEN | Soils | Fertilizer industry | Analysis | Soil structure | Glycine | Fertilizers
Sinorhizobium ( Ensifer) fredii | Soybean | N fertilizer | Bradyrhizobium japonicum | Inoculation rate | Survival in soil | Sinorhizobium (Ensifer) fredii | AGRONOMY | N-2 FIXATION | YIELD | NITROGEN | Soils | Fertilizer industry | Analysis | Soil structure | Glycine | Fertilizers
Journal Article
FEMS MICROBIOLOGY ECOLOGY, ISSN 0168-6496, 11/2018, Volume 94, Issue 11
Nodules of Chamaecrista pumila growing in several locations in India were sampled for anatomical studies and for characterization of their rhizobial...
MOLECULAR CHARACTERIZATION | fixation threads | EVOLUTIONARY GENETICS | JIM5 | THAR DESERT | MLSA | MICROBIOLOGY | SP NOV | Symbiotic genes | GENETIC DIVERSITY | MULTILOCUS SEQUENCE-ANALYSIS | EFFECTIVE NODULES | MIMOSA SPP | RHIZOBIA | Ensifer | NODULATION GENES | Bradyrhizobium
MOLECULAR CHARACTERIZATION | fixation threads | EVOLUTIONARY GENETICS | JIM5 | THAR DESERT | MLSA | MICROBIOLOGY | SP NOV | Symbiotic genes | GENETIC DIVERSITY | MULTILOCUS SEQUENCE-ANALYSIS | EFFECTIVE NODULES | MIMOSA SPP | RHIZOBIA | Ensifer | NODULATION GENES | Bradyrhizobium
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 03/2018, Volume 115, Issue 10, pp. 2425 - 2430
Assays to accurately estimate relative fitness of bacteria growing in multistrain communities can advance our understanding of how selection shapes diversity...
Medicago | Evolve and resequence | Facultative mutualism | Synthetic community | Ensifer meliloti | SINORHIZOBIUM-MELILOTI | MULTIDISCIPLINARY SCIENCES | facultative mutualism | GENOME | EVOLUTION | BRADYRHIZOBIUM-JAPONICUM | ADAPTATION | GENE-EXPRESSION | NITROGEN | evolve and resequence | synthetic community | ASSOCIATION | RHIZOBIUM-MELILOTI | Biological Sciences
Medicago | Evolve and resequence | Facultative mutualism | Synthetic community | Ensifer meliloti | SINORHIZOBIUM-MELILOTI | MULTIDISCIPLINARY SCIENCES | facultative mutualism | GENOME | EVOLUTION | BRADYRHIZOBIUM-JAPONICUM | ADAPTATION | GENE-EXPRESSION | NITROGEN | evolve and resequence | synthetic community | ASSOCIATION | RHIZOBIUM-MELILOTI | Biological Sciences
Journal Article
INTERNATIONAL BIODETERIORATION & BIODEGRADATION, ISSN 0964-8305, 09/2014, Volume 93, pp. 10 - 17
A thiacloprid (THI)-degrading bacterium CGMCC 7333 was isolated from soil and identified as the N-2-fixing bacterium Ensifer meliloti. The major metabolite was...
Biodegradation | ENVIRONMENTAL SCIENCES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENZYMES | Nitrile hydratase | Thiacloprid amide | Ensifer meliloti | Thiacloprid
Biodegradation | ENVIRONMENTAL SCIENCES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENZYMES | Nitrile hydratase | Thiacloprid amide | Ensifer meliloti | Thiacloprid
Journal Article
Genes, ISSN 2073-4425, 08/2018, Volume 9, Issue 8, p. 379
Ensifer (Sinorhizobium) sp. M14 is an efficient arsenic-oxidizing bacterium (AOB) that displays high resistance to numerous metals and various stressors. Here,...
Draft genome sequence | Ensifer (Sinorhizobium) sp. M14 | Water treatment | Arsenic-oxidizing bacteria | Adsorption | Comparative genomic analysis | Heavy metal resistance | Biosafety | Biotechnology for arsenic removal | In situ (bio)remediation | OXIDATION | adsorption | heavy metal resistance | draft genome sequence | Ensifer (Sinorhizobium) sp M14 | SINORHIZOBIUM SP M14 | arsenic-oxidizing bacteria | MICROBIAL COMMUNITY | MELILOTI | water treatment | REMOVAL | biotechnology for arsenic removal | ANNOTATION | CONTAMINATED SOILS | SEQUENCE | GENETICS & HEREDITY | REFRACTORY GOLD CONCENTRATE | comparative genomic analysis | in situ (bio)remediation | CARBON-DIOXIDE | biosafety
Draft genome sequence | Ensifer (Sinorhizobium) sp. M14 | Water treatment | Arsenic-oxidizing bacteria | Adsorption | Comparative genomic analysis | Heavy metal resistance | Biosafety | Biotechnology for arsenic removal | In situ (bio)remediation | OXIDATION | adsorption | heavy metal resistance | draft genome sequence | Ensifer (Sinorhizobium) sp M14 | SINORHIZOBIUM SP M14 | arsenic-oxidizing bacteria | MICROBIAL COMMUNITY | MELILOTI | water treatment | REMOVAL | biotechnology for arsenic removal | ANNOTATION | CONTAMINATED SOILS | SEQUENCE | GENETICS & HEREDITY | REFRACTORY GOLD CONCENTRATE | comparative genomic analysis | in situ (bio)remediation | CARBON-DIOXIDE | biosafety
Journal Article
Journal of Agricultural and Food Chemistry, ISSN 0021-8561, 01/2019, Volume 67, Issue 1, pp. 63 - 71
Biodegradation of pesticide pollution is often restricted by environmental pressures, such as nutrient deprivation. Ensifer adhaerens CGMCC 6315 could overcome...
Ensifer adhaerens | biodegradation | nitrile hydratase | acetamiprid | nutrient deprivation | RHODOCOCCUS-RHODOCHROUS J1 | FOOD SCIENCE & TECHNOLOGY | HYDROLYSIS | TOXICITY | GENE-CLUSTER | MASS NITRILE HYDRATASE | PURIFICATION | AGRICULTURE, MULTIDISCIPLINARY | CHEMISTRY, APPLIED | STRAIN | ENVIRONMENTAL RISKS
Ensifer adhaerens | biodegradation | nitrile hydratase | acetamiprid | nutrient deprivation | RHODOCOCCUS-RHODOCHROUS J1 | FOOD SCIENCE & TECHNOLOGY | HYDROLYSIS | TOXICITY | GENE-CLUSTER | MASS NITRILE HYDRATASE | PURIFICATION | AGRICULTURE, MULTIDISCIPLINARY | CHEMISTRY, APPLIED | STRAIN | ENVIRONMENTAL RISKS
Journal Article
International Journal of Biological Macromolecules, ISSN 0141-8130, 07/2018, Volume 114, pp. 18 - 25
Bioemulsifiers are able to stabilize oil-in-water emulsions and are very important in several industrial processes, including food processing. In this study, a...
Ensifer adhaerens | Edible oils | Exopolysaccharides | Bioemulsifier | POLYMER SCIENCE | BIOCHEMISTRY & MOLECULAR BIOLOGY | BIOSURFACTANTS | ENVIRONMENTAL APPLICATIONS | RECOVERY | LACTIC-ACID BACTERIA | RHIZOBIA | OPTIMIZATION | CHEMISTRY, APPLIED | STRAIN
Ensifer adhaerens | Edible oils | Exopolysaccharides | Bioemulsifier | POLYMER SCIENCE | BIOCHEMISTRY & MOLECULAR BIOLOGY | BIOSURFACTANTS | ENVIRONMENTAL APPLICATIONS | RECOVERY | LACTIC-ACID BACTERIA | RHIZOBIA | OPTIMIZATION | CHEMISTRY, APPLIED | STRAIN
Journal Article
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