Philip Simon Poole


Ontology type: schema:Person     


Person Info

NAME

Philip Simon

SURNAME

Poole

Publications in SciGraph latest 50 shown

  • 2020-11-23 Engineering rhizobacteria for sustainable agriculture in THE ISME JOURNAL: MULTIDISCIPLINARY JOURNAL OF MICROBIAL ECOLOGY
  • 2020-06-04 A novel biosensor to monitor proline in pea root exudates and nodules under osmotic stress and recovery in PLANT AND SOIL
  • 2019-12-16 Control of nitrogen fixation in bacteria that associate with cereals in NATURE MICROBIOLOGY
  • 2019-07-31 Engineering transkingdom signalling in plants to control gene expression in rhizosphere bacteria in NATURE COMMUNICATIONS
  • 2018-06-19 Absolute quantitation of microbiota abundance in environmental samples in MICROBIOME
  • 2018-01-30 Rhizobia: from saprophytes to endosymbionts in NATURE REVIEWS MICROBIOLOGY
  • 2017-05-03 Policing the legume-Rhizobium symbiosis: a critical test of partner choice in SCIENTIFIC REPORTS
  • 2015-04-24 Stability and succession of the rhizosphere microbiota depends upon plant type and soil composition in THE ISME JOURNAL: MULTIDISCIPLINARY JOURNAL OF MICROBIAL ECOLOGY
  • 2015-01-30 Arabinose and protocatechuate catabolism genes are important for growth of Rhizobium leguminosarum biovar viciae in the pea rhizosphere in PLANT AND SOIL
  • 2013-12-31 Genome sequence of Rhizobium leguminosarum bv trifolii strain WSM1689, the microsymbiont of the one flowered clover Trifolium uniflorum in ENVIRONMENTAL MICROBIOME
  • 2013-07-18 Comparative metatranscriptomics reveals kingdom level changes in the rhizosphere microbiome of plants in THE ISME JOURNAL: MULTIDISCIPLINARY JOURNAL OF MICROBIAL ECOLOGY
  • 2013-06-25 The plant microbiome in GENOME BIOLOGY
  • 2011-10-21 Adaptation of Rhizobium leguminosarum to pea, alfalfa and sugar beet rhizospheres investigated by comparative transcriptomics in GENOME BIOLOGY
  • 2007-01-01 Physiology Of Root-Nodule Bacteria in NITROGEN-FIXING LEGUMINOUS SYMBIOSES
  • 2006-04-26 The genome of Rhizobium leguminosarum has recognizable core and accessory components in GENOME BIOLOGY
  • 2005-01-01 Amino Acid Cycling by Rhizobium leguminosarum in PEA Nodules in BIOLOGICAL NITROGEN FIXATION, SUSTAINABLE AGRICULTURE AND THE ENVIRONMENT
  • 2003-04 Amino-acid cycling drives nitrogen fixation in the legume–Rhizobium symbiosis in NATURE
  • 2002-08 Role of soil microorganisms in improving P nutrition of plants in PLANT AND SOIL
  • 2002-01-01 Synthesis and Catabolism of Alanine in Rhizobium leguminosarum in NITROGEN FIXATION: FROM MOLECULES TO CROP PRODUCTIVITY
  • 2002 Poly-β-Hydroxybutyrate and Glycogen Metabolism in Rhizobium leguminosarum in NITROGEN FIXATION: FROM MOLECULES TO CROP PRODUCTIVITY
  • 2002 Role of soil microorganisms in improving P nutrition of plants in FOOD SECURITY IN NUTRIENT-STRESSED ENVIRONMENTS: EXPLOITING PLANTS’ GENETIC CAPABILITIES
  • 2000-06 Optical traps: shedding light on biological processes in BIOTECHNOLOGY LETTERS
  • 2000 Ammonium and Alanine are the Primary Nitrogen Secretion Products of Pea Bacteroids in NITROGEN FIXATION: FROM MOLECULES TO CROP PRODUCTIVITY
  • 1998-02 Purification and chacterization of acid-type phosphatases from a heavy-metal-accumulating Citrobacter sp. in ARCHIVES OF MICROBIOLOGY
  • 1998 Why do Bacteroids use C4-Dicarboxylic Acids to Fuel Nitrogen Fixation? in BIOLOGICAL NITROGEN FIXATION FOR THE 21ST CENTURY
  • 1998 myo-Inositol Utilisation by Rhizobium leguminosarum in BIOLOGICAL NITROGEN FIXATION FOR THE 21ST CENTURY
  • 1992-03 Tributyl phosphate degradation by immobilized cells of aCitrobacter sp. in APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY
  • 1990-05 Swimming changes and chemotactic responses in Rhodobacter sphaeroides do not involve changes in the steady state membrane potential or respiratory electron transport in ARCHIVES OF MICROBIOLOGY
  • 1990-03 Chemotactic responses of Rhodobacter sphaeroides in the absence of apparent adaptation in ARCHIVES OF MICROBIOLOGY
  • 1990 Sensory Signalling in Rhodobacter Sphaeroides in MOLECULAR BIOLOGY OF MEMBRANE-BOUND COMPLEXES IN PHOTOTROPHIC BACTERIA
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