Courtney D. Giles
James Hutton Institute
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Publication
Featured researches published by Courtney D. Giles.
Plant and Soil | 2018
Timothy S. George; Courtney D. Giles; Daniel Menezes-Blackburn; Leo M. Condron; A. C. Gama-Rodrigues; Deb P. Jaisi; Friederike Lang; Andrew L. Neal; Marc I. Stutter; Danilo S. Almeida; Roland Bol; K. G. Cabugao; Luisella Celi; James B. Cotner; Gu Feng; D. S. Goll; M. Hallama; J. Krueger; Claude Plassard; Anna Rosling; Tegan Darch; Tandra D. Fraser; Reiner Giesler; Alan E. Richardson; Federica Tamburini; Charles A. Shand; David G. Lumsdon; Hao Zhang; M. S. A. Blackwell; Catherine Wearing
BackgroundThe dynamics of phosphorus (P) in the environment is important for regulating nutrient cycles in natural and managed ecosystems and an integral part in assessing biological resilience against environmental change. Organic P (Po) compounds play key roles in biological and ecosystems function in the terrestrial environment being critical to cell function, growth and reproduction.ScopeWe asked a group of experts to consider the global issues associated with Po in the terrestrial environment, methodological strengths and weaknesses, benefits to be gained from understanding the Po cycle, and to set priorities for Po research.ConclusionsWe identified seven key opportunities for Po research including: the need for integrated, quality controlled and functionally based methodologies; assessment of stoichiometry with other elements in organic matter; understanding the dynamics of Po in natural and managed systems; the role of microorganisms in controlling Po cycles; the implications of nanoparticles in the environment and the need for better modelling and communication of the research. Each priority is discussed and a statement of intent for the Po research community is made that highlights there are key contributions to be made toward understanding biogeochemical cycles, dynamics and function of natural ecosystems and the management of agricultural systems.
Physiologia Plantarum | 2018
Courtney D. Giles; Alan E. Richardson; Barbara J. Cade-Menun; Malika M. Mezeli; Lawrie K. Brown; Daniel Menezes-Blackburn; Tegan Darch; M. S. A. Blackwell; Charles A. Shand; Marc I. Stutter; Renate Wendler; Patricia Cooper; David G. Lumsdon; Catherine Wearing; Hao Zhang; Philip M. Haygarth; Timothy S. George
Citrate and phytase root exudates contribute to improved phosphorus (P) acquisition efficiency in Nicotiana tabacum (tobacco) when both exudates are produced in a P deficient soil. To test the importance of root intermingling in the interaction of citrate and phytase exudates, Nicotiana tabacum plant-lines with constitutive expression of heterologous citrate (Cit) or fungal phytase (Phy) exudation traits were grown under two root treatments (roots separated or intermingled) and in two soils with contrasting soil P availability. Complementarity of plant mixtures varying in citrate efflux rate and mobility of the expressed phytase in soil was determined based on plant biomass and P accumulation. Soil P composition was evaluated using solution 31 P NMR spectroscopy. In the soil with limited available P, positive complementarity occurred in Cit+Phy mixtures with roots intermingled. Root separation eliminated positive interactions in mixtures expressing the less mobile phytase (Aspergillus niger PhyA) whereas positive complementarity persisted in mixtures that expressed the more mobile phytase (Peniophora lycii PhyA). Soils from Cit+Phy mixtures contained less inorganic P and more organic P compared to monocultures. Exudate-specific strategies for the acquisition of soil P were most effective in P-limited soil and depended on citrate efflux rate and the relative mobility of the expressed phytase in soil. Plant growth and soil P utilization in plant systems with complementary exudation strategies are expected to be greatest where exudates persist in soil and are expressed synchronously in space and time.
Plant and Soil | 2017
Timothy S. George; Courtney D. Giles; Daniel Menezes-Blackburn; Leo M. Condron; A. C. Gama-Rodrigues; Deb P. Jaisi; Friederike Lang; Andrew L. Neal; Marc I. Stutter; Danilo S. Almeida; Roland Bol; K. G. Cabugao; Luisella Celi; James B. Cotner; Gu Feng; D. S. Goll; M. Hallama; J. Krueger; Claude Plassard; Anna Rosling; Tegan Darch; Tandra D. Fraser; Reiner Giesler; Alan E. Richardson; F. Tamburini; Charles A. Shand; David G. Lumsdon; Hao Zhang; M. S. A. Blackwell; Catherine Wearing
The article “Organic phosphorus in the terrestrial environment: a perspective on the state of the art and future priorities”, written by Timothy S George et al., was originally published with incorrect affiliation information for one of the co-authors, E. Klumpp.
Environmental Science & Technology | 2016
Daniel Menezes-Blackburn; Hao Zhang; Marc I. Stutter; Courtney D. Giles; Tegan Darch; Timothy S. George; Charles A. Shand; David G. Lumsdon; Martin Blackwell; Catherine Wearing; Patricia Cooper; Renate Wendler; Lawrie K. Brown; Philip M. Haygarth
Environmental Science & Technology | 2016
Daniel Menezes-Blackburn; Cecilia Paredes; Hao Zhang; Courtney D. Giles; Tegan Darch; Marc I. Stutter; Timothy S. George; Charles A. Shand; David G. Lumsdon; Patricia Cooper; Renate Wendler; Lawrie K. Brown; Martin Blackwell; Catherine Wearing; Philip M. Haygarth
Plant and Soil | 2018
Daniel Menezes-Blackburn; Courtney D. Giles; Tegan Darch; Timothy S. George; M. S. A. Blackwell; Marc I. Stutter; Charles A. Shand; David G. Lumsdon; Patricia Cooper; Renate Wendler; Lawrie K. Brown; Danilo S. Almeida; Catherine Wearing; Hao Zhang; Philip M. Haygarth
Plant and Soil | 2017
Courtney D. Giles; Timothy S. George; Lawrie K. Brown; Malika M. Mezeli; Alan E. Richardson; Charles A. Shand; Renate Wendler; Tegan Darch; Daniel Menezes-Blackburn; Patricia Cooper; Marc I. Stutter; David G. Lumsdon; M. S. A. Blackwell; Catherine Wearing; Hao Zhang; Philip M. Haygarth
Plant Science | 2017
Courtney D. Giles; Lawrie K. Brown; Michael O. Adu; Malika M. Mezeli; Graeme A. Sandral; Richard J. Simpson; Renate Wendler; Charles A. Shand; Daniel Menezes-Blackburn; Tegan Darch; Marc I. Stutter; David G. Lumsdon; Hao Zhang; M. S. A. Blackwell; Catherine Wearing; Patricia Cooper; Philip M. Haygarth; Timothy S. George
Rhizosphere | 2017
Courtney D. Giles; Timothy S. George; Lawrie K. Brown; Malika M. Mezeli; Charles A. Shand; Alan E. Richardson; Regina Louise MacKay; Renate Wendler; Tegan Darch; Daniel Menezes-Blackburn; Patricia Cooper; Marc I. Stutter; David G. Lumsdon; M. S. A. Blackwell; Catherine Wearing; Hao Zhang; Philip M. Haygarth
Plant and Soil | 2018
Tegan Darch; Courtney D. Giles; M. S. A. Blackwell; Timothy S. George; Lawrie K. Brown; Daniel Menezes-Blackburn; Charles A. Shand; Marc I. Stutter; David G. Lumsdon; Malika M. Mezeli; Renate Wendler; Hao Zhang; Catherine Wearing; Patricia Cooper; Philip M. Haygarth