1.
Bioavailability of soil inorganic P in the rhizosphere as affected by root-induced chemical changes: a review
by HINSINGER, Philippe
Plant and soil, 2001-12-01, Vol.237 (2), p.173-195

2.
Plant-microbe-soil interactions in the rhizosphere: an evolutionary perspective
by Lambers, Hans
Plant and soil, 2009-08-01, Vol.321 (1/2), p.83-115

3.
Rhizosphere: biophysics, biogeochemistry and ecological relevance
by Hinsinger, Philippe
Plant and soil, 2009-08-01, Vol.321 (1/2), p.117-152

4.
Copper phytotoxicity affects root elongation and iron nutrition in durum wheat (Triticum turgidum durum L.)
by Michaud, Aurélia M
Plant and soil, 2008-01-01, Vol.310 (1/2), p.151-165

5.
Oxygen input controls the spatial and temporal dynamics of arsenic at the surface of a flooded paddy soil and in the rhizosphere of lowland rice (Oryza sativa L.): a microcosm stud...
by Bravin, Matthieu N
Plant and soil, 2008-01-01, Vol.312 (1/2), p.207-218

6.
Copper uptake kinetics in hydroponically-grown durum wheat (Triticum turgidum durum L.) as compared with soil's ability to supply copper
by Bravin, Matthieu N
Plant and soil, 2010-06-01, Vol.331 (1/2), p.91-104

7.
Copper concentration in plants and in the rhizosphere as influenced by the iron status of tomato (Lycopersicon esculentum L.)
by YVES CORNU, Jean
Plant and soil, 2007-03-01, Vol.292 (1/2), p.63-77

8.
Copper uptake and phytotoxicity as assessed in situ for durum wheat (Triticum turgidum durum L.) cultivated in Cu-contaminated, former vineyard soils
by MICHAUD, A. M
Plant and soil, 2007-09-01, Vol.298 (1/2), p.99-111

9.
Dynamics of phosphorus fractions in the rhizosphere of common bean (Phaseolus vulgaris L.) and durum wheat (Triticum turgidum durum L.) grown in monocropping and intercropping syst...
by Li, H
Plant and soil, 2008-01-01, Vol.312 (1/2), p.139-150

10.
Endogeic earthworms modify soil phosphorus, plant growth and interactions in a legume-cereal intercrop
by Coulis, M
Plant and soil, 2014-06-01, Vol.379 (1/2), p.149-160

11.
Rhizosphere alkalisation — a major driver of copper bioavailability over a broad pH range in an acidic, copper-contaminated soil
by BRAVIN, M. N
Plant and soil, 2009-05-01, Vol.318 (1/2), p.257-268

12.
Copper bioavailability and rhizosphere pH changes as affected by nitrogen supply for tomato and oilseed rape cropped on an acidic and a calcareous soil
by CHAIGNON, V
Plant and soil, 2002-06-01, Vol.243 (2), p.219-228

13.
Root-induced processes controlling phosphate availability in soils with contrasted P-fertilized treatments: Soil-plant-microbe interactions from microscopy to field practice
by DEVAU, Nicolas
Plant and soil, 2011, Vol.348 (1-2), p.203-218

14.
New approaches to studying chemical and physical changes in the rhizosphere: an overview
by Gregory, P.J. (Reading Univ. (United Kingdom). Dept. of Soil Science)
Plant and soil, 1999, Vol.211 (1), p.1-9

15.
Acquisition of phosphorus and other poorly mobile nutrients by roots. Where do plant nutrition models fail?: Soil-plant-microbe interactions from microscopy to field practice
by HINSINGER, Philippe
Plant and soil, 2011, Vol.348 (1-2), p.29-61

16.
Dynamics of phosphorus in the rhizosphere of maize and rape grown on synthetic, phosphated calcite and goethite
by Bertrand, I. (Unite de Formation et de Recherche INRA, Montpellier (France).)
Plant and soil, 1999, Vol.211 (1), p.111-119

17.
Root uptake and translocation of radiocaesium from agricultural soils by various plant species
by STAUNTON, S
Plant and soil, 2003-07-01, Vol.254 (2), p.443-455

18.
Root-induced modifications of the exchange of phosphate ion between soil solution and soil solid phase
by Morel, C. (Agronomie INRA, Villenave d'Ornon (France).)
Plant and soil, 1999, Vol.211 (1), p.103-110

19.
Root uptake and distribution of radiocaesium from contaminated soils and the enhancement of Cs adsorption in the rhizosphere
by Guivarch, A. (Unite de Science du Sol INRA, Montpellier (France).)
Plant and soil, 1999, Vol.211 (1), p.131-138

20.
