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Titlebook: Interactions in the Root Environment — An Integrated Approach; Proceedings of the M David S. Powlson,Geoff L. Bateman,Penny R. Hirsch Confe

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V. J. Goddard,M. J. Bailey,P. Darrah,A. K. Lilley,I. P. ThompsonCAGD methods are ex­ cluded. In particular, rational Bezier and B-spline techniques are not ad­ dressed since a rigorous treatment within the appropriate context of projec­ tive geometry would have been beyond the scope of this book.978-3-642-07842-2978-3-662-04919-8Series ISSN 1612-3786 Series E-ISSN 2197-666X
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Signalling between arbuscular mycorrhizal fungi and plants: Identification of a gene expressed durihiza, the nature of signalling molecules and signal perception/transduction processes are so far unknown. Virtually nothing is known of molecular interactions during initial contact between arbuscular mycorrhizal symbionts, but plant mutants which limit fungal development to these first steps (myc.)
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Root proliferation, nitrate inflow and their carbon costs during nitrogen capture by competing planate per unit root length) within the patch. Nitrate uptake from an N-rich patch is thereby maximised and, perhaps, compensates for an uneven supply of nitrate to the whole root system. Paradoxically, the often weak correlation between root length density and N uptake found in experiments on single p
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Rhizosphere carbon flow measurement and implications: From isotopes to reporter genes,ts consequences have largely remained elusive to soil biologists. Techniques involving both radioactive (.C) and stable (.C) isotopes of carbon have made some progress in terms of studying rhizosphere C-flow. Pulse-chase techniques have been used effectively to study dynamics of C-transfer to the rh
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