Structure and functioning of cluster roots and plant responses to phosphate deficiency

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Veröffentlicht: Dordrecht [u.a.] Kluwer Acad. Publ. 2003
Schriftenreihe:Plant and soil 248
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adam_text Titel: Structure and functioning of cluster roots and plant responses to phosphate deficiency Autor: Lambers, Hans Jahr: 2003 Contents STRUCTURE AND FUNCTIONING OF CLUSTER ROOTS AND PLANT RESPONSES TO PHOSPHATE DEFICIENCY The biology of cluster roots and the acquisition of P from the rhizosphere 1. Introduction H. Lambers, M.D. Cramer, M.W. Shane, M. Wouterlood, P. Poot and E.J. Veneklaas ix 2. Structure, ecology and physiology of root clusters - a review B.B. Lamont 1 3. The evolution of physiology and development in the cluster root: teaching an old dog new tricks ? K.R. Skene 21 4. Organic acid behavior in soils - misconceptions and knowledge gaps D.L. Jones, P.G. Dennis, A.G. Owen and P.A.W. van Hees 31 5. Origins of root-mediated pH changes in the rhizosphere and their responses to environmental constraints: A review P. Hinsinger, C. Plassard, C. Tang and B. Jaillard 43 6. Strategies to isolate transporters that facilitate organic anion efflux from plant roots P.R. Ryan, B. Dong, M. Watt, T. Kataoka and E. Delhaize 61 7. Phosphate transport in plants F.W. Smith, S.R. Mudge, A.L. Rae and D. Glassop 71 8. Development of the adhesive pad on climbing fig (Ficus pumila) stems from clusters of adventi- tious roots E.P. Groot, E.J. Sweeney and T.L. Rost 85 Pathways of carbon metabolism related to enhanced exudation of organic acids and acid phosphatase 9. Acclimation of white lupin to phosphorus deficiency involves enhanced expression of genes related to organic acid metabolism C. Uhde-Stone, G. Gilbert, J.M.-F. Johnson, R. Litjens. K.E. Zinn. S.J. Temple. C.P. Vance and 99 D.L. Allan 10. Phosphorus deficiency-induced modifications in citrate catabolism and in cytosolic pH as related to citrate exudation in cluster roots of white lupin A. Kania, N. Langlade. E. Martinoia and G. Neumann 117 11. Secreted acid phosphatase is expressed in cluster roots of lupin in response to phosphorus deficiency J. Wasaki, T. Yamamura, T. Shinano and M. Osaki 129 12. Effects of altered citrate synthase and isocitrate dehydrogenase expression on internal citrate concentrations and citrate efflux from tobacco (Nicotiana tabacum L.) roots E. Delhaize, P.R. Ryan, P.J. Hocking and A.E. Richardson 137 13. Characterization of NADP-isocitrate dehydrogenase expression in a carrot mutant cell line with enhanced citrate excretion T. Kihara, T. Ohno. H. Koyama, T. Sawafuji and T. Hara 145 The influence of organic acid exudation and cluster roots on P and N acquisition 14. Do cluster roots of Hakea actities (Proteaceae) acquire complex organic nitrogen? S. Schmidt. M. Mason. T. Sangtiean and G.R. Stewart 157 15. Lupinus luteus cv. Wodjil takes up more phosphorus and cadmium than Lupinus angustifolius cv. Kalya R.F. Brennan and M.D.A. Bolland 167 16. Chickpea and white lupin rhizosphere carboxylates vary with soil properties and enhance phos- phorus uptake E.J. Veneklaas, J. Stevens, G.R. Cawthray, S. Turner, A.M. Grigg and H. Lambers 187 17. Role of phosphorus nutrition in development of cluster roots and release of carboxylates in soil-grown Lupinus albus J. Shen. Z. Rengel, C. Tang and F. Zhang 199 The influence of plant nutrition on plant growth and development of cluster roots 18. Effects of external phosphorus supply on internal phosphorus concentration and the initiation, growth and exudation of cluster roots in Hakea prostrata R.Br. M.W. Shane. M. de Vos, S. de Roock, G.R. Cawthray and H. Lambers 209 19. Differences in cluster-root formation and carboxylate exudation in Lupinus albus L. under dif- ferent nutrient deficiencies R. Liang and C. Li 221 20. Is Fe deficiency rather than P deficiency the cause of cluster root formation in Casuarina species? E.H. Zai d. M. Arahou. H.G. Diem and R. El Morabet 229 21. The formation, morphology and anatomy of cluster root of Lupinus albus L. as dependent on soil type and phosphorus supply C.S. Peek. A.D. Robson and J. Kuo 237 22. Localized supply of phosphorus induces root morphological and architectural changes of rice in split and stratified soil cultures Y. He. H. Liao and X. Yan 247 23. Interaction of nitrogen and phosphorus nutrition in determining growth C.C. de Groot. L.F.M. Marcelis. R. van den Boogaard. W.M. Kaiser and H. Lambers 257 Implications of root architecture, root-soil interactions and mycorrhiza on plant P nutrition 24. Phosphorus acquisition from soil by white lupin (Lupinus albus L.) and soybean (Glvcine max L.). species with contrasting root development M. Watt and J.R. Evans 271 25. Plantago lanceolata L. and Rumex acetosella L. differ in their utilisation of soil phosphorus fractions A.-M. Fransson, I.M. van Aarle. P.A. Olsson and G. Tyler 285 26. Chickpea facilitates phosphorus uptake by intercropped wheat from an organic phosphorus source L. Li, C. Tang. Z. Rengel and F. Zhang 297 27. Using competitive and facilitative interactions in intercropping systems enhances crop productiv- ity and nutrient-use efficiency F. Zhang and L. Li 305 28. Phosphorus uptake by a community of arbuscular mycorrhizal fungi in jarrah forest M.Z. Solaiman and L.K. Abbott 313 29. Relationships between cluster root-bearing taxa and laterite across landscapes in southwest West- ern Australia: an approach using airborne radiometric and digital elevation models W.H. Verboom and J.S. Pate 321 Cover Photo: Cluster roots of Hakea prostrata R.Br.. grown in nutrient solution with 1 /;M phosphate. Cluster roots occur in most species of the Proteaceae and in a range of other species. They release inorganic anions, such as citrate and malate. into the rhizosphere and mobilise and absorb sparingly available phosphate. Cluster roots allow plants to grow in nutrient-impoverished or phosphate-fixing soils. Photograph by Michael W. Shane.
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series2 Plant and soil
spellingShingle Structure and functioning of cluster roots and plant responses to phosphate deficiency
Phosphatase acide ram
Plantes - Effets du phosphore ram
Sols - Teneur en phosphates ram
Système radiculaire ram
Wurzel (DE-588)4136391-7 gnd
Phosphormangel (DE-588)4348570-4 gnd
Pflanzen (DE-588)4045539-7 gnd
subject_GND (DE-588)4136391-7
(DE-588)4348570-4
(DE-588)4045539-7
(DE-588)4143413-4
title Structure and functioning of cluster roots and plant responses to phosphate deficiency
title_auth Structure and functioning of cluster roots and plant responses to phosphate deficiency
title_exact_search Structure and functioning of cluster roots and plant responses to phosphate deficiency
title_full Structure and functioning of cluster roots and plant responses to phosphate deficiency guest ed.: H. Lambers ...
title_fullStr Structure and functioning of cluster roots and plant responses to phosphate deficiency guest ed.: H. Lambers ...
title_full_unstemmed Structure and functioning of cluster roots and plant responses to phosphate deficiency guest ed.: H. Lambers ...
title_short Structure and functioning of cluster roots and plant responses to phosphate deficiency
title_sort structure and functioning of cluster roots and plant responses to phosphate deficiency
topic Phosphatase acide ram
Plantes - Effets du phosphore ram
Sols - Teneur en phosphates ram
Système radiculaire ram
Wurzel (DE-588)4136391-7 gnd
Phosphormangel (DE-588)4348570-4 gnd
Pflanzen (DE-588)4045539-7 gnd
topic_facet Phosphatase acide
Plantes - Effets du phosphore
Sols - Teneur en phosphates
Système radiculaire
Wurzel
Phosphormangel
Pflanzen
Aufsatzsammlung
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010600606&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
work_keys_str_mv AT lambershans structureandfunctioningofclusterrootsandplantresponsestophosphatedeficiency