Correlative morphogenesis of endodermis and xylem elements in the developing barley root
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Publisher
Springer Netherlands
Link
http://link.springer.com/content/pdf/10.1007/978-94-009-8314-4_14.pdf
Reference5 articles.
1. Higinbotham, N., Davis, R. F., Mertz, S. M. and Shumway, L. K. 1973 Some evidence that radial transport in maize roots is into living vessels. In: Ion transport in plants, pp. 493–506. London: Anderson.
2. Hylmö, B. 1953 Transpiration and ion absorption. Physiol. Plantarum 6(2), 333–405.
3. Läuchli, A., Kramer, D., Pitman, M. G. and Lüttge, U. 1974 Ultrastructure of xylem parenchyma cells of barley roots in relation to ion transport to the xylem. Planta 119, 85–99.
4. Robards, A. W., Jackson, S. M., Clarkson, D. T. and Sanderson, J. 1973 The structure of barley roots in relation to the transport of ions into the stele. Protoplasma 77, 291–312.
5. Thomson, W.W. 1975 The structure and function of salt glands. In: Plants and saline environments, pp. 118–146. Springer-Verlag.
Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Effect of moderate salinity on patterns of potassium, sodium and chloride accumulation in cells near the root tip of barley: Role of differentiating metaxylem vessels;Physiologia Plantarum;1988-08
2. Persistent xylem cross-walls reduce the axial hydraulic conductivity in the apical 20 cm of barley seminal root axes: implications for the driving force for water movement;Plant, Cell and Environment;1988-06
3. ROOT DEVELOPMENT IN THE SEAGRASS HALOPHILA OVALIS (R. BR.) HOOK F. (HYDROCHARITACEAE), WITH PARTICULAR REFERENCE TO ROOT LACUNAE;New Phytologist;1985-05
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