100 results on '"Flowers, T. J."'
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2. Causes of sterility in rice under salinity stress
3. Rice cultivation in saline soils
4. Effect of ABA seed pre-treatment on the response of wheat (Tritium aesitivum L.) to salinity, with special reference to plant growth, ion relations and protein patterns
5. Introduction: World Population and Agricultural Productivity
6. Summary: Breeding Plants for Problem Soils — Current Knowledge and Prospects
7. Protein synthesis in halophytes: The influence of potassium, sodium and magnesium in vitro
8. Membranes and the Study of Transport
9. Solute Transport in Plants
10. Intra- and Intercellular Transport
11. Ion Transport Across the Plasma Membrane and Tonoplast
12. Transport in the Phloem
13. Ion Uptake by Plant Roots
14. Plants and Their Solutes
15. Transport from Root to Shoot
16. Abstracts of poster papers
17. Preface
18. Physiology of halophytes
19. Comparison of niche breadths and overlaps of halophytes on salt marshes of differing diversity
20. Repeated evolution of salt-tolerance in grasses
21. Effect of irrigation methods, management and salinity of irrigation water on tomato yield, soil moisture and salinity distribution
22. Silicon deposition in the root reduces sodium uptake in rice (Oryza sativa L.) seedlings by reducing bypass flow
23. Improving crop salt tolerance
24. Solution culture for screening rice varieties for sodicity tolerance
25. Causes of Sterility in Seed Set of Rice under Salinity Stress
26. Silicon reduces sodium uptake in rice (Oryza sativaL.) in saline conditions and this is accounted for by a reduction in the transpirational bypass flow
27. Control of leaf cell elongation in barley. Generation rates of osmotic pressure and turgor, and growth-associated water potential gradients
28. Gas Exchange, Water Loss and Biomass Production in Rice and WildOryzaSpecies in Well-Watered and Water-Limiting Growth Conditions
29. Interaction of Phosphate and Salinity on the Growth and Yield of Rice (Oryza sativa L.)
30. The involvement of the transpirational bypass flow in sodium uptake by high- and low-sodium-transporting lines of rice developed through intravarietal selection
31. The effects of selection for sodium transport and of selection for agronomic characteristics upon salt resistance in rice (Oryza sativa L.)
32. Genotypic variation in the effect of salinity on fertility in rice
33. Effects of salinity on seed set in rice
34. Effects of elevated CO2 on cellular mechanisms, growth and development of trees with particular reference to hybrid poplar
35. Use of freeze‐substitution and molecular distillation drying in the preparation of Dunaliella parva for ion localization studies by X‐ray microanalysis
36. Protein synthesis in halophytes: The influence of potassium, sodium and magnesium in vitro
37. Selection of donors for salt-tolerance in tomato using physiological traits
38. Sodium Chloride Compartmentation in Leaf Vacuoles of the Halophyte Suaedamaritima(L.) Dum. and its Relation to Tonoplast Permeability
39. Ion accumulation in the cell walls of rice plants growing under saline conditions: evidence for the Oertli hypothesis
40. Short- and Long-Term Effects of Salinity on Leaf Growth in Rice (Oryza sativaL.)
41. Screening of rice (Oryza sativa L.) genotypes for physiological characters contributing to salinity resistance, and their relationship to overall performance
42. Salt tolerance in the halophytic wild rice, Porteresia coarctata Tateoka
43. Molecular Markers for Ion Compartmentation in Cells of Higher Plants
44. Molecular Markers for Ion Compartmentation in Cells of Higher Plants
45. Halophytes
46. Quantitative ion localization within Suaeda maritima leaf mesophyll cells
47. The use of freeze-substitution in the preparation of plant tissue for ion localization studies
48. Accumulation and localisation of sodium ions within the shoots of rice (Oryza sativa) varieties differing in salinity resistance
49. Properties of Membranes from the HalophyteSuaeda maritima
50. Salt tolerance inSuaeda maritima(L.) Dum
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