By V C Baligar; Ronny R Duncan
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Additional resources for Crops as enhancers of nutrient use
R. 1981. Genetic specificity in relation to plant mineral nutrition. J. Plant Nutr. 3:743-766. Saric, M. R. 1983. Theoretical and practical approaches to the genetic specificity of mineral nutrition of plants. Plant Soil 72:137-150. Schettini, T. , W. H. Gabelman, and G. C. Gerloff. 1987. ). Plant Soil 99:175-184. Scowcroft, W. , and P. J. Larkin. 1988. Somaclonal variation. Applications of Plant Cell and Tissue Culture, Ciba Found. Symp. No. 137, pp. 21-35. , K. R. Krishna, T. J. Rego, and J. R.
1981. Selecting for nutrient use efficiency within forage grass species. I. Development of a screening system. J. Plant Nutr. 4:231-236. Clark, R. B. 1982. Plant genotype differences to uptake, translocation, accumulation, and use of mineral elements. In M. R. ), Genetic Specificity of Mineral Nutrition in Plants. Vol. 13. Serb. Acad. Sei. Arts, Belgrade. Pp. 41-55. Clark, R. B. 1984. Physiological aspects of calcium, magnesium, and molybdenum deficiencies in plants. In F. ), Soil Acidity and Liming.
1989) 1. Nutrient Uptake and Use Efficiency 19 interaction, early generation selection may be difficult and could result in loss of segregates with genes for tolerance or efficiency. y 1987) or soil cultures in the greenhouse or growth chamber, by quick screening tests, or by properly stressed field evaluations. Additional practices available to reduce environmental effects during early genera tions in field situations include family bulking (Duncan, 1988) to assure a maximum number of recombinants, single-seed descent, and use of numerous field sites and stress levels.