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Titlebook: Genetic Aspects of Plant Mineral Nutrition; N. Bassam,M. Dambroth,B. C. Loughman Book 1990 Kluwer Academic Publishers 1990 Phloem.Xylem.Ze

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Carbohydrate status in roots of two soybean cultivars: A possible parameter to explain different effrose (plant dry weight basis). This compares to ≈ 8 mgg. sucrose (morning) and ≈ 13mgg. sucrose (afternoon) for Woodworth. Phosphate stress increased the levels of hexoses (glucose, fructose) in both varieties significantly. The sucrose levels remained higher for the Century variety even during phos
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China’s National Innovation Systemging from 40 to 70%. The differences in element concentration were more expressed in aboveground parts than in root. On the average, concentrations of elements increased as that of nutrient solution increased.
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: A New Chinese Tourist Geography,oportion of stolon and root length response to P when supplied as different forms of P. Kopu, a large leaved cultivar, responded more rapidly in the upper part of the response curve than Barbian, Tahora or Huia when supplied with P in the form of MCP and NCPR, and reached maximum yield at a lower le
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Christoph Rindfleisch,Bernhard Wichtlower and not affected by the Fe nutritional status of the plants. This indicates that in graminaceous species under Fe deficiency a specific uptake system for FePS is activated. In contrast, the specific uptake system for FePS is absent in dicots. In a given graminaceous species the uptake rates of
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Prävalenz chronischer Erkrankungenmass was reduced at high N. Low input and intermediate cultivars had higher shoot and root dry weights than did high input cultivars but no significant differences in root surface area were found. Root surface area was greatest at low N. Number and total length of seminal roots were significantly lo
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Genotypic variation in plant productivity and consequences for breeding of ‘low-input cultivars’istribution, less losses of assimilates through respiration and adequate nutrient acquisition by the root system. The response of cultivars to inputs is under genetic control and therefore improved response is accessible via screening, selection and breeding..The current modern cultivars showed a hi
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Physiological basis of genotypic plant distinctions in mineral nutritionenetically determined differences between plant genotypes in nutrient absorption and utilization efficiency per yield unit. Attention is focussed upon root function under NPK excess or deficiency. The role of genetics of mineral nutrition as a basis for target-oriented engineering of agrochemically
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