Physiology of Stressed Crops: Nutrient Relations
This volume covers various aspects of nutrient (deficiency or toxicity) stress in general, and the effects of stress factors like soil acidity, soil salinity, allelochemicals, soil compaction, drought, water logging, atmospheric humidity, low temperature and freezing, high temperature (heat), solar radiation (low or high intensity and UV light) and air pollution have been discussed. The nutrient stress caused by parasitic weeds has also been discussed separately. Such a study will greatly help in avoiding the stress-induced problems of nutrient unavailability, fixation, excessive availability, uptake, transport, mineralization symbiotic fixation, and removal etc. and help in growing better crops in problem soils and/or problematic environments.
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SOIL ACIDITY TOLERANCE
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absorption accumulation acetylene acetylene reduction acid soils Agric Agron allelopathic aluminum ammonium barley bean cadmium calcium and magnesium cell chloride concentration copper cowpea crop cultivars decreased deficiency drought dry matter dry weight efficiency ferulic acid genotypes grain high humidity higher increased infection Influence inhibited inoculation leaf leaves legumes levels low pH low temperature magnesium maize manganese membrane metabolism micronutrient mineral nutrition mmhos/cm mycorrhizal NaCl nitrate nitrogen content nitrogen fixation nitrogen-fixation nitrogenase nitrogenase activity nodule NS NS NS nutrient nutrient uptake parasite Phaseolus vulgaris phosphorus phosphorus content photosynthesis phytochelatins Plant Nutr Plant Physiol Plant Soil plants grown potassium potassium content protein reduced relative humidity response Rhizobium rice salt stress seedlings sensitive significantly Singh sodium soil pH Soil Sci solution sorghum soybean species Striga sulfur Table tissue tomato plants toxicity translocation treatment varieties water stress waterlogging wheat yield zinc