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Titlebook: Iron Nutrition and Interactions in Plants; “Proceedings of the Y. Chen,Y. Hadar Conference proceedings 1991 Springer Science+Business Medi

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书目名称Iron Nutrition and Interactions in Plants
副标题“Proceedings of the
编辑Y. Chen,Y. Hadar
视频video
丛书名称Developments in Plant and Soil Sciences
图书封面Titlebook: Iron Nutrition and Interactions in Plants; “Proceedings of the  Y. Chen,Y. Hadar Conference proceedings 1991 Springer Science+Business Medi
描述Many agricultural crops worldwide, especially in semi-arid climates, suffer from iron deficiencies. Among plants sensitive to iron deficiency are apples, avocado, bananas, barley, beans, citrus, cotton, grapes, peanuts, pecans, potatoes, sorghum, soybeans, and numerous ornamental plants. Deficiencies are usually recognized by chlorotic, in new leaves and are typically found among sensitive crops grown in calcareous or yellowed, interveinal areas soils which cover over 30% of the earth‘s land surface. Iron deficiency may lead, in extreme cases, to complete crop failure. In intensive agriculture on calcareous soils, iron often becomes a major limiting nutrient for optimal crop production, thus, correction of iron deficiency is required. Various chemicals and practices are available. They are, however, costly and do not always result in a complete remedy of the deficiency. Crucial questions relative to the cost-benefit equation such as the recovery rate of plants and the long-term fertilizing effect have not yet been resolved. The complexity of iron nutrition problems requires an understanding of the chemistry of iron oxides in soils, of the chemistry of both natural and synthetic che
出版日期Conference proceedings 1991
关键词Ornithin; Symbiose; Transport; Tree; Vine; ion uptake; metabolism; nitrogen; roots
版次1
doihttps://doi.org/10.1007/978-94-011-3294-7
isbn_softcover978-94-010-5455-3
isbn_ebook978-94-011-3294-7
copyrightSpringer Science+Business Media Dordrecht 1991
The information of publication is updating

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Distribution of soluble iron and zinc in leachates of municipal wastesFe(OH). colloidal particles. A complete mobilization of Fe was obtained with a combined treatment of H.O. and HCl acidification..Unlike Fe, most of the soluble Zn passed through the dialysis membrane. Acidification of the solution led to a complete mobilization of the Zn indicating that Zn binding to humic colloids is of low stability.
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Variability of sunflower inbred lines to iron deficiency stresss were selected. When a buffer (5 m. MES, 2-(N- morpholino) ethanesulfonic acid) was added to the root nutrient solution without Fe during growth, the reducing capacity of ‘Fe-inefficient’ lines was higher for buffered than for unbuffered roots. Therefore, differences among lines for reducing capacity depend on experimental conditions.
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Photochemical mobilization of ferritin iron studied, caffeate was the only compound which induced detectable Fe. mobilization in the absence of irradiation. Rate constants for photorelease ranged from 2.7 × 10. sec. (pH = 4.6) to 2.1 × 10. sec. (pH = 7.1) at 26.5.C. These findings provide one possible explanation for the low level of ferritin-Fe in healthy, illuminated plant tissue.
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Recent advances in breeding for improving iron utilization by plantsess is being made in peanut (. L.), forage species such as clovers (. sp.) and bluestems (. sp.), and pepper (. L.). Screening of rootstocks is done on citrus (. sp.), mango (. L.), and avocado (. Mill.).
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Solubility and dissolution of iron oxidesy and the dissolution rate of the Fe oxides are essential for the Fe supply. Hydrolysis constants and solubility products (K.) describing the effect of pH on FeIII ion concentration in solution are available for the well-known Fe oxides occurring in soils such as goethite, hematite, ferrihydrite. K.
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Iron oxide solubilization by organic matter and its effect on iron availabilityt the major control. Fe(III) hydrolysis species constitute the major Fe species in solution. Other inorganic Fe complexes are present, but their concentrations are much less than the hydrolysis species. Organic complexes of Fe including those of organic acids like citrate, oxalate, and malate contri
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