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Titlebook: Boron in Plant and Animal Nutrition; Heiner E. Goldbach,Patrick H. Brown,Richard W. Bel Book 2002 Springer Science+Business Media New York

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發(fā)表于 2025-3-21 16:50:40 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Boron in Plant and Animal Nutrition
影響因子2023Heiner E. Goldbach,Patrick H. Brown,Richard W. Bel
視頻videohttp://file.papertrans.cn/190/189897/189897.mp4
圖書封面Titlebook: Boron in Plant and Animal Nutrition;  Heiner E. Goldbach,Patrick H. Brown,Richard W. Bel Book 2002 Springer Science+Business Media New York
影響因子The Boron ‘97 meeting was a great success in summarising all recent developments in basic and applied research on boron‘s function, especially in plants. New techniques have since been developed and new insight has been gained into the role of boron in plant and animal metabolism. Nevertheless, there were still lots of open questions. The aim of the present workshop held in Bonn as a satellite meeting to the International Plant Nutrition Colloquium was thus to gather all actual information which has been gained since the Boron ‘97 meeting and to compile knowledge, both from animal and plant sciences. Furthermore, applied aspects had to be addressed too, as there is an increasing awareness of boron deficiencies even in crops such as wheat, which have formerly not been considered as responsive to boron application. Genetic differences in boron demand and efficiency within one species are a further important topic which has gained importance since the 1997 meeting. More in-depth knowledge on the mechanisms of boron efficiency are required as an increased efficiency will be one major possibility to maintain and improve crop yields for resource-poor farmers. Nevertheless, it has also cl
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Boron-Binding-Biomolecules: a Key to Understanding the Beneficial Physiologic Effects of Dietary Borcellular boron. There is evidence that higher animals (.; .) and humans (.; .; .) require physiological amounts of boron to support normal biological functions. Despite the progress made in studies of boron essentiality for both plants and animals, the biochemical mechanisms responsible for the bene
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Uptake and Transport of Boronupplied continually throughout the life of the plant and fluctuations in soil B availability can have a profound effect on plant growth and productivity. Additionally, many species are also sensitive to high levels of B in the growing environments and growth inhibition as a result of excess B uptake
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Characterization of Boron Uptake in Higher Plantstabilises the cell wall .. There is growing evidence however for a role of B in maintaining the integrity of membranes (.), and . have used evidence of cytoplasmic homeostasis to suggest that B may function as in the cytoplasm. In organisms without cell walls such as zebrafish, it has recently been
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