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Regulation of nutrient uptake by pla...
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Mitra, Gyanendra Nath.
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Regulation of nutrient uptake by plants = a biochemical and molecular approach /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Regulation of nutrient uptake by plants/ by Gyanendra Nath Mitra.
其他題名:
a biochemical and molecular approach /
作者:
Mitra, Gyanendra Nath.
出版者:
New Delhi :Springer India : : 2015.,
面頁冊數:
xxiii, 195 p. :ill., digital ;24 cm.
內容註:
1. Introduction and Uptake of Water and Nutrient Ions -- 2. Nitrogen (N) uptake -- 3. Phosphate (Pi) Uptake -- 4. Potassium (K) uptake -- 5. Calcium (Ca) uptake -- 6. Magnesium (Mg) Uptake -- 7. Sulphur (S) Uptake -- 8. Definition of Heavy metals, Essential and Beneficial Plant Nutrients -- 9. Uptake of Heavy Metals -- 10. Iron (Fe) uptake -- 11. Zinc (Zn) uptake -- 12. Manganese (Mn) uptake -- 13. Copper (Cu) uptake -- 14. Boron (B) Uptake -- 15. Molybdenum (Mo) uptake -- 16. Nickel (Ni) uptake -- 17. Chloride (Cl-) uptake -- 18. Sodium (Na) uptake -- 19. Silicon (Si) Uptake -- 20. Cobalt (Co), selenium (Se), Vanadium (V), Cadmium (Cd), Lead (Pb) and Titanium (Ti)
Contained By:
Springer eBooks
標題:
Plants - Nutrition -
電子資源:
http://dx.doi.org/10.1007/978-81-322-2334-4
ISBN:
9788132223344 (electronic bk.)
Regulation of nutrient uptake by plants = a biochemical and molecular approach /
Mitra, Gyanendra Nath.
Regulation of nutrient uptake by plants
a biochemical and molecular approach /[electronic resource] :by Gyanendra Nath Mitra. - New Delhi :Springer India :2015. - xxiii, 195 p. :ill., digital ;24 cm.
1. Introduction and Uptake of Water and Nutrient Ions -- 2. Nitrogen (N) uptake -- 3. Phosphate (Pi) Uptake -- 4. Potassium (K) uptake -- 5. Calcium (Ca) uptake -- 6. Magnesium (Mg) Uptake -- 7. Sulphur (S) Uptake -- 8. Definition of Heavy metals, Essential and Beneficial Plant Nutrients -- 9. Uptake of Heavy Metals -- 10. Iron (Fe) uptake -- 11. Zinc (Zn) uptake -- 12. Manganese (Mn) uptake -- 13. Copper (Cu) uptake -- 14. Boron (B) Uptake -- 15. Molybdenum (Mo) uptake -- 16. Nickel (Ni) uptake -- 17. Chloride (Cl-) uptake -- 18. Sodium (Na) uptake -- 19. Silicon (Si) Uptake -- 20. Cobalt (Co), selenium (Se), Vanadium (V), Cadmium (Cd), Lead (Pb) and Titanium (Ti)
This book describes the mechanisms of nutrient taken up by plants at the biochemical and molecular level. This is a new concept developed over the past 30 years, primarily due to use of modern technology developed in biotechnological research, instrumentation, modern computation facilities, bioinformatics, the large volumes of information generated by use of various 'omics' and of course the dedicated hard work of a large number of researchers. Recent research indicates that nutrient uptake, its transport and redistribution in plants are under genetic control. There are groups of genes for each nutrient that encode transporter proteins whose functions are to acquire the specific nutrient from the soil and transport it across the plasma membrane of the root hair cells for use in plant metabolism. Deficiency or sufficiency of a plant nutrient induces different groups of genes to produce m-RNA transcripts for translation of transporter proteins. A large number of metabolic enzymes are up or down regulated in response to deficiency of plant nutrients. Morphological and metabolic adaptations in order to better acquire nutrients and use them frugally when nutrients are scarce in the growth medium can be observed in plants. Heavy metals, which are toxic to plants, induce different sets of defence mechanisms. In 20 chapters, the book describes plants' uptake mechanisms for all the major, secondary and micronutrients, beneficial elements and heavy metals. References to research work quoted in the text are updated up to 2014 and included at the end of each chapter. Biotechnological approaches to improving nutrient use efficiency are discussed wherever such information is available. The structure and functions of transporter proteins involved in the uptake of nutrients are discussed. Additional information on some of the specific topics is provided in text boxes or as separate sections within the chapters. Lastly, the terminology used has been explained as far as possible in the text, mostly within parentheses.
ISBN: 9788132223344 (electronic bk.)
Standard No.: 10.1007/978-81-322-2334-4doiSubjects--Topical Terms:
2145174
Plants
--Nutrition
LC Class. No.: QK867
Dewey Class. No.: 575.76
Regulation of nutrient uptake by plants = a biochemical and molecular approach /
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This book describes the mechanisms of nutrient taken up by plants at the biochemical and molecular level. This is a new concept developed over the past 30 years, primarily due to use of modern technology developed in biotechnological research, instrumentation, modern computation facilities, bioinformatics, the large volumes of information generated by use of various 'omics' and of course the dedicated hard work of a large number of researchers. Recent research indicates that nutrient uptake, its transport and redistribution in plants are under genetic control. There are groups of genes for each nutrient that encode transporter proteins whose functions are to acquire the specific nutrient from the soil and transport it across the plasma membrane of the root hair cells for use in plant metabolism. Deficiency or sufficiency of a plant nutrient induces different groups of genes to produce m-RNA transcripts for translation of transporter proteins. A large number of metabolic enzymes are up or down regulated in response to deficiency of plant nutrients. Morphological and metabolic adaptations in order to better acquire nutrients and use them frugally when nutrients are scarce in the growth medium can be observed in plants. Heavy metals, which are toxic to plants, induce different sets of defence mechanisms. In 20 chapters, the book describes plants' uptake mechanisms for all the major, secondary and micronutrients, beneficial elements and heavy metals. References to research work quoted in the text are updated up to 2014 and included at the end of each chapter. Biotechnological approaches to improving nutrient use efficiency are discussed wherever such information is available. The structure and functions of transporter proteins involved in the uptake of nutrients are discussed. Additional information on some of the specific topics is provided in text boxes or as separate sections within the chapters. Lastly, the terminology used has been explained as far as possible in the text, mostly within parentheses.
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