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Functional dissection of calcium hom...
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Pandey, Girdhar K.
Functional dissection of calcium homeostasis and transport machinery in plants
Record Type:
Electronic resources : Monograph/item
Title/Author:
Functional dissection of calcium homeostasis and transport machinery in plantsby Girdhar K. Pandey, Sibaji K. Sanyal.
Author:
Pandey, Girdhar K.
other author:
Sanyal, Sibaji K.
Published:
Cham :Springer International Publishing :2021.
Description:
xv, 115 p. :ill., digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Botanical chemistry.
Online resource:
https://doi.org/10.1007/978-3-030-58502-0
ISBN:
9783030585020$q(electronic bk.)
Functional dissection of calcium homeostasis and transport machinery in plants
Pandey, Girdhar K.
Functional dissection of calcium homeostasis and transport machinery in plants
[electronic resource] /by Girdhar K. Pandey, Sibaji K. Sanyal. - Cham :Springer International Publishing :2021. - xv, 115 p. :ill., digital ;24 cm. - SpringerBriefs in plant science,2192-1229. - SpringerBriefs in plant science..
Preface -- 1. Introduction to cellular calcium -- 2. Cellular calcium homeostasis -- 3. Significance of calcium signatures -- 4. Cellular calcium transport machinery -- 5. Calcium conductance across plasma membrane -- 6. Identification of other influx channels based on cellular localization- 7. Endomembrane and vascular ion channel -- 8. Other non-selective calcium conductances Ca2+ -- 9. Calcium extrusion systems and efflux transporters -- 10. Cellular Ca2+ hubs -- 11. Recent advances in biotechnological tools and approaches -- 12. Conclusions and future perspectives -- References -- Abbreviations -- Index.
This book focuses on the significance and implications of Calcium (Ca2+) transport machinery in the plant cell in generating alternating Ca2+ levels and impacting the cell's physiological, biochemical and developmental processes. In the following sections, the concept of Ca2+ homeostasis, Ca2+ signature, various Ca2+ transport protein families and conductance systems would be discussed in detail- elucidation of their functional characterization, structure, mechanism, sub-cellular localization and specific physiological roles in ensuring Ca2+ homeostasis. Also, the aspect of Ca2+ as a "signaling hub" -transducing distinct plant responses to diverse environmental stimuli, Ca2+ binding proteins, and the tools used in studying these proteins are explained in brief to paint a holistic picture of Ca2+ transport in plant systems. This has resulted in an elaborative literature account to serve as a staple by providing recent insights and advance knowledge surrounding genetic and molecular dissection of Ca2+homeostasis maintenance mechanisms and extant Ca2+ transport systems in plants.
ISBN: 9783030585020$q(electronic bk.)
Standard No.: 10.1007/978-3-030-58502-0doiSubjects--Topical Terms:
193794
Botanical chemistry.
LC Class. No.: QK898.C2
Dewey Class. No.: 571.2
Functional dissection of calcium homeostasis and transport machinery in plants
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Preface -- 1. Introduction to cellular calcium -- 2. Cellular calcium homeostasis -- 3. Significance of calcium signatures -- 4. Cellular calcium transport machinery -- 5. Calcium conductance across plasma membrane -- 6. Identification of other influx channels based on cellular localization- 7. Endomembrane and vascular ion channel -- 8. Other non-selective calcium conductances Ca2+ -- 9. Calcium extrusion systems and efflux transporters -- 10. Cellular Ca2+ hubs -- 11. Recent advances in biotechnological tools and approaches -- 12. Conclusions and future perspectives -- References -- Abbreviations -- Index.
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This book focuses on the significance and implications of Calcium (Ca2+) transport machinery in the plant cell in generating alternating Ca2+ levels and impacting the cell's physiological, biochemical and developmental processes. In the following sections, the concept of Ca2+ homeostasis, Ca2+ signature, various Ca2+ transport protein families and conductance systems would be discussed in detail- elucidation of their functional characterization, structure, mechanism, sub-cellular localization and specific physiological roles in ensuring Ca2+ homeostasis. Also, the aspect of Ca2+ as a "signaling hub" -transducing distinct plant responses to diverse environmental stimuli, Ca2+ binding proteins, and the tools used in studying these proteins are explained in brief to paint a holistic picture of Ca2+ transport in plant systems. This has resulted in an elaborative literature account to serve as a staple by providing recent insights and advance knowledge surrounding genetic and molecular dissection of Ca2+homeostasis maintenance mechanisms and extant Ca2+ transport systems in plants.
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Botanical chemistry.
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Biomedical and Life Sciences (SpringerNature-11642)
based on 0 review(s)
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000000193937
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EB QK898.C2 P189 2021 2021
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https://doi.org/10.1007/978-3-030-58502-0
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