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Auxins, cytokinins and gibberellins ...
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Aftab, Tariq.
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Auxins, cytokinins and gibberellins signaling in plants
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Auxins, cytokinins and gibberellins signaling in plants/ edited by Tariq Aftab.
其他作者:
Aftab, Tariq.
出版者:
Cham :Springer International Publishing : : 2022.,
面頁冊數:
ix, 377 p. :ill., digital ;24 cm.
內容註:
How the three organ-produced signals: auxin, cytokinin and gibberellin, induce and regulate wood formation and adaptation -- Role of plant growth regulators in the plant-environment interaction and epigenetic regulation of auxin -- The role of auxin and cytokinin signaling components in de novo shoot organogenesis -- Mechanism of crosstalk between cytokinin and gibberellin -- In vitro responses of some Mediterranean fruit crops to auxin, cytokinin and gibberellin treatments -- Integrative approach of the root architecture by interaction between auxin and nutrients -- Insights into Biosynthesis and Signaling of Cytokinins during Plant Growth, Development and Stress Tolerance -- Cytokinin signaling in plants under salt stress -- Auxin and Cytokinin Signaling in Plant Stress Response -- Gibberellins' cross talk and signal transduction in plant stress response -- Crosstalk between Salicylic acid and Auxins, Cytokinins and Gibberellins under biotic stress -- Understanding the crosstalk between chromatin remodeling mechanism and phytohormones signaling for maintenance of plant developmental plasticity: an insight -- Phytohormone-mediated regulation of sprouting in tuber and storage root crops -- Role of phytohormones in plant-microbial interaction -- Iron toxicity tolerance in rice: roles of auxins and gibberellins -- New auxin and cytokinin related compounds based on synthetic low molecular weight heterocycles.
Contained By:
Springer Nature eBook
標題:
Auxin. -
電子資源:
https://doi.org/10.1007/978-3-031-05427-3
ISBN:
9783031054273
Auxins, cytokinins and gibberellins signaling in plants
Auxins, cytokinins and gibberellins signaling in plants
[electronic resource] /edited by Tariq Aftab. - Cham :Springer International Publishing :2022. - ix, 377 p. :ill., digital ;24 cm. - Signaling and communication in plants,1867-9056. - Signaling and communication in plants..
How the three organ-produced signals: auxin, cytokinin and gibberellin, induce and regulate wood formation and adaptation -- Role of plant growth regulators in the plant-environment interaction and epigenetic regulation of auxin -- The role of auxin and cytokinin signaling components in de novo shoot organogenesis -- Mechanism of crosstalk between cytokinin and gibberellin -- In vitro responses of some Mediterranean fruit crops to auxin, cytokinin and gibberellin treatments -- Integrative approach of the root architecture by interaction between auxin and nutrients -- Insights into Biosynthesis and Signaling of Cytokinins during Plant Growth, Development and Stress Tolerance -- Cytokinin signaling in plants under salt stress -- Auxin and Cytokinin Signaling in Plant Stress Response -- Gibberellins' cross talk and signal transduction in plant stress response -- Crosstalk between Salicylic acid and Auxins, Cytokinins and Gibberellins under biotic stress -- Understanding the crosstalk between chromatin remodeling mechanism and phytohormones signaling for maintenance of plant developmental plasticity: an insight -- Phytohormone-mediated regulation of sprouting in tuber and storage root crops -- Role of phytohormones in plant-microbial interaction -- Iron toxicity tolerance in rice: roles of auxins and gibberellins -- New auxin and cytokinin related compounds based on synthetic low molecular weight heterocycles.
Plant hormones have pivotal roles in the regulation of plant growth, development, and reproduction. Their signaling pathways are interconnected in a complex network, which provides plants with an enormous regulatory potential to rapidly adapt to their environment and to utilize their limited resources for growth and survival in a cost-efficient manner. Auxin is a hormone molecule whose activity levels are most important for its regulatory roles during plant cell, organ, and tissue development. Therefore, the precise regulation of auxin levels is an essential mechanism to fine-tune the activity of this powerful hormone during plant growth and development. Likewise, cytokinins exhibit a wide range of physiological functions, including regulation of shoot and root apical meristems, stimulation of branching, vascular development, chloroplast differentiation, stabilization of the structure and function of the photosynthetic machinery, delay of senescence, stomata opening, and elevation of the sink strength and nutritional signaling. Moreover, gibberellins also regulate many aspects of plant growth and development including seed germination, stem elongation, leaf expansion, and flower and fruit development. The broad implication of gibberellins in plant development is strictly associated with tight regulation of their metabolism by multiple environmental and endogenous factors, ranging from light and temperature to other hormones including feedback control. Understanding the significant roles of these phytohormones in plant biology, the current subject has attracted the attention of scientists from across the globe. This comprehensive volume "Auxins, Cytokinins and Gibberellins Signaling in Plants" highlights the various prospects involved in the current scenario. The book comprises the chapters from diverse areas dealing with biotechnology, molecular biology, proteomics, genomics, metabolomics, etc.
ISBN: 9783031054273
Standard No.: 10.1007/978-3-031-05427-3doiSubjects--Topical Terms:
2071502
Auxin.
LC Class. No.: QK725 / .A88 2022
Dewey Class. No.: 571.742
Auxins, cytokinins and gibberellins signaling in plants
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How the three organ-produced signals: auxin, cytokinin and gibberellin, induce and regulate wood formation and adaptation -- Role of plant growth regulators in the plant-environment interaction and epigenetic regulation of auxin -- The role of auxin and cytokinin signaling components in de novo shoot organogenesis -- Mechanism of crosstalk between cytokinin and gibberellin -- In vitro responses of some Mediterranean fruit crops to auxin, cytokinin and gibberellin treatments -- Integrative approach of the root architecture by interaction between auxin and nutrients -- Insights into Biosynthesis and Signaling of Cytokinins during Plant Growth, Development and Stress Tolerance -- Cytokinin signaling in plants under salt stress -- Auxin and Cytokinin Signaling in Plant Stress Response -- Gibberellins' cross talk and signal transduction in plant stress response -- Crosstalk between Salicylic acid and Auxins, Cytokinins and Gibberellins under biotic stress -- Understanding the crosstalk between chromatin remodeling mechanism and phytohormones signaling for maintenance of plant developmental plasticity: an insight -- Phytohormone-mediated regulation of sprouting in tuber and storage root crops -- Role of phytohormones in plant-microbial interaction -- Iron toxicity tolerance in rice: roles of auxins and gibberellins -- New auxin and cytokinin related compounds based on synthetic low molecular weight heterocycles.
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Plant hormones have pivotal roles in the regulation of plant growth, development, and reproduction. Their signaling pathways are interconnected in a complex network, which provides plants with an enormous regulatory potential to rapidly adapt to their environment and to utilize their limited resources for growth and survival in a cost-efficient manner. Auxin is a hormone molecule whose activity levels are most important for its regulatory roles during plant cell, organ, and tissue development. Therefore, the precise regulation of auxin levels is an essential mechanism to fine-tune the activity of this powerful hormone during plant growth and development. Likewise, cytokinins exhibit a wide range of physiological functions, including regulation of shoot and root apical meristems, stimulation of branching, vascular development, chloroplast differentiation, stabilization of the structure and function of the photosynthetic machinery, delay of senescence, stomata opening, and elevation of the sink strength and nutritional signaling. Moreover, gibberellins also regulate many aspects of plant growth and development including seed germination, stem elongation, leaf expansion, and flower and fruit development. The broad implication of gibberellins in plant development is strictly associated with tight regulation of their metabolism by multiple environmental and endogenous factors, ranging from light and temperature to other hormones including feedback control. Understanding the significant roles of these phytohormones in plant biology, the current subject has attracted the attention of scientists from across the globe. This comprehensive volume "Auxins, Cytokinins and Gibberellins Signaling in Plants" highlights the various prospects involved in the current scenario. The book comprises the chapters from diverse areas dealing with biotechnology, molecular biology, proteomics, genomics, metabolomics, etc.
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