Mapk Signaling Cascade Affecting Plant Response Under Stress

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MAPK Signaling Cascade Affecting Plant Response Under Stress

Author : Mohammad Miransari
Publisher : Independently Published
Page : 106 pages
File Size : 46,6 Mb
Release : 2019-07-26
Category : Electronic
ISBN : 1082827754

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MAPK Signaling Cascade Affecting Plant Response Under Stress by Mohammad Miransari Pdf

The role of signaling pathways such as plant hormonal signaling, mitogen-activated protein kinases (MAPK) signaling, and oxidative stress signaling in plant under stress is of great significance. MAPK molecules are a set of proteins, handling different functions in plant including cell cycling, plant growth and development, plant response to stress, etc. To make plants survive more efficiently under salinity stress, the signaling pathways including the MAPK cascade must be recognized in greater details. Accordingly in this book some of the most recent and important details related to the role of MAPK signaling under stress have been presented.

Signal Crosstalk in Plant Stress Responses

Author : Keiko Yoshioka,Kazuo Shinozaki
Publisher : John Wiley & Sons
Page : 225 pages
File Size : 52,5 Mb
Release : 2009-08-11
Category : Science
ISBN : 9780813805870

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Signal Crosstalk in Plant Stress Responses by Keiko Yoshioka,Kazuo Shinozaki Pdf

Signal Crosstalk in Plant Stress Responses focuses on current findings on signal crosstalk between abiotic and biotic stresses, including information on drought, cold, and salt stress and pathogen infection. Divided into seven chapters on critical topics in the field, the book is written by an international team of expert authors. The book is aimed at plant scientists, agronomists, and horticulturalists, as well as students.

Protein Kinases and Stress Signaling in Plants

Author : Girdhar K. Pandey
Publisher : John Wiley & Sons
Page : 560 pages
File Size : 45,8 Mb
Release : 2020-12-03
Category : Science
ISBN : 9781119541561

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Protein Kinases and Stress Signaling in Plants by Girdhar K. Pandey Pdf

A comprehensive review of stress signaling in plants using genomics and functional genomic approaches Improving agricultural production and meeting the needs of a rapidly growing global population requires crop systems capable of overcoming environmental stresses. Understanding the role of different signaling components in plant stress regulation is vital to developing crops which can withstand abiotic and biotic stresses without loss of crop yield and productivity. Emphasizing genomics and functional genomic approaches, Protein Kinases and Stress Signaling in Plants is a comprehensive review of cutting-edge research on stress perception, signal transduction, and stress response generation. Detailed chapters cover a broad range of topics central to improving agricultural production developing crop systems capable of overcoming environmental stresses to meet the needs of a rapidly growing global population. This book describes the field of protein kinases and stress signaling with a special emphasis on functional genomics. It presents a highly valuable contribution in the field of stress perception, signal transduction and generation of responses against one or multiple stress signals. This timely resource: Summarizes the role of various kinases involved in stress management Enumerates the role of TOR, GSK3-like kinase, SnRK kinases in different physiological conditions Examines mitogen-activated protein kinases (MAPKs) in different stresses Describes the different aspects of calcium signaling under different stress conditions Examines photo-activated kinases (PAPKs) in varying light conditions Briefs the presence of tyrosine kinases in plants Highlights the cellular functions of receptor ]like protein kinases (RLKs) Possible implication of these kinases in developing stress tolerant crops Protein Kinases and Stress Signaling in Plants: Functional Genomic Perspective is an essential resource for researchers and students in the fields of plant molecular biology and signal transduction, plant responses to stress, plant cell signaling, plant protein kinases, plant biotechnology, transgenic plants and stress biology.

Mechanism of Plant Hormone Signaling under Stress, 2 Volume Set

Author : Girdhar K. Pandey
Publisher : John Wiley & Sons
Page : 1114 pages
File Size : 47,9 Mb
Release : 2017-04-24
Category : Science
ISBN : 9781118888926

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Mechanism of Plant Hormone Signaling under Stress, 2 Volume Set by Girdhar K. Pandey Pdf

Plant hormone signaling plays an important role in many physiological and developmental processes including stress response. With the advent of new post-genomic molecular techniques, the potential for increasing our understanding of the impact of hormone signaling on gene expression and adaptive processes has never been higher. Unlocking the molecular underpinnings of these processes shows great promise for the development of new plant biotechnologies and improved crop varieties. The topics included in this book emphasize on genomics and functional genomics aspects, to understand the global and whole genome level changes upon particular stress conditions. With the functional genomics tools, the mechanism of phytohormone signaling and their target genes can be defined in a more systematic manner. The integrated analysis of phytohormone signaling under single or multiple stress conditions may prove exceptional to design stress tolerant crop plants in the field conditions. Bringing together the latest advances, as well as the work being done to apply these findings to plant and crop science, Mechanism of Plant Hormone Signaling Under Stress will prove extremely useful to plant and stress biologists, plant biotechnology researchers, as well as students and teachers.

Stress Signaling in Plants: Genomics and Proteomics Perspective, Volume 1

Author : Maryam Sarwat,Altaf Ahmad,MZ Abdin
Publisher : Springer Science & Business Media
Page : 241 pages
File Size : 41,9 Mb
Release : 2013-06-21
Category : Science
ISBN : 9781461463726

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Stress Signaling in Plants: Genomics and Proteomics Perspective, Volume 1 by Maryam Sarwat,Altaf Ahmad,MZ Abdin Pdf

Plant diseases, extreme weather caused by climate change, drought and an increase in metals in soil are amongst the major limiting factors of crop production worldwide. They devastate not only food supply but also the economy of a nation. Keeping in view of the global food scarcity, there is, an urgent need to develop crop plants with increased stress tolerance so as to meet the global food demands and to preserve the quality of our planet. In order to do this, it is necessary to understand how plants react and adapt to stress from the genomic and proteomic perspective. Plants adapt to stress conditions by activation of cascades of molecular mechanisms, which result in alterations in gene expression and synthesis of protective proteins/compounds. From the perception of the stimulus to transduction of the signal, followed by an appropriate response, the plants employ a complex network of primary and secondary messenger molecules. Cell signaling is the component of a complex system of communication that directs basic cellular activities and synchronizes cell actions. Cells exercise a large number of noticeably distinct signaling pathways to regulate their activity. In order to contend with different environmental adversities plants have developed a series of mechanisms at the physiological, cellular and molecular level. This two volume set takes an in-depth look at the Stress Signaling in Plants from a uniquely genomic and proteomics perspective. Stress Signaling in Plants offers a comprehensive treatise on the Chapter, covering all of the signaling pathways and mechanisms that have been researched so far. Each chapter provides in-depth explanation of what we currently know of a particular aspect of stress signaling and where we are headed. All authors have currently agreed and abstracts have been complied for the first volume, due out midway through 2012. We aim to have the second volume out at the beginning of 2013.​

Plant Signaling Molecules

Author : M. Iqbal R. Khan,Palakolanu Sudhakar Reddy,Antonio Ferrante,Nafees A. Khan
Publisher : Woodhead Publishing
Page : 596 pages
File Size : 46,6 Mb
Release : 2019-03-15
Category : Science
ISBN : 9780128164525

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Plant Signaling Molecules by M. Iqbal R. Khan,Palakolanu Sudhakar Reddy,Antonio Ferrante,Nafees A. Khan Pdf

Plant Signaling Molecule: Role and Regulation under Stressful Environments explores tolerance mechanisms mediated by signaling molecules in plants for achieving sustainability under changing environmental conditions. Including a wide range of potential molecules, from primary to secondary metabolites, the book presents the status and future prospects of the role and regulation of signaling molecules at physiological, biochemical, molecular and structural level under abiotic stress tolerance. This book is designed to enhance the mechanistic understanding of signaling molecules and will be an important resource for plant biologists in developing stress tolerant crops to achieve sustainability under changing environmental conditions. Focuses on plant biology under stress conditions Provides a compendium of knowledge related to plant adaptation, physiology, biochemistry and molecular responses Identifies treatments that enhance plant tolerance to abiotic stresses Illustrates specific physiological pathways that are considered key points for plant adaptation or tolerance to abiotic stresses

Hormone Signaling

Author : Vincent Goffin,Paul A. Kelly
Publisher : Springer Science & Business Media
Page : 314 pages
File Size : 40,5 Mb
Release : 2013-03-09
Category : Medical
ISBN : 9781475736007

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Hormone Signaling by Vincent Goffin,Paul A. Kelly Pdf

Multicellular organisms require a means of intracellular communication to organize and develop the complex body plan that occurs during embryogenesis and then for cell and organ systems to access and respond to an ever changing environmental milieu. Mediators of this constant exchange of information are growth factors, neurotransmmitters, peptide and protein hormones which bind to cell surface receptors and transduce their signals from the extracellular space to the intracellular compartment. Via multiple signaling pathways, receptors of this general class affect growth, development and differentiation. Smaller hydrophobic signaling molecules, such as steroids and non-steroid hormones, vitamins and metabolic mediators interact with a large family of nuclear receptors. These receptors function as transcription factors affecting gene expression, to regulate the multiple aspects of animal and human physiology, including development, reproduction and homeostasis. The aim of this book is to cover various aspects of intracellular signaling involving hormone receptors.

Abiotic Stress Response in Plants

Author : Narendra Tuteja,Sarvajeet S. Gill
Publisher : John Wiley & Sons
Page : 456 pages
File Size : 51,8 Mb
Release : 2016-01-08
Category : Science
ISBN : 9783527694587

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Abiotic Stress Response in Plants by Narendra Tuteja,Sarvajeet S. Gill Pdf

Understanding abiotic stress responses in plants is critical for the development of new varieties of crops, which are better adapted to harsh climate conditions. The new book by the well-known editor team Narendra Tuteja and Sarvajeet Gill provides a comprehensive overview on the molecular basis of plant responses to external stress like drought or heavy metals, to aid in the engineering of stress resistant crops. After a general introduction into the topic, the following sections deal with specific signaling pathways mediating plant stress response. The last part covers translational plant physiology, describing several examples of the development of more stress-resistant crop varieties.

Salt Stress in Plants

Author : Parvaiz Ahmad,M.M. Azooz,M.N.V. Prasad
Publisher : Springer Science & Business Media
Page : 518 pages
File Size : 43,7 Mb
Release : 2013-02-26
Category : Science
ISBN : 9781461461081

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Salt Stress in Plants by Parvaiz Ahmad,M.M. Azooz,M.N.V. Prasad Pdf

Environmental conditions and changes, irrespective of source, cause a variety of stresses, one of the most prevalent of which is salt stress. Excess amount of salt in the soil adversely affects plant growth and development, and impairs production. Nearly 20% of the world’s cultivated area and nearly half of the world’s irrigated lands are affected by salinity. Processes such as seed germination, seedling growth and vigour, vegetative growth, flowering and fruit set are adversely affected by high salt concentration, ultimately causing diminished economic yield and also quality of produce. Most plants cannot tolerate salt-stress. High salt concentrations decrease the osmotic potential of soil solution, creating a water stress in plants and severe ion toxicity. The interactions of salts with mineral nutrition may result in nutrient imbalances and deficiencies. The consequence of all these can ultimately lead to plant death as a result of growth arrest and molecular damage. To achieve salt-tolerance, the foremost task is either to prevent or alleviate the damage, or to re-establish homeostatic conditions in the new stressful environment. Barring a few exceptions, the conventional breeding techniques have been unsuccessful in transferring the salt-tolerance trait to the target species. A host of genes encoding different structural and regulatory proteins have been used over the past 5–6 years for the development of a range of abiotic stress-tolerant plants. It has been shown that using regulatory genes is a more effective approach for developing stress-tolerant plants. Thus, understanding the molecular basis will be helpful in developing selection strategies for improving salinity tolerance. This book will shed light on the effect of salt stress on plants development, proteomics, genomics, genetic engineering, and plant adaptations, among other topics. The book will cover around 25 chapters with contributors from all over the world. ​​

Mycorrhizal Mediation of Soil

Author : Nancy Collins Johnson,Catherine Gehring,Jan Jansa
Publisher : Elsevier
Page : 526 pages
File Size : 53,6 Mb
Release : 2016-11-03
Category : Science
ISBN : 9780128043837

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Mycorrhizal Mediation of Soil by Nancy Collins Johnson,Catherine Gehring,Jan Jansa Pdf

Mycorrhizal Mediation of Soil: Fertility, Structure, and Carbon Storage offers a better understanding of mycorrhizal mediation that will help inform earth system models and subsequently improve the accuracy of global carbon model predictions. Mycorrhizas transport tremendous quantities of plant-derived carbon below ground and are increasingly recognized for their importance in the creation, structure, and function of soils. Different global carbon models vary widely in their predictions of the dynamics of the terrestrial carbon pool, ranging from a large sink to a large source. This edited book presents a unique synthesis of the influence of environmental change on mycorrhizas across a wide range of ecosystems, as well as a clear examination of new discoveries and challenges for the future, to inform land management practices that preserve or increase below ground carbon storage. Synthesizes the abundance of research on the influence of environmental change on mycorrhizas across a wide range of ecosystems from a variety of leading international researchers Focuses on the specific role of mycorrhizal fungi in soil processes, with an emphasis on soil development and carbon storage, including coverage of cutting-edge methods and perspectives Includes a chapter in each section on future avenues for further study

SALICYLIC ACID

Author : Shamsul Hayat,Aqil Ahmad,Mohammed Nasser Alyemeni
Publisher : Springer Science & Business Media
Page : 396 pages
File Size : 55,6 Mb
Release : 2013-04-16
Category : Science
ISBN : 9789400764286

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SALICYLIC ACID by Shamsul Hayat,Aqil Ahmad,Mohammed Nasser Alyemeni Pdf

The book “Salicylic acid: A Plant Hormone” was first published in 1997 and was praised for its excellent balance of traditional and modern topics. This time, we're building on the success of the prior edition to provide an even more effective second edition. The present book is comprised of 16 chapters highlighting the updated mechanisms of its biosynthesis, physiological role, its action in response to water deficit, relationship of SA with signal transduction, transport of SA and related compounds. Further, the interplay between environmental signals and SA, its impact on transport and distribution of sugars, salicylic acid mediated stress-induced flowering and some aspects of interplay of SA with JA during the establishment of plant resistance to pathogens with different types of nutrition and participation of peroxidases have also been discussed at length. Potential use of SA in food production and its efficiency on post-harvest of perishable crops as well as practical use of SA are also covered. ​ ​

Lipids in Plant and Algae Development

Author : Yuki Nakamura,Yonghua Li-Beisson
Publisher : Springer
Page : 533 pages
File Size : 41,6 Mb
Release : 2016-03-29
Category : Science
ISBN : 9783319259796

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Lipids in Plant and Algae Development by Yuki Nakamura,Yonghua Li-Beisson Pdf

This book summarizes recent advances in understanding the functions of plant and algal lipids in photosynthesis, in development and signaling, and in industrial applications. As readers will discover, biochemistry, enzymology and analytical chemistry, as well as gene knock-out studies have all contributed to our rapidly increasing understanding of the functions of lipids. In the past few decades, distinct physical and biochemical properties of specific lipid classes were revealed in plant and algal lipids and the functional aspects of lipids in modulating critical biological processes have been uncovered. These chapters from international authors across relevant research fields highlight the underlying evolutionary context of lipid function in photosynthetic unicellular and multicellular organisms. The book goes on to encompass what lipids can do for industrial applications at a time of fascination with plants and algae in carbon fixation and as sources for production of food, energy and novel chemicals. The developmental context is a part of the fresh and engaging perspective that is presented in this work which graduate students and scientists will find both illuminating and useful.

Plant Metal Interaction

Author : Parvaiz Ahmad
Publisher : Elsevier
Page : 652 pages
File Size : 51,5 Mb
Release : 2016-02-02
Category : Technology & Engineering
ISBN : 9780128031834

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Plant Metal Interaction by Parvaiz Ahmad Pdf

Plant Metal Interaction: Emerging Remediation Techniques covers different heavy metals and their effect on soils and plants, along with the remediation techniques currently available. As cultivable land is declining day-by-day as a result of increased metals in our soil and water, there is an urgent need to remediate these effects. This multi-contributed book is divided into four sections covering the whole of plant metal interactions, including heavy metals, approaches to alleviate heavy metal stress, microbial approaches to remove heavy metals, and phytoremediation. Provides an overview of the effect of different heavy metals on growth, biochemical reactions, and physiology of various plants Serves as a reference guide for available techniques, challenges, and possible solutions in heavy metal remediation Covers sustainable technologies in uptake and removal of heavy metals

Stress: Genetics, Epigenetics and Genomics

Author : George Fink
Publisher : Academic Press
Page : 346 pages
File Size : 41,9 Mb
Release : 2020-10-24
Category : Science
ISBN : 9780128131572

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Stress: Genetics, Epigenetics and Genomics by George Fink Pdf

This fourth volume in the Handbook of Stress series, Stress: Genetics, Epigenetics and Genomics, deals with the influence that genetics, epigenetics, and genomics have on the effects of and responses to stress. Chapters refer to epigenetic mechanisms that involve DNA methylation, histone modification, and/or noncoding RNA-associated gene activation or silencing. There is also coverage of epigenetic mechanisms in stress-related transgenerational transmission of characteristics, and how these may help explain heritability in some complex human diseases.The Handbook of Stress series, comprised of self-contained volumes that each focus on a specific stress area, covers the significant advances made since the publication of Elsevier’s Encyclopedia of Stress (2000 and 2007). Volume 4 is ideal for graduate students, post-doctoral fellows, faculty and clinicians interested in stress genetics, epigenetics and genomics involved in neuroendocrinology, neuroscience, biomedicine, endocrinology, psychology, psychiatry and the social sciences Articles carefully selected by eminent stress researchers and prepared by contributors representing outstanding scholarship in the field, with each chapter fully vetted for reliable expert knowledge Richly illustrated with explanatory figures and tables Each chapter includes a boxed “Key points call out section Affordably priced, self-contained volume for readers specifically interested in stress genetics and epigenetics, removing the need to purchase the whole Handbook series

Ethylene’s Role in Plant Mineral Nutrition

Author : Francisco Javier Romera,Aaron P. Smith,Rafael Pérez-Vicente
Publisher : Frontiers Media SA
Page : 153 pages
File Size : 49,7 Mb
Release : 2016-09-07
Category : Botany
ISBN : 9782889199464

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Ethylene’s Role in Plant Mineral Nutrition by Francisco Javier Romera,Aaron P. Smith,Rafael Pérez-Vicente Pdf

Terrestrial plants are sessile organisms that, differently from animals, can not move in searching of the nutrients and water they need. Instead, they have to change continuously their physiology and morphology to adapt to the environmental changes. When plants suffer from a nutrient deficiency, they develop physiological and morphological responses (mainly in their roots) aimed to facilitate the acquisition and mobilization of such a nutrient. Physiological responses include some ones like acidification of the rizhosphere and release of chelating agents into the medium; and morphological responses include others, like changes in root architecture and development of root hairs. The regulation of these responses is not totally known but in the last years different plant hormones and signaling substances, such as auxin, ethylene, cytokinins and nitric oxide, have been involved in their control. Besides hormones, oxidative stress has also been related with most of the nutrient deficiencies. The relationship of ethylene with the regulation of responses to nutrient deficiencies came from the nineties, when some works presented data suggesting its involvement in the regulation of responses to Fe and P deficiency. In the last years, the role of ethylene has been extended to many other nutrient deficiencies, such as K deficiency, Mg deficiency, S deficiency, N deficiency, and others. In most of the cases, it has been found that ethylene production, as well as the expression of ethylene synthesis genes, increases under these nutrient deficiencies. Furthermore, it has also been found that ethylene controls the expression of genes related to responses to different deficiencies. The involvement of ethylene in so many deficiencies suggests that it should act in conjunction with other signals that would confer nutrient-specificity to the distinct nutrient responses. These other signals could be plant hormones (auxin, cytokinins, etc) as well as other substances (nitric oxide, microRNAs, peptides, glutathione, etc), either originated in the roots or coming from the shoots through the phloem. The role of ethylene in the mineral nutrition of plants is even more complex that the one related to its role in the responses to nutrient deficiencies. Ethylene has also been implicated in the N2 fixation of legume plants; in salt tolerance responses; and in responses to heavy metals, such as Cd toxicity. All these processes are related to ion uptake and, consequently, are related to plant mineral nutrition. We consider a good opportunity to review all this information in a coordinated way. This Research Topic will provide an overview about the role of the plant hormone ethylene on the regulation of physiological and morphological responses to different nutrient deficiencies. In addition, it will cover other aspects of ethylene related to plant nutrition such as its role on salinity, N2 fixation and tolerance to heavy metals.