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Glutathione in Plant Growth, Development, and Stress Tolerance (Hardcover, 1st ed. 2017)
Mohammad Anwar Hossain, Mohammad Golam Mostofa, Pedro Diaz Vivancos, David J Burritt, Masayuki Fujita, …
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Glutathione ( -glutamyl-cysteinyl-glycine) is a ubiquitously
distributed sulfurcontaining antioxidant molecule that plays key
roles in the regulation of plant growth, development, and abiotic
and biotic stress tolerance. It is one of the most powerful
low-molecular-weight thiols, which rapidly accumulates in plant
cells under stress. Recent in-depth studies on glutathione
homeostasis (biosynthesis, degradation, compartmentalization,
transport, and redox turnover) and the roles of glutathione in cell
proliferation and environmental stress tolerance have provided new
insights for plant biologists to conduct research aimed at
deciphering the mechanisms associated with glutathione-mediated
plant growth and stress responses, as well as to develop
stress-tolerant crop plants. Glutathione has also been suggested to
be a potential regulator of epigenetic modifications, playing
important roles in the regulation of genes involved in the
responses of plants to changing environments. The dynamic
relationship between reduced glutathione (GSH) and reactive oxygen
species (ROS) has been well documented, and glutathione has been
shown to participate in several cell signaling and metabolic
processes, involving the synthesis of protein, the transport of
amino acids, DNA repair, the control of cell division, and
programmed cell death. Two genes, gamma-glutamylcysteine synthetase
(GSH1) and glutathione synthetase (GSH2), are involved in GSH
synthesis, and genetic manipulation of these genes can modulate
cellular glutathione levels. Any fluctuations in cellular GSH and
oxidized glutathione (GSSG) levels have profound effects on plant
growth and development, as glutathione is associated with the
regulation of the cell cycle, redox signaling, enzymatic
activities, defense gene expression, systemic acquired resistance,
xenobiotic detoxification, and biological nitrogen fixation. Being
a major constituent of the glyoxalase system and
ascorbate-glutathione cycle, GSH helps to control multiple abiotic
and biotic stress signaling pathways through the regulation of ROS
and methylglyoxal (MG) levels. In addition, glutathione metabolism
has the potential to be genetically or biochemically manipulated to
develop stress-tolerant and nutritionally improved crop plants.
Although significant progress has been made in investigating the
multiple roles of glutathione in abiotic and biotic stress
tolerance, many aspects of glutathione-mediated stress responses
require additional research. The main objective of this volume is
to explore the diverse roles of glutathione in plants by providing
basic, comprehensive, and in-depth molecular information for
advanced students, scholars, teachers, and scientists interested in
or already engaged in research that involves glutathione. Finally,
this book will be a valuable resource for future
glutathione-related research and can be considered as a textbook
for graduate students and as a reference book for frontline
researchers working on glutathione metabolism in relation to plant
growth, development, stress responses, and stress tolerance.
Ascorbic acid (AsA), vitamin C, is one of the most abundant
water-soluble antioxidant in plants and animals. In plants AsA
serves as a major redox buffer and regulates various physiological
processes controlling growth, development, and stress tolerance.
Recent studies on AsA homeostasis have broadened our understanding
of these physiological events. At the mechanistic level, AsA has
been shown to participate in numerous metabolic and cell signaling
processes, and the dynamic relationship between AsA and reactive
oxygen species (ROS) has been well documented. Being a major
component of the ascorbate-glutathione (AsA-GSH) cycle, AsA helps
to modulate oxidative stress in plants by controlling ROS
detoxification alone and in co-operation with glutathione. In
contrast to the single pathway responsible for AsA biosynthesis in
animals, plants utilize multiple pathways to synthesize AsA,
perhaps reflecting the importance of this molecule to plant health.
Any fluctuations, increases or decreases, in cellular AsA levels
can have profound effects on plant growth and development, as AsA
is associated with the regulation of the cell cycle, redox
signaling, enzyme function and defense gene expression. Although
there has been significant progress made investigating the multiple
roles AsA plays in stress tolerance, many aspects of AsA-mediated
physiological responses require additional research if AsA
metabolism is to be manipulated to enhance stress-tolerance. This
book summarizes the roles of AsA that are directly or indirectly
involved in the metabolic processes and physiological functions of
plants. Key topics include AsA biosynthesis and metabolism,
compartmentation and transport, AsA-mediated ROS detoxification, as
well as AsA signaling functions in plant growth, development and
responses to environmental stresses. The main objective of this
volume is therefore to supply comprehensive and up-to-date
information for students, scholars and scientists interested in or
currently engaged in AsA research.
Papers representing the Proceedings of the 2nd International
Conference of the UISPP Commission on Flint Mining in Pre- and
Protohistoric Times (Madrid, 14-17 October 2009).
Papers from the session Social Inequality in Iberian Late
Prehistory presented at the Congress of Peninsular Archaeology,
Faro, 2004.
This is a reproduction of a book published before 1923. This book
may have occasional imperfections such as missing or blurred pages,
poor pictures, errant marks, etc. that were either part of the
original artifact, or were introduced by the scanning process. We
believe this work is culturally important, and despite the
imperfections, have elected to bring it back into print as part of
our continuing commitment to the preservation of printed works
worldwide. We appreciate your understanding of the imperfections in
the preservation process, and hope you enjoy this valuable book.
++++ The below data was compiled from various identification fields
in the bibliographic record of this title. This data is provided as
an additional tool in helping to ensure edition identification:
++++ Excelencias Del Matrimonio Y Obligaciones De Las Personas Que
Abrazan Este Estado: Traducido Del Frances Pedro DIAZ DE GUEREnU
Marin, 1776
This is a reproduction of a book published before 1923. This book
may have occasional imperfectionssuch as missing or blurred pages,
poor pictures, errant marks, etc. that were either part of the
original artifact, or were introduced by the scanning process. We
believe this work is culturally important, and despite the
imperfections, have elected to bring it back into print as part of
our continuing commitment to the preservation of printed
worksworldwide. We appreciate your understanding of the
imperfections in the preservation process, and hope you enjoy this
valuable book.++++The below data was compiled from various
identification fields in the bibliographic record of this title.
This data is provided as an additional tool in helping to ensure
edition identification: ++++ Tratados Sobre La Fisica Del Clero...
Pedro DiAZ de VALDES Manuel Texero, 1806
This is an EXACT reproduction of a book published before 1923. This
IS NOT an OCR'd book with strange characters, introduced
typographical errors, and jumbled words. This book may have
occasional imperfections such as missing or blurred pages, poor
pictures, errant marks, etc. that were either part of the original
artifact, or were introduced by the scanning process. We believe
this work is culturally important, and despite the imperfections,
have elected to bring it back into print as part of our continuing
commitment to the preservation of printed works worldwide. We
appreciate your understanding of the imperfections in the
preservation process, and hope you enjoy this valuable book.
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