Molecular plant abiotic stress biology and biotechnology / edited by Dr. Aryadeep Roychoudhury, Department of Biotechnology, St. Xavier's College (Autonomous) 30, Mother Teresa Sarani, Kolkata-700016, West Bengal, India, Dr. Durgesh Kumar Tripathi, Amity Institute of Organic Agriculture, Uttar Pradesh, Noida-201313, Uttar Pradesh, India.

Other author Roychoudhury, Aryadeep.
Other author Tripathi, Durgesh.
Format Electronic
EditionFirst edition.
Publication InfoHoboken, NJ : Wiley, 2019.
Descriptionxix, 454 pages ; 26 cm
Supplemental ContentFull text available from Ebook Central - Academic Complete
Subjects

Contents Plant tolerance to environmental stress: translating research from lab to land -- Morphological and anatomical modifications of plants for environmental stresses -- Stomatal regulation as drought tolerance mechanism -- Antioxidative machinery for redox homeostasis during abiotic stress -- Osmolytes and their role in abiotic stress tolerance in plants -- Elicitor-mediated amelioration of abiotic stress in plants -- Role of selenium in plants against abiotic stresses: phenological and molecular aspects -- Polyamines ameliorate oxidative stress by regulating antioxidant systems and interacting with plant growth regulators -- Abscisic acid in abiotic stress-responsive gene expression -- Abiotic stress management in plants: role of ethylene -- Cross-talks among phytohormone signaling pathways during abiotic stress -- Plant molecular chaperones: structural organization and their roles in abiotic stress tolerance -- Chloride (Cl-) uptake, transport and regulation in plant salt tolerance -- The root endo-mutualist piriformospora indica: a promising bio-tool for improving crops under salinity stress -- Root endosymbiont mediated priming of host plants for abiotic stress tolerance -- Insight into the molecular interaction between leguminous plants and rhizobia under abiotic stress -- Effect of nanoparticles on oxidative damage and antioxidant defense system in plants -- Marker-assisted selection for abiotic stress tolerance in crop plants -- Transgenes: the key to understanding the abiotic stress tolerance in rice -- Impact of next generation sequencing in elucidating the role of microRNA related to multiple abiotic stresses -- Understanding the interaction of molecular factors during the cross-talk between drought and biotic stresses in plants.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Genre/formElectronic books.
LCCN 2019011920
ISBN9781119463696 (hardback)

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