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020 _a9789402419405
024 7 _a10.1007/978-94-024-1940-5
_2doi
040 _aES-MaUEC
_bspa
_cES-MaUEC
_dES-MaUEC
050 4 _aSB750
_b2020 EB
100 _aVidhyasekaran, P.
_eautor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_1http://viaf.org/viaf/91497318
_986234
245 1 0 _aPlant Innate Immunity Signals and Signaling Systems :
_bBioengineering and Molecular Manipulation for Crop Disease Management
_cP. Vidhyasekaran
250 _aFirst edition
264 1 _aDordrecht, Netherland
_bSpringer International Publishing
_c2020
300 _a1 recurso en línea (XI, 267 páginas)
_b76 ilustraciones, 1 ilustraciones a color
336 _2rdacontent
_aTexto
_btxt
337 _2rdamedia
_aelectrónico
_bc
338 _2rdacarrier
_arecurso electrónico
_bcr
347 _aArchivo de texto
_bPDF
490 0 _aSignaling and Communication in Plants
_x1867-9048
490 0 _aBiomedical and Life Sciences (Springer-11642)
505 0 _a1. Introduction -- 2. Manipulation of Calcium Ion Influx--Mediated Immune Signaling Systems for Crop Disease Management -- 3. Manipulation of Reactive Oxygen Species, Redox and Nitric Oxide Signaling Systems to Activate Plant Innate Immunity for Crop Disease Management -- 4. Bioengineering and Molecular Manipulation of Mitogen-activated Kinases to Activate Plant Innate Immunity for Crop Disease Management -- 5. Bioengineering and Molecular Manipulation of Salicylic Acid Signaling System to Activate Plant Immune Responses for Crop Disease Management -- 6. Bioengineering and Molecular Manipulation of Jasmonate Signaling System to Activate Plant Immune System for Crop Disease Management -- 7. Bioengineering and Molecular Manipulation of Ethylene Signaling System for Crop Disease Management.
520 3 _aEngineering durable nonspecific resistance to phytopathogens is one of the ultimate goals of plant breeding. However, most of the attempts to reach this goal fail as a result of rapid changes in pathogen populations and the sheer diversity of pathogen infection mechanisms. Recently several bioengineering and molecular manipulation technologies have been developed to activate the 'sleeping' plant innate immune system, which has potential to detect and suppress the development of a wide range of plant pathogens in economically important crop plants. Enhancing disease resistance through altered regulation of plant immunity signaling systems would be durable and publicly acceptable. Strategies for activation and improvement of plant immunity aim at enhancing host's capability of recognizing invading pathogens, boosting the executive arsenal of plant immunity, and interfering with virulence strategies employed by microbial pathogens. Major advances in our understanding of the molecular basis of plant immunity and of microbial infection strategies have opened new ways for engineering durable resistance in crop plants. The volume III of the book presents the ways and means to manipulate the signals and signaling system to enhance the expression of plant innate immunity for crop disease management. It also describes bioengineering approaches to develop transgenic plants expressing enhanced disease resistance using plant immunity signaling genes. It also discusses recent commercial development of biotechnological products to manipulate plant innate immunity for crop disease management. .
988 _aSpringer_Biomedlife_23062020
650 7 _aPlantas
_xResistencia a plagas y enfermedades
_2embne
_9319429
710 2 _aSpringerLink (Online service)
_0http://id.loc.gov/authorities/names/no2005046756
_1http://viaf.org/viaf/148105729
776 0 8 _iPrinted edition:
_z9789402419399
776 0 8 _iPrinted edition:
_z9789402419412
776 0 8 _iPrinted edition:
_z9789402419429
830 0 _aSignaling and Communication in Plants,
_x1867-9048
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-94-024-1940-5
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
998 _b07/2020
_dz
_eo
_zSI