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040 _aDLC
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020 _a9781118472477
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020 _a1118472470
_q(mobi)
020 _a9781118472507
_q(electronic bk.)
020 _a1118472500
_q(electronic bk.)
020 _z9781118472453
_q(cloth)
029 1 _aAU@
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035 _a(OCoLC)841187605
_z(OCoLC)850204656
_z(OCoLC)893932736
_z(OCoLC)961607645
_z(OCoLC)962583520
042 _apcc
050 0 0 _aQK981
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_x029000
_2bisacsh
082 0 0 _a572.8/62
_223
049 _aMAIN
245 0 0 _aPlant nuclear structure, genome architecture, and gene regulation /
_cedited by David Evans, Oxford Brookes University.
264 1 _aChichester, West Sussex, UK ;
_aHoboken, New Jersey :
_bWiley-Blackwell,
_c2013.
300 _a1 online resource.
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
490 1 _aAnnual plant reviews ;
_vvolume 46
504 _aIncludes bibliographical references and index.
588 0 _aPrint version record and CIP data provided by publisher; resource not viewed.
520 _a"Brings together expert reviews of the recent significant advances in our knowledge and understanding of the organisation of the higher plant nucleus, and in particular in the relationship between nuclear organisation and the regulation of gene expression. Rapid progress has been made in a number of key areas over the last five years, including description and characterization of proteins of the nuclear envelope and nuclear pore complex, novel insights into nucleoskeletal structures, as well as developments related to chromatin organization, function and gene expression. These advances open the way for new research into areas such as stress tolerance, plant-pathogen interactions and ultimately crop improvement and food security. Continued research into plant nuclear structure, genome architecture and gene regulation also enriches our understanding of the origin and evolution of the nucleus and its envelope."--Publisher's book description.
505 0 _aAnnual Plant Reviews Volume 46; Contents; List of Contributors; Preface; Acknowledgements; 1 Introduction: Mysteries, Molecules and Mechanisms; 1.1 Darwin and Margulis revisited; 1.2 Nuclei-general features; 1.3 The plant nuclear genome; 1.3.1 General features; 1.3.2 Replication of the nuclear genome; 1.4 DNA inside, ribosomes outside; 1.5 Concluding comments on the evolution of the nucleus; References; 2 The Nuclear Envelope-Structure and Protein Interactions; 2.1 Introduction; 2.2 Organization and structure of the plant nuclearenvelope; 2.3 Proteins of the plant nuclear envelope.
505 8 _a2.3.1 Proteins involved in signalling2.3.2 Proteins of the nuclear pore complex; 2.3.3 Proteins of the INM; 2.3.4 Proteins spanning the periplasm and linking the NE membranes; 2.3.5 The plant lamina; 2.4 The plant nuclear envelope and the nucleoskeleton; attachments at the INM; 2.5 The plant nuclear envelope and the cytoskeleton; attachments at the ONM; 2.6 Targeting of proteins to the plant NE; 2.7 Nuclear envelope protein dynamics in mitosis; 2.7.1 The role of NPC in regulating NE dynamics in cell division; 2.7.2 NE protein dynamics in division.
505 8 _a2.8 The phragmoplast and cell plate and their relationship to the NE2.9 The plant NE in meiosis; 2.10 Lipid composition of the plant NE and its homeostasis; 2.10.1 Nuclear-vacuolar junctions and lipid homeostasis; 2.10.2 NE phospholipid regulation by lipins; 2.11 The role of plant NE components in stress responses; 2.11.1 Nuclei repositioning in response to environmental stimuli; 2.11.2 Functions of the plant NE during viral infection; 2.12 Concluding remarks; Acknowledgements; References; 3 The Plant Nuclear Pore Complex -- The Nucleocytoplasmic Barrierand Beyond.
505 8 _a3.1 Nuclear pore complex structure3.1.1 Structure of the NPC; 3.1.2 Molecular composition of the NPC; 3.1.3 Nucleocytoplasmic trafficking; 3.1.3.1 Karyopherins and Ran cycle; 3.1.3.2 Non-karyopherin transport; 3.1.3.3 Models explaining 'virtual gating' of the NPC; 3.2 Physiological and developmental roles of plant nuclear pore components; 3.2.1 Plant-microbe interactions; 3.2.2 Hormone responses; 3.2.2.1 Abscisic acid signalling; 3.2.2.2 Auxin signalling; 3.2.3 Abiotic stress responses; 3.2.3.1 Temperature stress; 3.2.3.2 Salt and osmotic stress; 3.2.4 Growth and development.
505 8 _a3.3 The Dynamics of the Nuclear Pore Complex3.3.1 Types of mitosis; 3.3.2 NPC disassembly and dynamics of animal NPC components; 3.3.3 Dynamics of fungal NPC components; 3.3.4 Dynamics of plant NPC components; 3.4 Conclusions; References; 4 Nucleoskeleton in Plants: The Functional Organization of Filaments in the Nucleus; 4.1 Introduction; 4.2 Intermediate filaments and the nucleoskeleton; 4.3 Plants do not have intermediate filaments but they may have functional equivalents; 4.4 Plants can evolve different solutions to the same problem; 4.5 Intermediate filaments first evolved in the nucleus.
650 0 _aPlant gene expression.
650 0 _aPlant genomes.
650 4 _aGenome, Plant.
650 4 _aPlant genomes
_xResearch
_xMethodology.
650 4 _aPlant genomes.
650 4 _aPlant molecular genetics.
650 7 _aSCIENCE
_xLife Sciences
_xGenetics & Genomics.
_2bisacsh
650 7 _aPlant gene expression.
_2fast
_0(OCoLC)fst01065448
650 7 _aPlant genomes.
_2fast
_0(OCoLC)fst01065465
655 4 _aElectronic books.
700 1 _aEvans, D. E.
_q(David E.)
776 0 8 _iPrint version:
_tPlant nuclear structure, genome architecture, and gene regulation.
_dChichester, West Sussex, UK : Wiley-Blackwell, 2013
_z9781118472453
_w(DLC) 2013004586
830 0 _aAnnual plant reviews ;
_vv. 46.
856 4 0 _3
_uhttp://dx.doi.org/10.1002/9781118472507
_zWiley Online Library [Free Download only for SUST IP]
938 _aEBL - Ebook Library
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