The Plant Cytoskeleton in Cell Differentiation and Development

The Plant Cytoskeleton in Cell Differentiation and Development

Author: Patrick J. Hussey

Publisher: CRC Press

Published: 2004

Total Pages: 352

ISBN-13: 9780849319815

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Table of Contents List of contributors Preface Pt. 1 The cytoskeleton: the machinery and key molecules 1 1 Microtubules and microtubule-associated proteins 3 2 Actin and actin-modulating proteins 32 Pt. 2 Fundamental cytoskeletal activities 81 3 Expanding beyond the great divide: the cytoskeleton and axial growth 83 4 Re-staging plant mitosis 116 5 Organelle movements: transport and positioning 148 6 The cell wall: a sensory panel for signal transduction 176 Pt. 3 The cytoskeleton and plant cell morphogenesis 205 7 Development of root hairs 207 8 Signaling the cytoskeleton in pollen tube germination and growth 240 9 Cytoskeletal requirements during Arabidopsis trichome development 265 10 Signaling and the cytoskeleton in guard cells 290 Index 318.


Annual Plant Reviews, The Plant Cytoskeleton in Cell Differentiation and Development

Annual Plant Reviews, The Plant Cytoskeleton in Cell Differentiation and Development

Author: Patrick J. Hussey

Publisher: John Wiley & Sons

Published: 2009-02-12

Total Pages: 344

ISBN-13: 1405147873

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Annual Plant Reviews, Volume 10 The cytoskeleton is a dynamic filamentous structure composed of at least actin and microtubule networks. Actin and microtubules are no different structurally from their animal and fungal counterparts. However, the strategies of cell differentiation and development in plants require this network to respond appropriately to plant-specific developmental cues and to environmental factors. This book views the cytoskeleton from different perspectives but, on the whole, as a network composed of structural and regulatory proteins controlled by internal and external stimuli that result in different aspects of cell differentiation. This is a volume for researchers and professionals in plant biochemistry, cell biology and genetics.


The Plant Cytoskeleton: a Key Tool for Agro-Biotechnology

The Plant Cytoskeleton: a Key Tool for Agro-Biotechnology

Author: Yaroslav B. Blume

Publisher: Springer Science & Business Media

Published: 2008-10-23

Total Pages: 460

ISBN-13: 1402088434

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Essential processes in biology such as cell and nuclear division, development, intracellular transport and physiological response, rely on the perception of environmental and intracellular signals and their transduction to subcellular targets. The mechanisms by which these signals are received by cells and transduced towards the proper targets by cytoskeletal components constitute one of the most important and rapidly developing areas in modern plant biology. In addition, fundamentally important responses of plants to biotic and abiotic factors also involve signalling to and through the cytoskeleton, which helps explain the current interest of biotechnology in this field of fundamental research. Manipulation of cytoskeletal components, the microtubules and microfilaments, had, until recently, not been a priority issue for plant biotechnology. However, given the fundamental role of the cytoskeleton during plant growth and development, the potential for biotechnological applications is immense. The NATO Advanced Research Workshop, “The Plant Cytoskeleton: Genomic and Bioinformatic Tools for Biotechnology and Agriculture” was held in Yalta, Ukraine, from September 19 to 23, 2006 – which continued the tradition of the first two International Symposia “Plant Cytoskeleton: Molecular Keys for Biotechnology” (Yalta, Ukraine, 1998) and “The Plant Cytoskeleton: functional diversity and biotechnological implications” (Kiev, Ukraine, 2002).


An Introduction to Plant Structure and Development

An Introduction to Plant Structure and Development

Author: Charles B. Beck

Publisher: Cambridge University Press

Published: 2010-04-22

Total Pages: 465

ISBN-13: 1139486365

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A plant anatomy textbook unlike any other on the market today. Carol A. Peterson described the first edition as 'the best book on the subject of plant anatomy since the texts of Esau'. Traditional plant anatomy texts include primarily descriptive aspects of structure, this book not only provides a comprehensive coverage of plant structure, but also introduces aspects of the mechanisms of development, especially the genetic and hormonal controls, and the roles of plasmodesmata and the cytoskeleton. The evolution of plant structure and the relationship between structure and function are also discussed throughout. Includes extensive bibliographies at the end of each chapter. It provides students with an introduction to many of the exciting, contemporary areas at the forefront of research in the development of plant structure and prepares them for future roles in teaching and research in plant anatomy.


Abiotic Stress Response in Plants

Abiotic Stress Response in Plants

Author: Narendra Tuteja

Publisher: John Wiley & Sons

Published: 2016-01-08

Total Pages: 456

ISBN-13: 3527694595

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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.


A dynamic interplay between membranes and the cytoskeleton critical for cell development and signaling

A dynamic interplay between membranes and the cytoskeleton critical for cell development and signaling

Author: Clément Thomas

Publisher: Frontiers E-books

Published: 2014-10-23

Total Pages: 81

ISBN-13: 2889193233

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Various cellular processes underlying plant development and response to environmental cues rely on a dynamic interplay between membranes and the cytoskeleton, e.g. vesicle and organelle trafficking, endocytosis, exocytosis, and signal transduction. In recent years, significant progress in the understanding of such interplay has been achieved and several critical links between membranes and the cytoskeleton have been characterized. As an example, recent work has clarified how auxin promotes the reorganization of cortical actin filaments by the activation of Rho GTPase pathways, and how such reorganization in turn locally modifies endocytosis and/or exocytosis and directs asymmetric distribution of PIN family of auxin transporters. Another recent achievement is the characterization of the Rho- and microtubule-driven mechanism by which the cell wall architecture is established. In particular, the elegant work by Oda and Fukuda (Science 337 p.1333, 2012) provides evidence that secondary wall patterning in xylem vessel primarily relies on two processes: a local activation of the plant Rho GTPase ROP11 and a mutual, MIDD1-mediated, inhibitory interaction between active ROP domains and cortical microtubules. Additional examples include recent genetic evidence that microtubule and actin filament interacting/regulatory proteins, such as MAP65-1 and capping protein, function as transducers of membrane lipid signaling into changes in cytoskeleton dynamics and organization. This Research Topic aims at collecting a comprehensive set of articles dealing with cellular processes involving membrane-cytoskeleton interactions. Its scope extends beyond the specific fields defined by the above examples and includes intracellular trafficking, host-pathogen interactions, response to biotic and abiotic stresses and hormonal regulation of growth. We hope that this Research Topic will also highlight critical questions that need to be addressed in the future. We welcomed Original Research Articles, Technical/Methodological Advances (e.g. analysis of cytoskeleton dynamics close to membranes), Reviews and Mini Reviews that can expand our understanding of how and why membranes and the cytoskeleton interact.


The Plant Cytoskeleton

The Plant Cytoskeleton

Author: Bo Liu

Publisher: Springer Science & Business Media

Published: 2010-11-23

Total Pages: 333

ISBN-13: 1441909877

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Plant cells house highly dynamic cytoskeletal networks of microtubules and actin microfilaments. They constantly undergo remodeling to fulfill their roles in supporting cell division, enlargement, and differentiation. Following early studies on structural aspects of the networks, recent breakthroughs have connected them with more and more intracellular events essential for plant growth and development. Advanced technologies in cell biology (live-cell imaging in particular), molecular genetics, genomics, and proteomics have revolutionized this field of study. Stories summarized in this book may inspire enthusiastic scientists to pursue new directions toward understanding functions of the plant cytoskeleton. The Plant Cytoskeleton is divided into three sections: 1) Molecular Basis of the Plant Cytoskeleton; 2) Cytoskeletal Reorganization in Plant Cell Division; and 3) The Cytoskeleton in Plant Growth and Development. This book is aimed at serving as a resource for anyone who wishes to learn about the plant cytoskeleton beyond ordinary textbooks.


Annual Plant Reviews, Cell Cycle Control and Plant Development

Annual Plant Reviews, Cell Cycle Control and Plant Development

Author: Dirk Inzé

Publisher: John Wiley & Sons

Published: 2008-04-15

Total Pages: 384

ISBN-13: 0470994320

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The cell cycle in plants consists of an ordered set of events, including DNA replication and mitosis, that culminates in cell division. As cell division is a fundamental part of a plant’s existence and the basis for tissue repair, development and growth, a full understanding of all aspects of this process is of pivotal importance. Cell Cycle Control and Plant Development commences with an introductory chapter and is broadly divided into two parts. Part 1 details the basic cell machinery, with chapters covering cyclin-dependent kinases (CDKs), cyclins, CDK inhibitors, proteolysis, CDK phosphorylation, and E2F/DP transcription factors. Part 2, which describes the cell cycle and plant development, covers cell cycle activation, cell cycle control during leaf development, endoreduplication, the cell cycle and trichome, fruit and endosperm development, the hormonal control of cell division and environmental stress, and cell cycle exit. The editor of this important book, Professor Dirk Inzé, well known and respected internationally, has brought together an impressive team of contributing authors, providing an excellent new volume in Blackwell Publishing’s Annual Plant Reviews Series. The book is an essential purchase for research teams working in the areas of plant sciences and molecular, cell and developmental biology. All libraries in universities and research establishments where biological sciences are studied and taught should have copies of this essential and timely volume.


Annual Plant Reviews, Plant Mitochondria

Annual Plant Reviews, Plant Mitochondria

Author: David C. Logan

Publisher: John Wiley & Sons

Published: 2007-10-22

Total Pages: 371

ISBN-13: 0470986581

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Mitochondria are critical organelles in the metabolic regulation ofalmost all eukaryotic organisms. Knowledge of their biochemistryand molecular biology in plants has been fuelled over recent yearsby the rapid progress made in genome sequencing and the ability tomanipulate gene expression. Plant Mitochondria contains chapters written by many ofthe world’s leading researchers in this area, bringingtogether and reviewing for the first time many recent advances.Contents include coverage of mitochondrial dynamics, mitochondrialgenome instability, expression of the plant mitochondrial genome,import of nuclear-encoded mitochondrial proteins, mitochondrialrespiratory complex biogenesis, supramolecular structure of theOXPHOS system, mitochondrial electron transport and oxidativestress, mitochondrial metabolism, cytoplasmic male sterilities andmitochondrial gene mutations, and the mitochondrion in plantprogrammed cell death. Plant Mitochondria is an extremely important and timelyaddition to Blackwell Publishing’s Annual Plant Reviewsseries. David Logan, well known and respected internationally forhis work in this area, has brought together a truly valuable volumeof great use and interest to plant scientists, cell and molecularbiologists, and biochemists. Libraries in all universities andresearch establishments where biological sciences are studied andtaught should have copies of this important book on theirshelves.


Morphology, Development, and Systematic Relevance of Pollen and Spores

Morphology, Development, and Systematic Relevance of Pollen and Spores

Author: Michael Hesse

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 129

ISBN-13: 3709190797

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Palynology, the science of fossil and recent spores/pollen grains, is of high importance, both in many pure and applied fields of the natural sciences (e.g. in botany, geology, climatology, archeology and medicine). It is not only an auxiliary science, but can certainly stand for itself. The "classical" palynology subjects, pollen morphology and systematics, are at present influenced by many modern approaches, e.g. from cell biology, analytical electron microscopy, morphometry, up to com- puter-aided-design of threedimensional reconstruction. In recent years fascinating informations have come to light, and new insights have given rise to changing scientific concepts. During the XIV International Botanical Congress, held in Berlin in 1987, a symposium was devoted to important topics of (actuo)palynology. Nine of its innovative, major contributions are presented in this volume. They cover the comparative morphology and the systematic/evolutionary significance of pollen/spores in critical taxa, aspects of pollen development (cytoskeleton), the substructure of sporopollenin, homologies between wall strata of ferns, gymnosperms and angiosperms, and important (but so far underrated) physical aspects of harmomegathy and pollen transport (fluid versus solid mechanics).