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Xylem

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Cover of 'Xylem'

Table of Contents

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    Book Overview
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    Chapter 1 Experimental and Theoretical Methods to Approach the Study of Vascular Patterning in the Plant Shoot.
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    Chapter 2 Strigolactone-mediated Stimulation of Secondary Xylem Proliferation in Stems.
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    Chapter 3 Quick Histochemical Staining Methods to Detect Cell Death in Xylem Elements of Plant Tissues.
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    Chapter 4 Establishment and Utilization of Habituated Cell Suspension Cultures for Hormone-Inducible Xylogenesis.
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    Chapter 5 Tissue Culture for Xylem Differentiation with Arabidopsis Leaves.
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    Chapter 6 VND6-induced Xylem Cell Differentiation in Arabidopsis Cell Cultures.
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    Chapter 7 Live Imaging of Developing Xylem In Planta.
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    Chapter 8 Immunolocalization in Secondary Xylem of Populus.
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    Chapter 9 Xylem
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    Chapter 10 Vascular Morphodynamics During Secondary Growth.
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    Chapter 11 Xylem Characterization Using Improved Pseudo-Schiff Propidium Iodide Staining of Whole Mount Samples and Confocal Laser-Scanning Microscopy.
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    Chapter 12 Chemical Imaging of Xylem by Raman Microspectroscopy.
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    Chapter 13 Using CellProfiler to Analyze and Quantify Vascular Morphology.
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    Chapter 14 Lignin Analysis by HPLC and FTIR.
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    Chapter 15 Carbohydrate Composition Analysis in Xylem.
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    Chapter 16 Structural Analysis of Cell Wall Polysaccharides Using PACE.
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    Chapter 17 Analysis of Lignin Composition and Distribution Using Fluorescence Laser Confocal Microspectroscopy.
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    Chapter 18 Topochemical Analysis of Cell Wall Components by TOF-SIMS.
Attention for Chapter 6: VND6-induced Xylem Cell Differentiation in Arabidopsis Cell Cultures.
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Chapter title
VND6-induced Xylem Cell Differentiation in Arabidopsis Cell Cultures.
Chapter number 6
Book title
Xylem
Published in
Methods in molecular biology, January 2017
DOI 10.1007/978-1-4939-6722-3_6
Pubmed ID
Book ISBNs
978-1-4939-6720-9, 978-1-4939-6722-3
Authors

Yoshihisa Oda

Editors

Miguel de Lucas, J. Peter Etchhells

Abstract

In vitro xylem differentiation is a powerful technique that can be used to elucidate the process of xylem development that occurs deep inside plant tissues in nature. The experimental procedure described here is designed to induce metaxylem vessel differentiation at exceptionally high frequency and synchronicity using genetically engineered Arabidopsis cell suspensions. By triggering a transcriptional switch, over 80 % of the cells synchronously differentiate into xylem cells within 32 h of treatment with estradiol. Exogenous marker genes can be transiently introduced into the cells by coculturing them with transformed Agrobacterium before inducing xylem differentiation. This system is fast, easy to handle, and highly compatible with molecular and cell biology techniques used to explore xylem cell differentiation.

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Mendeley readers

The data shown below were compiled from readership statistics for 5 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 5 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 2 40%
Unspecified 1 20%
Student > Bachelor 1 20%
Student > Ph. D. Student 1 20%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 2 40%
Unspecified 1 20%
Computer Science 1 20%
Agricultural and Biological Sciences 1 20%