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Phloem

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Cover of 'Phloem'

Table of Contents

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    Book Overview
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    Chapter 1 Optimal Preparation of Tissue Sections for Light-Microscopic Analysis of Phloem Anatomy
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    Chapter 2 Transmission Electron Microscopy of the Phloem with Minimal Artifacts
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    Chapter 3 Scanning Electron Microscopy of the Phloem
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    Chapter 4 Noninvasive Investigation of Phloem Structure by 3D Synchrotron X-Ray Microtomography
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    Chapter 5 Quantification of Leaf Phloem Anatomical Features with Microscopy
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    Chapter 6 Methods of Phloem Visualization: A Clear Future in Sight?
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    Chapter 7 Super-Resolution Microscopy of Phloem Proteins
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    Chapter 8 Live-Cell Imaging of Fluorescently Tagged Phloem Proteins with Confocal Microscopy
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    Chapter 9 Immunohistochemical Localization of Proteins in the Phloem: Problems and Solutions
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    Chapter 10 Studying Phloem Loading with EDTA-Facilitated Phloem Exudate Collection and Analysis
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    Chapter 11 Measurement of Inner Bark and Leaf Osmolality
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    Chapter 12 Using 13C to Quantify Phloem Transport on Tall Plants in the Field
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    Chapter 13 Noninvasive Determination of Phloem Transport Speed with Carbon-14 (14C)
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    Chapter 14 Detecting Rapid Changes in Carbon Transport and Partitioning with Carbon-11 (11C)
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    Chapter 15 In Vivo Veritas: Radiotracers in Studies of Phloem Transport of Carbohydrate
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    Chapter 16 Measuring Phloem Transport Velocity in Arabidopsis Seedlings Using the Fluorescent Coumarin Glucoside, Esculin
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    Chapter 17 Measuring Phloem Transport Velocity on a Tissue Level Using a Phloem-Mobile Dye
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    Chapter 18 Quantification of Symplasmic Phloem Loading Capacity with Live-Cell Microscopy
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    Chapter 19 Assessing Long-Distance Carbon Partitioning from Photosynthetic Source Leaves to Heterotrophic Sink Organs with Photoassimilated [14C]CO2
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    Chapter 20 Measurement of Subcellular Metabolite Concentrations in Relation to Phloem Loading
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    Chapter 21 Measuring Sucrose Transporter Activities Using a Protoplast-Esculin Assay
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    Chapter 22 The AtSUC2 Promoter: A Powerful Tool to Study Phloem Physiology and Development
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    Chapter 23 Using Aphids to Measure Turgor Pressure Inside Sieve Elements
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    Chapter 24 Stem Compression: A Means to Reversibly Reduce Phloem Transport in Tree Stems
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    Chapter 25 Methods for Assessing the Role of Phloem Transport in Plant Stress Responses
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    Chapter 26 Modeling the Hydraulic Conductivity of Phloem Sieve Elements
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    Chapter 27 Using a Multi-compartmental Metabolic Model to Predict Carbon Allocation in Arabidopsis thaliana
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    Chapter 28 A Mechanistic Model to Predict Distribution of Carbon Among Multiple Sinks
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    Chapter 29 Using a Mathematical Model of Phloem Transport to Optimize Strategies for Crop Improvement
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    Chapter 30 Making Microfluidic Devices that Simulate Phloem Transport
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    Chapter 31 Efficient Establishment of Interfamily Heterograft of Nicotiana benthamiana and Arabidopsis thaliana
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    Chapter 32 Identification of Phloem Mobile mRNAs Using the Solanaceae Heterograft System
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    Chapter 33 Analyzing and Predicting Phloem Mobility of Macromolecules with an Online Database
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    Chapter 34 Measurement of Electropotential Waves in Intact Phloem Sieve Elements Using Microelectrodes
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    Chapter 35 Measurement of Electropotential Waves in Intact Sieve Elements Using Aphids as Bioelectrodes
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    Chapter 36 What Can Cell Culture Systems Reveal About Sieve Element Differentiation?
Attention for Chapter 5: Quantification of Leaf Phloem Anatomical Features with Microscopy
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Citations

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Chapter title
Quantification of Leaf Phloem Anatomical Features with Microscopy
Chapter number 5
Book title
Phloem
Published by
Humana, New York, NY, June 2019
DOI 10.1007/978-1-4939-9562-2_5
Pubmed ID
Book ISBNs
978-1-4939-9561-5, 978-1-4939-9562-2
Authors

Jared J. Stewart, Onno Muller, Christopher M. Cohu, Barbara Demmig-Adams, William W. Adams

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 6 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 6 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 17%
Researcher 1 17%
Other 1 17%
Unknown 3 50%
Readers by discipline Count As %
Agricultural and Biological Sciences 1 17%
Unknown 5 83%