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Functional Genomics in Medicago truncatula

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Cover of 'Functional Genomics in Medicago truncatula'

Table of Contents

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    Book Overview
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    Chapter 1 Grain and Forage Legumes: Nutritional Value and Agriculture Sustainability
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    Chapter 2 Model Legumes: Functional Genomics Tools in Medicago truncatula
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    Chapter 3 The Medicago truncatula Genome: Genomic Data Availability
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    Chapter 4 Physical Mutagenesis in Medicago truncatula Using Fast Neutron Bombardment (FNB) for Symbiosis and Developmental Biology Studies
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    Chapter 5 Targeting Induced Local Lesions IN Genomes (TILLING) in Medicago truncatula
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    Chapter 6 T-DNA Insertional Mutagenesis and Activation Tagging in Medicago truncatula
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    Chapter 7 Tnt1 Insertional Mutagenesis in Medicago truncatula
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    Chapter 8 Transient Posttranscriptional Gene Silencing in Medicago truncatula: Virus-Induced Gene Silencing (VIGS)
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    Chapter 9 Stable Inactivation of MicroRNAs in Medicago truncatula Roots
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    Chapter 10 Non-isotopic RNA In Situ Hybridization for Functional Analyses in Medicago truncatula
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    Chapter 11 In Situ Hybridization Method for Localization of mRNA Molecules in Medicago Tissue Sections
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    Chapter 12 Editing the Medicago truncatula Genome: Targeted Mutagenesis Using the CRISPR-Cas9 Reagent
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    Chapter 13 Functional Genomics and Seed Development in Medicago truncatula: An Overview
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    Chapter 14 Functional Genomics and Genetic Control of Compound Leaf Development in Medicago truncatula: An Overview
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    Chapter 15 Root Development in Medicago truncatula: Lessons from Genetics to Functional Genomics
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    Chapter 16 The Multiple Faces of the Medicago-Sinorhizobium Symbiosis
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    Chapter 17 Functional Genomics and Flowering Time in Medicago truncatula: An Overview
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    Chapter 18 Functional Genomics and Genetic Control of Flower and Fruit Development in Medicago truncatula: An Overview
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    Chapter 19 Toward Unravelling the Genetic Determinism of the Acquisition of Salt and Osmotic Stress Tolerance Through In Vitro Selection in Medicago truncatula
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    Chapter 20 Functional Genomics in the Study of Metabolic Pathways in Medicago truncatula: An Overview
Attention for Chapter 11: In Situ Hybridization Method for Localization of mRNA Molecules in Medicago Tissue Sections
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Chapter title
In Situ Hybridization Method for Localization of mRNA Molecules in Medicago Tissue Sections
Chapter number 11
Book title
Functional Genomics in Medicago truncatula
Published in
Methods in molecular biology, January 2018
DOI 10.1007/978-1-4939-8633-0_11
Pubmed ID
Book ISBNs
978-1-4939-8632-3, 978-1-4939-8633-0
Authors

Olga Kulikova, Carolien Franken, Ton Bisseling, Kulikova, Olga, Franken, Carolien, Bisseling, Ton

Abstract

Here we describe an in situ hybridization (ISH) method using Invitrogen™ ViewRNA™ ISH Tissue Assay (ThermoFisher Scientific) optimized for Medicago root and nodules sections. The method is based on branched (b)DNA signal amplification technology originally developed for use in microplate format and further adapted for detection of (m)RNAs in mammalian tissue sections. Signal amplification is achieved via a series of sequential hybridizations of linking sequences which are anchored to complementary sequences present on specific oligonucleotide probes. The typical (m)RNA probe set contains ~20 synthetic adjacent oligonucleotide pairs. Each probe is composed of a 20bp primary sequence designed to target sequence of interest and a secondary extended sequence serving as a template for hybridization of a preamplifier oligonucleotide. The preamplifier forms a stable hybrid only if it hybridizes to two adjacent probes. By this principle, background is reduced. Other regions on the preamplifier are designed to hybridize to multiple bDNA amplifier molecules that create a branched structure. Finally, alkaline phosphatase (AP)-labeled oligonucleotides, which are complementary to bDNA amplifier sequences, bind to the bDNA molecule by hybridization. By adding Fast Red substrate, red punctuated precipitates are formed that can be detected by light bright and/or fluorescent microscope. ThermoFisher Scientific ( https://www.thermofisher.com/nl/en/home.html ) designs and synthesizes probe sets for a gene of interest and Invitrogen™ ViewRNA™ ISH Tissue Assay kits include all components required for pretreatment of plant tissues, hybridization and signal amplification.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 13 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 13 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 8 62%
Researcher 1 8%
Unknown 4 31%
Readers by discipline Count As %
Agricultural and Biological Sciences 7 54%
Biochemistry, Genetics and Molecular Biology 2 15%
Unknown 4 31%