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Plastids

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Cover of 'Plastids'

Table of Contents

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    Book Overview
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    Chapter 1 Primary Endosymbiosis: Emergence of the Primary Chloroplast and the Chromatophore, Two Independent Events
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    Chapter 2 Complex Endosymbioses I: From Primary to Complex Plastids, Multiple Independent Events
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    Chapter 3 Complex Endosymbioses II: The Nonphotosynthetic Plastid of Apicomplexa Parasites (The Apicoplast) and Its Integrated Metabolism
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    Chapter 4 Diversity and Plasticity of Plastids in Land Plants
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    Chapter 5 The Main Functions of Plastids
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    Chapter 6 Plastid Transient and Stable Interactions with Other Cell Compartments
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    Chapter 7 Imaging Plastids in 2D and 3D: Confocal and Electron Microscopy
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    Chapter 8 Purification of Chloroplasts and Chloroplast Subfractions: Envelope, Thylakoids, and Stroma—From Spinach, Pea, and Arabidopsis thaliana
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    Chapter 9 Isolation of Inner and Outer Membranes of the Chloroplast Envelope from Spinach and Pea
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    Chapter 10 Purification of Nongreen Plastids (Proplastids and Amyloplasts) from Angiosperms, and Isolation of Their Envelope Membranes
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    Chapter 11 In Vitro Protein Import into Isolated Chloroplasts
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    Chapter 12 Analysis of the MTL Supercomplex at Contact Sites Between Mitochondria and Plastids
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    Chapter 13 Isolation of Plastid Fractions from the Diatoms Thalassiosira pseudonana and Phaeodactylum tricornutum
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    Chapter 14 Isolating the Plasmodium falciparum Apicoplast Using Magnetic Beads
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    Chapter 15 Extraction and Quantification of Lipids from Plant or Algae
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    Chapter 16 Quantitative Assessment of the Chloroplast Lipidome
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    Chapter 17 Determination of the DNA/RNA-Associated Subproteome from Chloroplasts and Other Plastid Types
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    Chapter 18 Mapping Plastid Transcript Population by Circular Reverse Transcription Polymerase Chain Reaction
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    Chapter 19 Bioinformatic Analysis of Chloroplast Gene Expression and RNA Posttranscriptional Maturations Using RNA Sequencing
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    Chapter 20 A Guide to the Chloroplast Transcriptome Analysis Using RNA-Seq
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    Chapter 21 A Toolkit for the Characterization of the Photoprotective Capacity of Green Algae
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    Chapter 22 Rescue of Deletion Mutants to Isolate Plastid Transformants in Higher Plants
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    Chapter 23 Genetic Analysis of Chloroplast Biogenesis, and Function and Mutant Collections
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    Chapter 24 Generation of Mutants of Nuclear-Encoded Plastid Proteins Using CRISPR/Cas9 in the Diatom Phaeodactylum tricornutum
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    Chapter 25 In Silico Tools for the Prediction of Protein Import into Secondary Plastids
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    Chapter 26 AT_CHLORO: The First Step When Looking for Information About Subplastidial Localization of Proteins
Attention for Chapter 17: Determination of the DNA/RNA-Associated Subproteome from Chloroplasts and Other Plastid Types
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Chapter title
Determination of the DNA/RNA-Associated Subproteome from Chloroplasts and Other Plastid Types
Chapter number 17
Book title
Plastids
Published in
Methods in molecular biology, January 2018
DOI 10.1007/978-1-4939-8654-5_17
Pubmed ID
Book ISBNs
978-1-4939-8653-8, 978-1-4939-8654-5
Authors

Maha Chieb, Monique Liebers, Fabien Chevalier, Silva Lerbs-Mache, Robert Blanvillain, Thomas Pfannschmidt, Chieb, Maha, Liebers, Monique, Chevalier, Fabien, Lerbs-Mache, Silva, Blanvillain, Robert, Pfannschmidt, Thomas

Abstract

Plastids of plant and algae cells are of endosymbiotic origin. They possess their own genome and a sophisticated protein machinery to express it. Studies over the recent years uncovered that the regulation of plastid gene expression is highly complex involving a multiplicity of regulatory protein factors that are mostly imported from the cytosol. Proper expression of the chloroplast genome in coordination with nuclear genome was found to be absolutely essential for efficient growth and development of plants especially during early steps of photomorphogenesis, but also at later stages of the plant life cycle. Protein factors being responsible for such essential steps, therefore, are highly interesting for fundamental science as well as for industrial applications targeting crop improvement and yield increase. Nevertheless, many proteins involved in regulation of plastid gene expression are still unidentified and/or uncharacterized. This asks for appropriate methods to analyze this special subproteome. Here, we describe suitable methods that proved to be successful in the analysis of the plastid subproteome of DNA/RNA-binding proteins.

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Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 2 100%

Demographic breakdown

Readers by professional status Count As %
Other 1 50%
Student > Master 1 50%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 1 50%
Agricultural and Biological Sciences 1 50%