
Inhaltsverzeichnis
Master Regulatory Transcription Factors in Plant Development: A Blooming Perspective. - Application of CRISPR/Cas to Understand Cis- and Trans-Regulatory Elements in Plants. - The Long-Term `In Natura Study Sites of Arabidopsis halleri for Plant Transcription and Epigenetic Modification Analyses in Natural Environments. - Generation of Inducible Transgenic Lines of Arabidopsis Transcription Factors Regulated by MicroRNAs. - A Specific Knockdown of Transcription Factor Activities in Arabidopsis. - Using CRISPR/Cas9 System to Introduce Targeted Mutation in Arabidopsis. - CRISPR/Cas9-Based Genome Editing of Transcription Factor Genes in Marchantia polymorpha. - Cell-Type-Specific Promoter Identification Using Enhancer Trap Lines. - Isolation of Arabidopsis Palisade and Spongy Mesophyll Cells. - Ectopic Vascular Induction in Arabidopsis Cotyledons for Sequential Analysis of Phloem Differentiation. - High Impact Gene Discovery: Simple Strand Specific mRNA Library Construction and Differential Regulatory Analysis Based on Gene Co-Expression Network. - Laser Capture Micro-Dissection Coupled to RNA Sequencing: A Powerful Approach Applied to the Model Legume Medicago truncatula in Interaction with Sinorhizobium meliloti. - nanoCAGE-XL: An Approach to High-Confidence Transcription Start Site Sequencing. - Genome-Wide TSS Identification in Maize. - Three-Dimensional Multiphoton Imaging of Transcription Factor by ClearSee. - Two-Color In Situ Hybridization: A Technique for Simultaneous Detection of Transcripts from Different Loci. - Gene Expression and Transcription Factor Binding Tests Using Mutated-Promoter Reporter Lines. - Rapid and Quantitative CELD Assay to Measure the Specificity of Transcription Factor-DNA Binding Interactions and Identify cis-Elements. - In Situ Proximity Ligation Assay to Detect the Interaction between Plant Transcription Factors and Other Regulatory Proteins. - Cell-Free Protein Synthesis of PlantTranscription Factors. - Application of MNase-Seq in the Global Mapping of Nucleosome Positioning in Plants. - Genome-Wide Mapping of DNase I Hypersensitive Sites in Tomato. - Genome-Wide Identification of Chromatin Domains Anchored at the Nuclear Periphery in Plants.
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