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Bioinformatics for Plant Research and Crop Breeding

Tipo de material: TextoTextoSeries 2024Trabajos contenidos:
  • Chen, Jen-Tsung
Recursos en línea: Resumen: Plant biology and crop breeding have produced an immense amount of data in recent years, from genomics to interactome and beyond. Bioinformatics tools, which aim at analyzing the vast quantities of data produced by biological research and processes, have developed at a rapid pace to meet the challenges of this vast data trove. The resulting field of bioinformatics and systems biology is producing increasingly rich and transformative research.
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Documentos solicitados Documentos solicitados CICY Documento préstamo interbibliotecario Ref1 B-20260 (Browse shelf(Opens below)) Available
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B-20258 Plasmodesmal endoplasmic reticulum proteins regulate intercellular trafficking of cucumber mosaic virus in Arabidopsis B-20259 Incidence of putative RNA mycoviruses in entomopathogenic fungi in Korea B-2026 Medizinisch orientierte Einlage für Schuhe, Insb. Sportschuhe B-20260 Bioinformatics for Plant Research and Crop Breeding B-20261 Intelligent structural health monitoring of composite structures using machine learning, deep learning, and transfer learning: a review B-20262 1 In Vivo Detection of Double-Stranded RNA by dRBFC Assay; 2 Developing Rice Mutants Using CRISPR/Cas9-Based Genome Editing Technology; 3 Microscale Thermophoresis Assay: A Powerful Method to Quantify Protein-Nucleic Acid and Protein-Protein Interactions; 4 Transient Expression-Mediated Gene Silencing in Plants and Suppression of Gene Silencing with Viral Suppressors; 5 Isolation and Transfection of Plant Mesophyll Protoplasts for Virology Research; 6 Split-Luciferase Complementation for Analysis of Virus-Host Protein Interactions; 7 Monitoring Virus Intercellular Movement from Primary Infected Cells to Neighboring Cells in Plants; 8 Simultaneous Determination and Subcellular Localization of Protein-Protein Interactions in Plant Cells Using Bimolecular Fluorescence Complementation Assay; 9 A Powerful Method for Studying Protein-Protein Interactions in Plants: Coimmunoprecipitation (Co-IP)Assay; 10 Membrane and Nuclear Yeast Two-Hybrid Systems; 11 Tag-Based Pull-Down Assay; 12 Purification of Plasmodesmata-Enriched Fraction for Proteomic Analyses; 13 Purification and Proteomics Analysis of Phloem Tissues from Virus-Infected Plants; 14 Rapid and Specific Purification of Argonaute-Small RNA Complexes from Rice for Slicer Activity; 15 Silencing Specific Genes in Plants Using Virus-Induced Gene Silencing (VIGS)Vectors; 16 A Versatile Expression Platform in Insects and Cereals Based on a Cytorhabdovirus; 17 Production of Virus-Free Chrysanthemum (Chrysanthemum morifolium Ramat)by Tissue Culture Techniques; 18 Long-Term Preservation of Plant Viruses in Cryopreserved; 19 Establishment of White-Backed Planthopper Cell Lines; 20 Biolistic Inoculation of Fruit Trees with Full-Length Infectious cDNA Clones of RNA Viruses; 21 Purification of Total RNAs and Small RNAs from Fruit Tree Leaf Tissues; 22 Diagnosis of Viral Diseases Using Deep Sequencing and Metagenomics Analyses; 23 Immunocapture-Reverse Transcriptase Loop-Mediated Isothermal Amplification Assay for Detection of Plant RNA Viruses; 24 Detection of Tomato Spotted Wilt Virus (TSWV)Infection in Plants Using DAS-ELISA and Dot-ELISA; 25 Tube-Capture (TC)RT-PCR and Multiplex RT-PCR for Diagnosis and Characterization of Viruses in Fruit Trees.; 26 Detection of Cucumber green mottle mosaic virus (CGMMV)in Cucurbitaceous Crop Seeds by RT-PCR; RNA In Situ Hybridization of Detecting Cucumber Mosaic Virus in Shoots of Nicotiana benthamiana Plants; 28 Transmission Electron Microscopic Methods for Plant Virology; B-20263 Exogenous melatonin (MT)enhances salt tolerance of okra (Abelmoschus esculentus L.)plants by regulating proline, photosynthesis, ion homeostasis and ROS pathways

Libro

Plant biology and crop breeding have produced an immense amount of data in recent years, from genomics to interactome and beyond. Bioinformatics tools, which aim at analyzing the vast quantities of data produced by biological research and processes, have developed at a rapid pace to meet the challenges of this vast data trove. The resulting field of bioinformatics and systems biology is producing increasingly rich and transformative research.

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