Plant Bioinformatic Methods Specialization

By theetay.com Categories: Coursera
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About Course

Plant Bioinformatic Methods Specialization, The past 15 years have been exciting ones in plant biology. Hundreds of plant genomes have been sequenced, RNA-seq has enabled transcriptome-wide expression profiling, and a proliferation of “-seq”-based methods has permitted protein-protein and protein-DNA interactions to be determined cheaply and in a high-throughput manner. These data sets in turn allow us to generate hypotheses at the click of a mouse or tap of a finger.The Plant Bioinformatics Specialization on Coursera introduces core bioinformatic competencies and resources, such as NCBI’s Genbank, Blast, multiple sequence alignments, phylogenetics in Bioinformatic Methods I, followed by protein-protein interaction, structural bioinformatics and RNA-seq analysis in Bioinformatic Methods II. In Plant Bioinformatics we cover 33 plant-specific online tools from genome browsers to transcriptomic data mining to promoter/network analyses and others. Last, a Plant Bioinformatics Capstone uses these tools to hypothesize a biological role for a gene of unknown function, summarized in a written lab report.This specialization is useful to any modern plant molecular biologist wanting to get a feeling for the incredible scope of data available to researchers. A small amount of R programming is introduced in Bioinformatic Methods II, but most of the tools are web applications. It is recommended that you have access to a laptop or desktop computer for running these as they may not work as mobile applications on your phone or tablet.

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What Will You Learn?

  • Genetic Analysis
  • Bioinformatics Analysis
  • Evolution
  • Comparative Genomics

Course Content

01. Bioinformatic Methods I

  • 002 02_course-logistics_instructions.html
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  • 005 03_introduction.mp4
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  • 008 04_lecture.mp4
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  • 010 05_lecture-materials_instructions.html
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  • 012 01_lab-1-exploring-ncbi_instructions.html
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  • 013 02_lab-1-quiz_exam.html
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  • 016 03_lab-discussion.mp4
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  • 019 04_summary.mp4
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  • 022 01_introduction.mp4
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  • 025 02_lecture.mp4
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  • 027 03_lecture-materials_instructions.html
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  • 029 01_lab-2-advanced-blast-and-comparative-genomics_instructions.html
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  • 030 02_lab-2-quiz_exam.html
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  • 033 03_lab-discussion.mp4
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  • 036 04_summary.mp4
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  • 039 01_introduction.mp4
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  • 042 02_lecture.mp4
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  • 044 03_lecture-materials_instructions.html
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  • 048 01_lab-3-multiple-sequence-alignment_instructions.html
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  • 049 02_lab-3-quiz_exam.html
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  • 052 03_lab-discussion.mp4
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  • 055 04_summary.mp4
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  • 059 01_introduction.mp4
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  • 062 02_lecture.mp4
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  • 064 03_lecture-materials_instructions.html
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  • 068 01_lab-4-phylogenetics_instructions.html
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  • 069 02_lab-4-quiz_exam.html
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  • 072 03_lab-discussion.mp4
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  • 075 04_summary.mp4
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  • 078 01_introduction.mp4
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  • 081 02_lecture.mp4
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  • 083 03_lecture-materials_instructions.html
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  • 086 01_lab-5-selection-analysis_instructions.html
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  • 087 02_lab-5-quiz_exam.html
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  • 090 03_lab-discussion.mp4
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  • 093 04_summary.mp4
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  • 096 01_introduction.mp4
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  • 099 02_lecture.mp4
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  • 001 01_acknowledgements_instructions.html
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  • 101 03_lecture-materials_instructions.html
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  • 103 01_lab-6-next-generation-sequencing-applications-rna-seq-and-metagenomics_instructions.html
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  • 104 02_lab-6-quiz_exam.html
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  • 107 03_lab-discussion.mp4
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  • 110 04_summary.mp4
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  • 111 01_review-modules-5-7_exam.html
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  • 112 02_final-assignment-instructions_instructions.html
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  • 113 03_final-assignment_exam.html
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  • links.txt
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02. Bioinformatic Methods II

03. Plant Bioinformatics

04. Plant Bioinformatics Capstone

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