Difference between revisions of "Jong Bhak's Genomics Syllabus"
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<div style="word-break: keep-all; margin: 0cm 0cm 8pt; line-height: 160%"><span style="font-size:24px"><strong><span style="color:black">(No mid-term exam)</span></strong></span></div> | <div style="word-break: keep-all; margin: 0cm 0cm 8pt; line-height: 160%"><span style="font-size:24px"><strong><span style="color:black">(No mid-term exam)</span></strong></span></div> | ||
− | <div style="word-break: keep-all; margin: 0cm 0cm 8pt; line-height: 160%"><span style="color:# | + | <div style="word-break: keep-all; margin: 0cm 0cm 8pt; line-height: 160%"><span style="color:#FF0000"><span style="font-size:24px"><strong>* This syllabus can be changed any time in any year!</strong></span></span></div> |
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Revision as of 12:31, 15 September 2018
Weekly Schedule
Week |
Contents |
01 |
Introduction to Jong Bhak's genomics course What is life?, What is information?, What is the universe? (as information processing objects) |
02 |
What is Sequencing in Genomics and Omics? (as an approach of understanding life) Sequencing: Sanger, NGS, Methyl-seq, ATAC-seq |
03 |
What is alignment?, What is genome assembly?, What is functional annotation for Big data processing in biology? Open source tools, concepts of alignment of DNA sequences. |
04 |
How molecules and cells propagate in the universe? Evolution. Close species Comparative Genomics (CSCG) for diverse genome evolution. |
05 (2016.10.07) |
Human genomes KPGP, KOREF, The first Korean genome
|
06 (2016.10.08) |
Genome analyses cases |
07 |
Genome analyses cases [[Tiger genomes]] |
08 |
Genome analyses cases |
09 |
[[Transcriptome]]: Genome analyses cases (horse transcriptome) |
10 |
Curing Cancer using genomics (Oncomics) Analysing disease genomes |
11 |
Curing Cancer using genomics (Oncomics) Diffuse type cancer analyses. |
12 |
Curing Aging using genomics (Geromics) |
13 |
Curing Aging using genomics (Geromics) Aging related keywords and genes |
14 |
Epigenomics (Environmental genome) |
15 |