Udemy - Practical Bioinformatics I 2021

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[ CourseMega.com ] Udemy - Practical Bioinformatics I 2021
  • Get Bonus Downloads Here.url (0.2 KB)
  • ~Get Your Files Here ! 1. Brief Introduction to Biological Data
    • 1. Brief introduction to DNA, RNA, and Protein.mp4 (26.7 MB)
    • 1. Brief introduction to DNA, RNA, and Protein.srt (6.3 KB)
    • 2. Introduction to the course.html (0.2 KB)
    2. Sanger Sequencing
    • 1. The Sanger Sequencing Method.mp4 (9.8 MB)
    • 1. The Sanger Sequencing Method.srt (2.9 KB)
    • 1.1 Human Genome Project_ Sequencing the Human Genome _ Learn Science at Scitable.pdf (1.1 MB)
    • 2. Technical Troubles and Causes.mp4 (25.7 MB)
    • 2. Technical Troubles and Causes.srt (5.9 KB)
    • 2.1 MAN0014435_Trbleshoot_Sanger_seq_data_UB.pdf (1.9 MB)
    • 3. Visualize Trace Files using Teal.mp4 (58.2 MB)
    • 3. Visualize Trace Files using Teal.srt (4.7 KB)
    • 3.1 Tracy.pdf (1.6 MB)
    • 4. Visualize Trace Files using Teal (2).mp4 (52.5 MB)
    • 4. Visualize Trace Files using Teal (2).srt (3.8 KB)
    • 5. Edit Trace Files using MEGA.mp4 (95.9 MB)
    • 5. Edit Trace Files using MEGA.srt (5.5 KB)
    • 5.1 MEGA11.pdf (518.6 KB)
    • 6. Edit Trace Files using Finch TV.mp4 (94.9 MB)
    • 6. Edit Trace Files using Finch TV.srt (3.9 KB)
    • 7. Sanger sequencing and trace editor software.html (0.2 KB)
    • Udemy Files
      • 1.svg (64.8 KB)
      • 2.svg (67.4 KB)
      • 3.svg (67.6 KB)
      • 3MBP.fasta (3.8 MB)
      • 4.svg (68.0 KB)
      • 4Tracks.png (1.1 MB)
      • 5reads example.fastq (0.6 KB)
      • 5reads example2.fastq (0.6 KB)
      • 60Ns.fasta (0.8 KB)
      • 6reads example.fastq (0.8 KB)
      • 6reads example2.fastq (0.8 KB)
      • CP058348.gb (8.7 MB)
      • GCF_000146045.2_R64_genomic.gbff (31.3 MB)
      • GCF_000146045.2_R64_genomic_chI,II,III.gbff (3.5 MB)
      • GCF_000146045.2_R64_genomic_chI.gbff (569.8 KB)
      • GFF.gff3 (1.7 KB)
      • Galaxy5-[Filter_Tabular_on_data_3].bed (0.0 KB)
      • Genome-Extract_features.fasta (44.7 KB)
      • HBB.ffn (72.6 KB)
      • HBB.gb (155.3 KB)
      • HBBRefSeq.gb (173.8 KB)
      • HBB_refseq_protein.fasta (2.3 KB)
      • HBB_refseq_transcript.fasta (8.2 KB)
      • IDs-seqtksubseq.txt (0.1 KB)
      • NM_000518.5.fasta (0.7 KB)
      • REF.fasta (10.0 KB)
      • Remove Adaptors.fasta (0.3 KB)
      • SNP_K-seqtk_listhet.fasta (0.5 KB)
      • SNPs-seqtk_listhet.fasta (0.5 KB)
      • Saccharomyces_cerevisiae.R64-1-1.51.chromosome.I.gff3 (97.0 KB)
      • Saccharomyces_cerevisiae.R64-1-1.51.gff3 (5.4 MB)
      • Saccharomyces_cerevisiae.R64-1-1.dna.chromosome.I.fa (228.6 KB)
      • Saccharomyces_cerevisiae.R64-1-1.dna.toplevel.fa (11.8 MB)
      • Sample.fas (1.4 KB)
      • Seqtk_subseq_bed.bed (0.0 KB)
      • Seqtk_subseq_ids_list.txt (0.0 KB)
      • Seqtk_subseq_known_seq.fasta (0.2 KB)
      • Seqtk_subseq_sequencing_file.fasta (10.0 KB)
      • WED.txt (1.4 KB)
      • WED1.txt (1.1 KB)
      • XM_002822127.4.fasta (0.7 KB)
      • ad-bias.2.vcf (2.6 KB)
      • ad-bias.vcf (2.5 KB)
      • adaptors.txt (0.2 KB)
      • bedtools SubtractBed A file.bed (0.0 KB)
      • bedtools SubtractBed B file.bed (0.0 KB)
      • bedtools complement - chromosomeSize.txt (0.1 KB)
      • bedtools flank - chromosomeSize.txt (0.0 KB)
      • clustalo-I20210616-123644-0394-75862866-p2m.clustal_num (12.6 KB)
      • cutadapt_FASTQ.fastq (1.9 KB)
      • cutadapt_f_adaptor.fasta (0.0 KB)
      • cutadapt_f_and_r_adaptor.fasta (0.1 KB)
      • cutadapt_output.fasta (0.7 KB)
      • cutadapt_r_adaptor.fasta (0.0 KB)
      • exons.fasta (0.6 KB)
      • extractfeatoutseq.fasta (26.6 KB)
      • fastq
        • fastq-illumina.fastq (0.7 KB)
        • fastq-sanger.fastq (0.7 KB)
        • fastq-solexa.fastq (0.7 KB)
      • index.png (342.3 KB)
      • index.svg (90.3 KB)
      • index2.png (126.5 KB)
      • index2.svg (82.8 KB)
      • manual-BED-seqtksubseq.bed (0.1 KB)
      • merge.bed (0.1 KB)
      • outfeat.txt (38.8 KB)
      • outseq.fasta (0.3 KB)
      • sample.abi (322.8 KB)
      • sample.fastq (2.9 KB)
      • sample.scf (140.6 KB)
      • samtools view - read1.fastq (1.2 KB)
      • samtools view - read2.fastq (1.2 KB)
      • samtools view - regions.bed (0.0 KB)
      • samtools view-read1.fastq (1.2 KB)
      • samtools view-read2.fastq (1.2 KB)
      • samtools view-reference.fasta (1.0 KB)
      • seqdump.fasta (61.5 KB)
      • seqtksubseq-FASTA.fasta (99.4 KB)
      • seqtksubseq.docx (56.8 KB)
      • sequence.fasta (3.8 MB)
      • skipredundant.fasta (1.3 KB)
      • toy.sam (0.8 KB)
      • trimest.fasta (1.1 KB)
      • view.001.sam (5.0 KB)
      • 3. High-throughput Sequencing
        • 1. Illumina and Ion Torrent Sequencing Platforms.mp4 (22.6 MB)
        • 1. Illumina and Ion Torrent Sequencing Platforms.srt (5.5 KB)
        • 1.1 High-Throughput Sequencing Technologies.pdf (1.3 MB)
        • 2. Pacific Biosciences and Nanopore sequencing platforms.mp4 (21.3 MB)
        • 2. Pacific Biosciences and Nanopore sequencing platforms.srt (4.6 KB)
        • 3. Use of High-Throughput Sequencing in Genomics and Epigenomics.mp4 (19.3 MB)
        • 3. Use of High-Throughput Sequencing in Genomics and Epigenomics.srt (4.8 KB)
        • 3.1 Chromatin accessibility and the regulatory epigenome.pdf (1.6 MB)
        • 3.2 Towards a comprehensive catalogue of validated and target-linked human enhancers.pdf (3.2 MB)
        • 4. Use of High-Throughput Sequencing in Transcriptomics, Metagenomics, and Cancer.mp4 (28.0 MB)
        • 4. Use of Hi

Description

Practical Bioinformatics I 2021



https://CourseMega.com

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 3.19 GB | Duration: 6h 27m
Biological Data Manipulation
What you'll learn
Sanger sequencing method and working with trace files
Common High-throughput sequencing platforms, methods, and applications
Common sequence, feature, alignment, and variation files
Extract, convert, split, merge, and/or remove sequences, features, alignments, and/or variations
Using more than 40 (currently 43) bioinformatics programs in addition to explaining their parameters
Using more than 20 (currently 21) bioinformatics programs without explaining their parameters
Different ways of using biological data in different researches (more than 30 papers are available)
Requirements
Internet connection and a web browser.
Description
Learning many tools and manipulation methods helps you to accurately understand files, their components, and their outputs, thus broadening your horizons in bioinformatics applications in general.

Practical applications will be on nucleic acids

The programs used are popular, free, and online (majority) or software installed on all operating systems

The first part discusses the DNA Sanger Sequencing because of its great importance so far despite the old method, and we will talk in this part about:



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Udemy - Practical Bioinformatics I 2021


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seeders:8
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Udemy - Practical Bioinformatics I 2021


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