Zachodniopomorski Uniwersytet Technologiczny w Szczecinie

Administracja Centralna Uczelni - Wymiana międzynarodowa (S1)

Sylabus przedmiotu Bioinformatics:

Informacje podstawowe

Kierunek studiów Wymiana międzynarodowa
Forma studiów studia stacjonarne Poziom pierwszego stopnia
Tytuł zawodowy absolwenta
Obszary studiów
Profil
Moduł
Przedmiot Bioinformatics
Specjalność przedmiot wspólny
Jednostka prowadząca Katedra Nauk o Zwierzętach Przeżuwających
Nauczyciel odpowiedzialny Daniel Zaborski <Daniel.Zaborski@zut.edu.pl>
Inni nauczyciele
ECTS (planowane) 3,0 ECTS (formy) 3,0
Forma zaliczenia zaliczenie Język angielski
Blok obieralny Grupa obieralna

Formy dydaktyczne

Forma dydaktycznaKODSemestrGodzinyECTSWagaZaliczenie
laboratoriaL1 15 1,50,49zaliczenie
wykładyW1 15 1,50,51zaliczenie

Wymagania wstępne

KODWymaganie wstępne
W-1The knowledge of mathematics, biophysics and biochemistry

Cele przedmiotu

KODCel modułu/przedmiotu
C-1Learning about selected biological databases, sequence alignment algorithms, the issues of structural and functional genomics, phylogenetics and structural bioinformatics
C-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses

Treści programowe z podziałem na formy zajęć

KODTreść programowaGodziny
laboratoria
T-L-1Biological literature databases. PubMed2
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept2
T-L-3PCR primer design. Restriction site analysis. The Primer3 and NebCutter programs2
T-L-4Searching nucleotide and protein sequence databases. BLAST2
T-L-5Python programming basics2
T-L-6Biological sequence analysis using Biopython2
T-L-7Microarray data analysis using R and other programs2
T-L-8Multiple sequence alignment. Phylogenetic tree construction. The Mega program1
15
wykłady
T-W-1An introduction to bioinformatics. Nucleotide and protein sequence databases. Data formats2
T-W-2Databases of protein families and structures2
T-W-3Pairwise sequence alignment and sequence database searching2
T-W-4Genome sequence analysis. Genome comparisons2
T-W-5Phylogenetics and phylogenetic trees3
T-W-6Gene expression analysis. Microarray data analysis2
T-W-7Selected issues of structural bioinformatics2
15

Obciążenie pracą studenta - formy aktywności

KODForma aktywnościGodziny
laboratoria
A-L-1Taking classes15
A-L-2Preparation for classes10
A-L-3Preparation for tests10
A-L-4Consultation with the teacher2
37
wykłady
A-W-1Participation in lectures15
A-W-2Consultation with the teacher10
A-W-3Preparation for the examination13
38

Metody nauczania / narzędzia dydaktyczne

KODMetoda nauczania / narzędzie dydaktyczne
M-1Lectures presenting theoretical issues
M-2Multimedia presentations
M-3Practical classes using computers

Sposoby oceny

KODSposób oceny
S-1Ocena podsumowująca: Examination
S-2Ocena formująca: Practical test including classes 1-7
S-3Ocena podsumowująca: Practical test including classes 8-15

Zamierzone efekty uczenia się - wiedza

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiHZ_1-_null_W01
A student describes selected biological databases and basic data formats, explains the principles of sequence alignment, characterizes the types of genomic maps and the methods of genome sequencing, assembling, annotating and comparing, names the most important computer programs supporting the above-mentioned processes.
C-1T-W-1, T-W-2, T-W-3, T-W-4M-1, M-2S-1
WM-WBiHZ_1-_null_W02
A student characterizes basic microarray types, their applications and the stages of DNA microarray data analysis, defines the concept of molecular phylogenetics, characterizes the methods of phylogenetic tree building and evaluation, describes the principles of protein secondary structure prediction, names the most important computer programs used in the above-mentioned analyses.
C-1T-W-5, T-W-6, T-W-7M-1, M-2S-1

Zamierzone efekty uczenia się - umiejętności

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiHZ_1-_null_U01
A student can retrieve necessary information from an appropriate biological database, correctly interprets information contained in database records, efficiently uses basic computer programs for biological sequence analysis and basic Python commands.
C-2T-L-1, T-L-2, T-L-5, T-L-3M-3S-2
WM-WBiHZ_1-_null_U02
A student can retrieve data from biological databases, create simple computer programs for nucleic acid sequence analysis, search for similar sequences in databases and align multiple sequences, construct phylogenetic trees based on appropriately selected sequences and interpret such trees.
C-2T-L-4, T-L-6, T-L-8M-3S-2, S-3
WM-WBiHZ_1-_null_U03
A student uses basic R commands and the Bioconductor package for microarray data analysis, identifies differently expressed genes, creates and interprets heatmaps, uses computer programs for macromolecule visualization and protein structural alignments
C-2T-L-7M-3S-3

Zamierzone efekty uczenia się - inne kompetencje społeczne i personalne

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiHZ_1-_null_K01
A student uses bioinformatics tools for the interpretation of biological phenomena and processes, thus being convinced of their cognizability.
C-2T-L-1, T-L-2, T-L-5, T-L-4, T-L-6, T-L-7, T-L-8M-1, M-2, M-3S-2, S-3
WM-WBiHZ_1-_null_K02
A student is aware of the abundance of biological information available in the Internet databases and the increasing importance of bioinformatics tools in the future.
C-2T-L-1, T-L-2, T-W-1, T-W-3M-1, M-2, M-3S-2
WM-WBiHZ_1-_null_K03
A student is able to effective individual work based on provided teaching materials and information sources available on the Internet
C-2T-L-1, T-L-2, T-L-5, T-L-4, T-L-6, T-L-7, T-L-8M-3S-2, S-3

Kryterium oceny - wiedza

Efekt uczenia sięOcenaKryterium oceny
WM-WBiHZ_1-_null_W01
A student describes selected biological databases and basic data formats, explains the principles of sequence alignment, characterizes the types of genomic maps and the methods of genome sequencing, assembling, annotating and comparing, names the most important computer programs supporting the above-mentioned processes.
2,0
3,0A student names selected biological databases, describes the concept of sequence alignment, names the basic programs for sequence database searching, describes the types of genomic maps, genome sequencing methods, genome assembly stages, and genome annotation, briefly characterizes the goals of comparative genomics
3,5
4,0
4,5
5,0
WM-WBiHZ_1-_null_W02
A student characterizes basic microarray types, their applications and the stages of DNA microarray data analysis, defines the concept of molecular phylogenetics, characterizes the methods of phylogenetic tree building and evaluation, describes the principles of protein secondary structure prediction, names the most important computer programs used in the above-mentioned analyses.
2,0
3,0A student names basic microarray types, the stages of DNA microarray data analysis, defines the concept of molecular phylogenetics, briefly characterizes the structure of a phylogenetic tree, the most important methods of phylogenetic tree construction and validation, names and briefly describes the algorithms for protein secondary structure prediction
3,5
4,0
4,5
5,0

Kryterium oceny - umiejętności

Efekt uczenia sięOcenaKryterium oceny
WM-WBiHZ_1-_null_U01
A student can retrieve necessary information from an appropriate biological database, correctly interprets information contained in database records, efficiently uses basic computer programs for biological sequence analysis and basic Python commands.
2,0
3,0A student uses basic tools for searching selected biological databases, interprets information contained in GenBank records, uses basic options of computer programs for biological sequence analysis and basic Python commands
3,5
4,0
4,5
5,0
WM-WBiHZ_1-_null_U02
A student can retrieve data from biological databases, create simple computer programs for nucleic acid sequence analysis, search for similar sequences in databases and align multiple sequences, construct phylogenetic trees based on appropriately selected sequences and interpret such trees.
2,0
3,0A student uses basic Biopython commands for creating simple scripts for nucleic acid sequence analysis, uses basic options of the BLAST and Clustal programs for database searching and multiple sequence alignment, can construct phylogenetic trees and interpret them
3,5
4,0
4,5
5,0
WM-WBiHZ_1-_null_U03
A student uses basic R commands and the Bioconductor package for microarray data analysis, identifies differently expressed genes, creates and interprets heatmaps, uses computer programs for macromolecule visualization and protein structural alignments
2,0
3,0A student uses basic R commands, can import and export data in R, create R scripts, preprocess microarray data, identify differently expressed genes using appropriate statistical methods, create heatmaps and interpret them
3,5
4,0
4,5
5,0

Kryterium oceny - inne kompetencje społeczne i personalne

Efekt uczenia sięOcenaKryterium oceny
WM-WBiHZ_1-_null_K01
A student uses bioinformatics tools for the interpretation of biological phenomena and processes, thus being convinced of their cognizability.
2,0
3,0A student uses bioinformatics tools for the interpretation of biological phenomena and processes, thus being convinced of their cognizability
3,5
4,0
4,5
5,0
WM-WBiHZ_1-_null_K02
A student is aware of the abundance of biological information available in the Internet databases and the increasing importance of bioinformatics tools in the future.
2,0
3,0A student is aware of the abundance of biological information available in the Internet databases and the increasing importance of bioinformatics tools in the future
3,5
4,0
4,5
5,0
WM-WBiHZ_1-_null_K03
A student is able to effective individual work based on provided teaching materials and information sources available on the Internet
2,0
3,0A student is able to effective individual work based on provided teaching materials and information sources available on the Internet
3,5
4,0
4,5
5,0

Literatura podstawowa

  1. Xiong J., Essential Bioinformatics, Cambridge University Press., Cambridge, 2006
  2. Higgs P. G., Attwood T. K., Bioinformatics and Molecular Evolution, Blackwell Science Ltd., Oxford., 2005
  3. Baxervanis A. D., Ouellette B. F. F. (red.), Bioinformatics. A Practical Guide to the Analysis of Genes and Proteins, John Wiley & Sons, Inc., New York, 2001

Literatura dodatkowa

  1. Hall B. G., Phylogenetic Trees Made Easy. A How-to-Manual, Sinauer Associates, Inc., Sunderland, MA, 2008
  2. Westhead D. R., Parish J. H., Twyman R. M., Bioinformatics. Instant Notes, Taylor & Francis, London & New York, 2002

Treści programowe - laboratoria

KODTreść programowaGodziny
T-L-1Biological literature databases. PubMed2
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept2
T-L-3PCR primer design. Restriction site analysis. The Primer3 and NebCutter programs2
T-L-4Searching nucleotide and protein sequence databases. BLAST2
T-L-5Python programming basics2
T-L-6Biological sequence analysis using Biopython2
T-L-7Microarray data analysis using R and other programs2
T-L-8Multiple sequence alignment. Phylogenetic tree construction. The Mega program1
15

Treści programowe - wykłady

KODTreść programowaGodziny
T-W-1An introduction to bioinformatics. Nucleotide and protein sequence databases. Data formats2
T-W-2Databases of protein families and structures2
T-W-3Pairwise sequence alignment and sequence database searching2
T-W-4Genome sequence analysis. Genome comparisons2
T-W-5Phylogenetics and phylogenetic trees3
T-W-6Gene expression analysis. Microarray data analysis2
T-W-7Selected issues of structural bioinformatics2
15

Formy aktywności - laboratoria

KODForma aktywnościGodziny
A-L-1Taking classes15
A-L-2Preparation for classes10
A-L-3Preparation for tests10
A-L-4Consultation with the teacher2
37
(*) 1 punkt ECTS, odpowiada około 30 godzinom aktywności studenta

Formy aktywności - wykłady

KODForma aktywnościGodziny
A-W-1Participation in lectures15
A-W-2Consultation with the teacher10
A-W-3Preparation for the examination13
38
(*) 1 punkt ECTS, odpowiada około 30 godzinom aktywności studenta
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_W01A student describes selected biological databases and basic data formats, explains the principles of sequence alignment, characterizes the types of genomic maps and the methods of genome sequencing, assembling, annotating and comparing, names the most important computer programs supporting the above-mentioned processes.
Cel przedmiotuC-1Learning about selected biological databases, sequence alignment algorithms, the issues of structural and functional genomics, phylogenetics and structural bioinformatics
Treści programoweT-W-1An introduction to bioinformatics. Nucleotide and protein sequence databases. Data formats
T-W-2Databases of protein families and structures
T-W-3Pairwise sequence alignment and sequence database searching
T-W-4Genome sequence analysis. Genome comparisons
Metody nauczaniaM-1Lectures presenting theoretical issues
M-2Multimedia presentations
Sposób ocenyS-1Ocena podsumowująca: Examination
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student names selected biological databases, describes the concept of sequence alignment, names the basic programs for sequence database searching, describes the types of genomic maps, genome sequencing methods, genome assembly stages, and genome annotation, briefly characterizes the goals of comparative genomics
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_W02A student characterizes basic microarray types, their applications and the stages of DNA microarray data analysis, defines the concept of molecular phylogenetics, characterizes the methods of phylogenetic tree building and evaluation, describes the principles of protein secondary structure prediction, names the most important computer programs used in the above-mentioned analyses.
Cel przedmiotuC-1Learning about selected biological databases, sequence alignment algorithms, the issues of structural and functional genomics, phylogenetics and structural bioinformatics
Treści programoweT-W-5Phylogenetics and phylogenetic trees
T-W-6Gene expression analysis. Microarray data analysis
T-W-7Selected issues of structural bioinformatics
Metody nauczaniaM-1Lectures presenting theoretical issues
M-2Multimedia presentations
Sposób ocenyS-1Ocena podsumowująca: Examination
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student names basic microarray types, the stages of DNA microarray data analysis, defines the concept of molecular phylogenetics, briefly characterizes the structure of a phylogenetic tree, the most important methods of phylogenetic tree construction and validation, names and briefly describes the algorithms for protein secondary structure prediction
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_U01A student can retrieve necessary information from an appropriate biological database, correctly interprets information contained in database records, efficiently uses basic computer programs for biological sequence analysis and basic Python commands.
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-1Biological literature databases. PubMed
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept
T-L-5Python programming basics
T-L-3PCR primer design. Restriction site analysis. The Primer3 and NebCutter programs
Metody nauczaniaM-3Practical classes using computers
Sposób ocenyS-2Ocena formująca: Practical test including classes 1-7
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student uses basic tools for searching selected biological databases, interprets information contained in GenBank records, uses basic options of computer programs for biological sequence analysis and basic Python commands
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_U02A student can retrieve data from biological databases, create simple computer programs for nucleic acid sequence analysis, search for similar sequences in databases and align multiple sequences, construct phylogenetic trees based on appropriately selected sequences and interpret such trees.
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-4Searching nucleotide and protein sequence databases. BLAST
T-L-6Biological sequence analysis using Biopython
T-L-8Multiple sequence alignment. Phylogenetic tree construction. The Mega program
Metody nauczaniaM-3Practical classes using computers
Sposób ocenyS-2Ocena formująca: Practical test including classes 1-7
S-3Ocena podsumowująca: Practical test including classes 8-15
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student uses basic Biopython commands for creating simple scripts for nucleic acid sequence analysis, uses basic options of the BLAST and Clustal programs for database searching and multiple sequence alignment, can construct phylogenetic trees and interpret them
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_U03A student uses basic R commands and the Bioconductor package for microarray data analysis, identifies differently expressed genes, creates and interprets heatmaps, uses computer programs for macromolecule visualization and protein structural alignments
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-7Microarray data analysis using R and other programs
Metody nauczaniaM-3Practical classes using computers
Sposób ocenyS-3Ocena podsumowująca: Practical test including classes 8-15
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student uses basic R commands, can import and export data in R, create R scripts, preprocess microarray data, identify differently expressed genes using appropriate statistical methods, create heatmaps and interpret them
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_K01A student uses bioinformatics tools for the interpretation of biological phenomena and processes, thus being convinced of their cognizability.
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-1Biological literature databases. PubMed
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept
T-L-5Python programming basics
T-L-4Searching nucleotide and protein sequence databases. BLAST
T-L-6Biological sequence analysis using Biopython
T-L-7Microarray data analysis using R and other programs
T-L-8Multiple sequence alignment. Phylogenetic tree construction. The Mega program
Metody nauczaniaM-1Lectures presenting theoretical issues
M-2Multimedia presentations
M-3Practical classes using computers
Sposób ocenyS-2Ocena formująca: Practical test including classes 1-7
S-3Ocena podsumowująca: Practical test including classes 8-15
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student uses bioinformatics tools for the interpretation of biological phenomena and processes, thus being convinced of their cognizability
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_K02A student is aware of the abundance of biological information available in the Internet databases and the increasing importance of bioinformatics tools in the future.
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-1Biological literature databases. PubMed
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept
T-W-1An introduction to bioinformatics. Nucleotide and protein sequence databases. Data formats
T-W-3Pairwise sequence alignment and sequence database searching
Metody nauczaniaM-1Lectures presenting theoretical issues
M-2Multimedia presentations
M-3Practical classes using computers
Sposób ocenyS-2Ocena formująca: Practical test including classes 1-7
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student is aware of the abundance of biological information available in the Internet databases and the increasing importance of bioinformatics tools in the future
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiHZ_1-_null_K03A student is able to effective individual work based on provided teaching materials and information sources available on the Internet
Cel przedmiotuC-2Acquiring the skills at retrieving necessary information from biological databases and using available programs for bioinformatics analyses
Treści programoweT-L-1Biological literature databases. PubMed
T-L-2Nucleotide and protein sequence databases. GenBank, GenPept
T-L-5Python programming basics
T-L-4Searching nucleotide and protein sequence databases. BLAST
T-L-6Biological sequence analysis using Biopython
T-L-7Microarray data analysis using R and other programs
T-L-8Multiple sequence alignment. Phylogenetic tree construction. The Mega program
Metody nauczaniaM-3Practical classes using computers
Sposób ocenyS-2Ocena formująca: Practical test including classes 1-7
S-3Ocena podsumowująca: Practical test including classes 8-15
Kryteria ocenyOcenaKryterium oceny
2,0
3,0A student is able to effective individual work based on provided teaching materials and information sources available on the Internet
3,5
4,0
4,5
5,0