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  1. Insegnamenti

500810 - MICROBIAL GENETICS

insegnamento
ID:
500810
Durata (ore):
48
CFU:
6
SSD:
GENETICA
Anno:
2024
  • Dati Generali
  • Syllabus
  • Corsi
  • Persone

Dati Generali

Periodo di attività

Primo Semestre (30/09/2024 - 17/01/2025)

Syllabus

Obiettivi Formativi

Achievement of a good command of the main genetic mechanisms which are often conserved from microorganisms to higher eukaryotes.
Full understanding of the main gene expression regulatory systems, of signal transduction pathways and of the physiological signals that drive genetic regulation.
Understanding of the life cycle of a simple biological entity like a phage.

Prerequisiti

Familiarity with Genetics and Molecular Biology concepts is required.
Students are expected to possess a good knowledge of the types and functions of genetic materials and associated nucleic acids (mRNA, tRNA, plasmids...).
Students should also be familiar with the general mechanisms of replication, transcription and translation of the genetic information.

Metodi didattici

Lectures given with the help of power point slides and explanations on the board; wooclap platform will be used to verify the progress of the class. Slides and additional materials (articles, short videos, lectures from keynote scientists) will be available on the KIRO platform.

Verifica Apprendimento

Written test with 8 open questions aimed at verifying the understanding of the concepts.
Two questions are particularly important and require the accurate description of few key experiments that allow to understand the scientific approach to biological problems.
In answering the remaining questions, students must particularly focus on describing the mechanisms underlying each system described.

Testi

- L. Snyder , W. Champness, T.M. Henkin; J.E. Peters. Molecular Genetics of Bacteria, 5th Edition ASM Press.
-L. Snyder & W. Champness, Molecular Genetics of Bacteria, 3rd Edition ASM Press.

Contenuti

Bacterial Genetics: importance and tools. Mutations and their origin. Genetic exchange in Bacteria and its evolutionary role. Transformation and competence in the Gram+ B. subtilis. Plasmids: general properties, replication, partitioning and incompatibility. Conjugation: F plasmid, Hfr strains, Prime factors. From the discovery of conjugation to genetic maps. Genetics of bacteriophages. Lytic phages: developmental cycle, gene expression regulation and replication. Lysogenic phages: the Lambda paradigm. Genetic analysis with bacteria and phages. Benzer experiments with T4. Gene expression regulation: Promoters, RNA polymerase, sigma factors. Positive and negative transcriptional regulation; attenuation & antitermination. Regulons: Catabolite Repression, SOS, heat shock. Bacterial defense systems; CRISPR; Toxin-Antitoxin systems. Signal transduction in bacteria: two-component systems, quorum sensing, phosphorelay and sporulation. Developmental processes in bacteria: Biofilm formation, bistable switches and phenotypic heterogeneity.

Lingua Insegnamento

Inglese

Altre informazioni

A good command of the English language is required.
Students who can demonstrate that are unable to follow the lessons are invited to contact the teacher to design integrative paths to achieve the expected learning objectives

Corsi

Corsi

MOLECULAR BIOLOGY AND GENETICS 
Laurea Magistrale
2 anni
No Results Found

Persone

Persone

CALVIO CINZIA
AREA MIN. 05 - Scienze biologiche
Gruppo 05/BIOS-14 - GENETICA
Settore BIOS-14/A - Genetica
Ricercatore
No Results Found
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