Studying at the University of Verona

Here you can find information on the organisational aspects of the Programme, lecture timetables, learning activities and useful contact details for your time at the University, from enrolment to graduation.

This information is intended exclusively for students already enrolled in this course.
If you are a new student interested in enrolling, you can find information about the course of study on the course page:

Laurea in Scienze e tecnologie viticole ed enologiche - Enrollment from 2025/2026

The Study Plan includes all modules, teaching and learning activities that each student will need to undertake during their time at the University.
Please select your Study Plan based on your enrollment year.

2° Year  activated in the A.Y. 2017/2018

ModulesCreditsTAFSSD
12
B/C
AGR/15
12
B
AGR/03
Training
6
F
-

3° Year  activated in the A.Y. 2018/2019

ModulesCreditsTAFSSD
12
B/C
AGR/15
12
B/C
AGR/11 ,AGR/12
Prova finale
3
E
-
activated in the A.Y. 2017/2018
ModulesCreditsTAFSSD
12
B/C
AGR/15
12
B
AGR/03
Training
6
F
-
activated in the A.Y. 2018/2019
ModulesCreditsTAFSSD
12
B/C
AGR/15
12
B/C
AGR/11 ,AGR/12
Prova finale
3
E
-

Legend | Type of training activity (TTA)

TAF (Type of Educational Activity) All courses and activities are classified into different types of educational activities, indicated by a letter.




S Placements in companies, public or private institutions and professional associations

Teaching code

4S02027

Coordinator

Mario Pezzotti

Credits

6

Language

Italian

Scientific Disciplinary Sector (SSD)

AGR/07 - AGRICULTURAL GENETICS

Period

II sem. dal Mar 1, 2018 al Jun 15, 2018.

Learning outcomes

The course aims at illustrating principles of genetic transmission at molecular, cellular and population level. Mendelian, molecular and population genetics elements will be taught. Existing traditional grapevine breeding methods, based on natural and induced genetic variability, and modern plant breeding instruments, genomic based, will be reviewed.

Program


• Genetics meaning and its impact on the modern era.
• Genetics, biology and biotechnology
• Genetics grounds on variation
• The Early Concepts of Heredity.
• Mendel's Laws of Inheritance.
• Chromosome Theory of Heredity,
• Linkage and Linear Arrangement of Genes,
• Genetic Recombination and Mechanism,
• Gene Interactions,
• Multiple Alleles,
• Genes and Environment,
• Genetic Determination of Quantitative Traits ,
• Genetic Basis of Sex Determination,
• Genes in Human Heredity
• Chromosomes, Genes, and DNA,
• Gene Mutations,
• DNA Content and Variation,
• Gene Structure and Concept,
• Mutagenesis,
• Gene Function,
• General Nature of the Genetic Code,
• Specific Nature of the Genetic Code,
• Transfer and Translation of Genetic Information,
• Regulation of Gene Activity,
• Chromosome Rearrangements,
• Evolution of Diploids and Polyploids,
• DNA Finds New Ways of Generating Variability,
• Quantitative genetics
• Johanssen and East.
• Environmental variation and genetics.
• Quantitative trait selection
• Hereditability and Selection pressure.
• GXE interaction
• Grapevine genetics and genomics
• Plant breeding methodologies in asexual propagated species.
• Grapevine breeding.
• Modern plant breeding in grapevine

Examination Methods

Learning will be assessed by an oral exam for both attending and non-attending students. To access the oral exam students need to deliver at least a week before the test reports relating to laboratory activities with compulsory attendance.
The aim of the test is to ascertain the extend and the deepness of the knowledge of the topics covered in the program.
The final assessment is expressed in thirtieths.

Students with disabilities or specific learning disorders (SLD), who intend to request the adaptation of the exam, must follow the instructions given HERE