Skip to main content

GVB 521 - Nutritional Genetics

Graduate Education Institute · Food Nutrition · Master

ECTS: 7.5 T+P+L: 3+0+0 Departmental Elective
Coordinator: Dr. Öğr. Üyesi İsmail Hakkı TEKİNER

Course Objective

The aim of the course is to explain the effect of the hereditary structure of the individual on the determination of nutritional habits, to evaluate the importance and effect of nutrition to be as far away from the diseases as genetically predisposed and to ensure high quality of life.

Course Content

The contents of this course are genetic variation, the relationship of genes with nutrients, nutrients, gene expression, nutritional requirements according to genetic variation, vitamin metabolism, genetics and environment, genes, diet and plasma lipids, nutrigenomics, gene-nutrient interaction in type-1 diabetes, cancer nutrigenomics, obesity genetics, epigenetic.

Required Resources

Ordovas JM. (2004). Nutrigenetics And Nutrigenomics, World Review of Nutrition and Dietetics,Vol.93.

Fisunoglu M., Buyuktuncer Z., Ozel H., Besler H.T. (2010). Nutritional genomics and Turkish dietitians’practice, Proceedings of The Nutrition Society 69(OCE6). DOI: 10.1017/S0029665110003320

Recommended Resources

Ordovas JM. (2004). Nutrigenetics And Nutrigenomics, World Review of Nutrition and Dietetics,Vol.93.

Fisunoglu M., Buyuktuncer Z., Ozel H., Besler H.T. (2010). Nutritional genomics and Turkish dietitians’practice, Proceedings of The Nutrition Society 69(OCE6). DOI: 10.1017/S0029665110003320

Course Learning Outcomes

  1. Interprets the relationship between genetic factors and nutrition
  2. Explains the relationship between genetics and diet
  3. Relates nutrition-related genetic factors
  4. Explains the genetic background of parameters which differ depending on food allergy, cholesterol level and blood sugar.
  5. Estimate ways to solve gene expression related to diseases

Core Area Distribution

(44) Physical Sciences%30 (52) Engineering and Engineering Trades%35 (72) Health%35

Teaching Methods

ExpressionQuestion-AnswerDiscussionSelf study

Assessment & Evaluation

HomeworkTesting (Essay / Tests: True-Falls, multiple-choice, short answer, matching)

ECTS / Workload

ActivityQuantityDuration (h)Total Workload
Course Duration (Including Exam Week)16348
Out of Class Study Period16696
Midterm166
Quiz000
Assignment31030
Practice000
Final177

Course Schedule

WeekSubjectPreparation
1Biochemical Basics and Introduction to GeneticsCourse notes
2Proteomics, Genomics, Bioinformatics definitions, general characteristics of nucleic acids, enzymes and cell structuresLiterature research
3Nutrients and Effectiveness of Food Components: CarbohydratesLiterature research
4Nutrients and Effectiveness of Food Components: Proteins, VitaminsLiterature research
5Genetic variation: its place and importance in nutritional practicesLiterature research
6Nutrition Genomics and Nutrition GeneticsLiterature research
7Genetic Modification and Genetic Modification Nutrients I, General ReviewLiterature research
8Mid-term exam-
9Genetic Modification and Genetically Modified Foods IILiterature research
10Nutrition and Genomics, Nutrition and Transcriptomics, Nutrition and ProteomicsLiterature research
11Nutrition and Methobolomics, Nutrition and EpigenomicsLiterature research
12Single nucleotide polymorphisms and their relationship with disease risksLiterature research
13Gene: Environmental interactions and coronary heart disease, Cancer nutrigenomicsLiterature research
14Gene-nutrient interaction in Type 1 Diabetes, Obesity genetics, EpigeneticsLiterature research
15General ReviewReading course notes
16Final exam-