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Molecular Microbiology

BIOM2413
Two hours English

Molecular Microbiology

Molecular Microbiology
1 History of Microbial Genetic: / - General introduction and overview of the course synopsis. / - The importance of microbial genetics. / - Survey of the current status of microbial genetics (bacteria, fungi, viruses, and other microorganisms). / - Microbial Cell Structure and Function o Evolution of Microbes and Microbial Diversity
2 Basic concepts of microbial genetics: / - DNA structure and replication DNA(; / - Bacterial genomes structure and basic functions. / - Relationships between the microbial genome and the ribosome in biosynthesis proteins
3 Mutagenesis: / - DNA Mutation and DNA Repair, / - Isolation and characterization of mutants
4 Microbial replication, transcription and translation
5 Adaptation, Gene transfer and its mechanism: / -Cloning vectors, transformation, transduction and lysogeny and, conjugation and conversion)
6 RNA structure , types and Transcription
7 Genetic code
8 Translation
9 Regulation of Gene expression
10 Functional Genomics, Proteomics
11 General and specialized methods in microbial genetics
12 Gene Maps
13 Applications of microbial genetics to various sectors of the medicine, agriculture, food, environment and industry
14 Introduction to Bioinformatics
1.1 Mapped to: K2, K3

describe microbial genome structure, replication and function

Teaching Strategy 1.In-class lecturing where the previous knowledge is linked to the current and future topics. 2.Homework assignments. 3.Discussions (connecting what they learn in the class and applying this information in laboratory). 4. Handout of lecture notes for each topic
Assessment Methods Exams, Assignments, Course activities and Written analyses
1.2 Mapped to: K2, K3

Describe bacterial gene regulation and expression mechanisms

Teaching Strategy 1.In-class lecturing where the previous knowledge is linked to the current and future topics. 2.Homework assignments. 3.Discussions (connecting what they learn in the class and applying this information in laboratory). 4. Handout of lecture notes for each topic
Assessment Methods Exams, Assignments, Course activities and Written analyses
1.3 Mapped to: K2, K3

Explain how mutation occur

Teaching Strategy 1.In-class lecturing where the previous knowledge is linked to the current and future topics. 2.Homework assignments. 3.Discussions (connecting what they learn in the class and applying this information in laboratory). 4. Handout of lecture notes for each topic
Assessment Methods Exams, Assignments, Course activities and Written analyses
1.4 Mapped to: K2, K3

Differentiate between genomics and proteomics

Teaching Strategy 1.In-class lecturing where the previous knowledge is linked to the current and future topics. 2.Homework assignments. 3.Discussions (connecting what they learn in the class and applying this information in laboratory). 4. Handout of lecture notes for each topic
Assessment Methods Exams, Assignments, Course activities and Written analyses
2.1 Mapped to: S2, S3

Interpret the various effects on polymerase chain reaction (PCR) results

Teaching Strategy Students will receive credit for these activities based on their responses to the particular questions and assignments. These will include reading summaries, reflective questions, quizzes
Assessment Methods Evaluation of the topics prepared by students according to the content, arrangement, and covering of the topic. Midterm and final exams. Checking the homework assignments. Course work reports
2.2 Mapped to: S2, S3

Evaluate the various methods for the exploring microbial genetics

Teaching Strategy Students will receive credit for these activities based on their responses to the particular questions and assignments. These will include reading summaries, reflective questions, quizzes
Assessment Methods Evaluation of the topics prepared by students according to the content, arrangement, and covering of the topic. Midterm and final exams. Checking the homework assignments. Course work reports
2.3 Mapped to: S2, S3

Evaluate the steps used in DNA sequencing

Teaching Strategy Students will receive credit for these activities based on their responses to the particular questions and assignments. These will include reading summaries, reflective questions, quizzes
Assessment Methods Evaluation of the topics prepared by students according to the content, arrangement, and covering of the topic. Midterm and final exams. Checking the homework assignments. Course work reports
3.1 Mapped to: V1, V2

To demonstrate independently and with multi-disciplinary teams.

Teaching Strategy Engage student in carrying out internet search. The ability to debate the scientific basis of topics related to safety and occupational health in laboratories. Writing group reports. Solving problems in team. Cooperative learning and application of scientific method in thinking the scientific problem solving. Work as part of a team. Conducting group experiments and writing group reports.
Assessment Methods 1-Oral exams. 2-Evaluation of student essays assignments and search work. 3-Observation of student ethical and moral behavior. 4-Students’ attendance is recorded during lectures. 5-Assessment of the student reports. 6-Grading homework assignments
3.2 Mapped to: V1, V2

To cooperate in providing scientific and technical services in microbiology

Teaching Strategy Engage student in carrying out internet search. The ability to debate the scientific basis of topics related to safety and occupational health in laboratories. Writing group reports. Solving problems in team. Cooperative learning and application of scientific method in thinking the scientific problem solving. Work as part of a team. Conducting group experiments and writing group reports.
Assessment Methods 1-Oral exams. 2-Evaluation of student essays assignments and search work. 3-Observation of student ethical and moral behavior. 4-Students’ attendance is recorded during lectures. 5-Assessment of the student reports. 6-Grading homework assignments
3.3 Mapped to: V3

To demonstrate responsibility and accountability

Teaching Strategy Engage student in carrying out internet search. The ability to debate the scientific basis of topics related to safety and occupational health in laboratories. Writing group reports. Solving problems in team. Cooperative learning and application of scientific method in thinking the scientific problem solving. Work as part of a team. Conducting group experiments and writing group reports.
Assessment Methods 1-Oral exams. 2-Evaluation of student essays assignments and search work. 3-Observation of student ethical and moral behavior. 4-Students’ attendance is recorded during lectures. 5-Assessment of the student reports. 6-Grading homework assignments