Base Knowledge
Not applicable
Teaching Methodologies
Lecture (T) classes target the theoretical foundations of the course, practical (TP) classes target questions resolution and laboratory (PL) classes the application of the acquired concepts. In lecture classes the theoretical concepts exposition will be performed by an expositive methodology. In the practical classes the different chapters exercise sheets are solved. In laboratory classes practical works to identify cell structure and morphology by dying procedures will be performed.
Learning Results
The main objective of the curricular unit (UC) is to provide the students with the fundamental concepts of Cell Biology, so that they are able to understand the concepts covered in the following UC’s in the curricular plan of the degree, in the area of Biological Sciences. It is intended, therefore, that students are able to: i) recognize and apply cell study methodologies in practice; ii) identify and distinguish cell structures and functions in prokaryotic and eukaryotic cells; iii) recognize the structure of cell membranes and the main transport mechanisms; iv) to identify cell reproduction processes in eukaryotes and prokaryotes.
Program
1. The study of the cell
Origin, evolution and cell diversity. Cell study methodologies. Prokaryotic and eukaryotic cells. Methodologies of cell study and characterization. Optical and electronic microscopy fundamentals. Main microscopy applications.
2. Structure of prokaryotic and eukaryotic cells
Morphological characteristics of prokaryotic microorganisms. Cellular structures and function in prokaryotic cells. Cellular structures and function in eukaryotic cells. Latent forms.
3. Cellular processes
The plasma membrane and transmembrane transport. Structure and function of biological membranes. Mobility and asymmetry. Dynamics of membranes. Transport through the membrane: Simple Diffusion, facilitated diffusion, active transport and group translocation. Cell division mechanisms. Reproduction of prokaryotic microorganisms. Cell cycle of eukaryotic organisms. Reproduction in eukaryotic organisms: mitosis, meiosis and gametogenesis.
Curricular Unit Teachers
António Luis Pereira AmaralGrading Methods
The evaluation is continuous and has two components: i) Theoretical component (TA) carried out by 2 intermediate written tests (50% of the AT classification each), or by final exam; ii) Laboratory practical component (AP), comprising continuous evaluation of the student performance in classes (20% of the AP classification), the report and discussion of the results obtained in the experimental works (20%) and 1 final laboratory test (60% of the AP classification). In the written and lab tests, consultation of any documents or the use of electronic equipment is not allowed.
The student must obtain (or have obtained in previous years): i) attendance in laboratory classes with practical coloration works to be admitted to the final practical exam; ii) attendance in 75% of the overall hours of the classes to be admitted to the intermediate written tests (except for working-students).
The classification of the practical component obtained in previous years, if positive, remains valid for the present year. The final classification is given by: 0.75xAT + 0.25xAP. In order to be approved in this course it is required a minimum of 9.5 values in both components (AT and AP).
Internship(s)
NAO
Bibliography
1. Amaral, A.L. (2021). Discipline supporting documents, ISEC (available in InforEstudante).
2. Azevedo, C. (2005). Biologia Celular e Molecular. Lisboa: Lidel (available at ISEC library: 6-15-19)
3. Robertis Jr., E. M. (2005). Biologia Celular e Molecular. Lisboa: Fundação Calouste Gulbenkian (available at ISEC library: 6-15-15)
4. Alberts, B., Johnson, A., Lewis, J., Raff, M., Roberts, K. & Walter, P. (2002). Molecular Biology of the Cell. New York: Garland Science (available at ISEC library: 6-15-20).
5. Pelczar, M.J., Chan, E.C.S., Krieg, N.R. (1996). Microbiologia: conceitos e aplicações, São Paulo: Makron Books (available at ISEC library: 6-14-13 – 14170).
6. Willey, J.M., Sherwood, L., Woolverton, C.J. (2008). Prescott, Harley and Klein’s Microbiology. Boston: McGraw Hill (available at ISEC library: 6-14-8 – 13997).
7. Black. G. (2005). Microbiology: principles and explorations. New Jersey: John Wiley & Sons (available at ISEC library: 6-14-11 – 14165).
8. Ferreira, W.F.C., Sousa, J.C.F., Lima, N. (2010). Microbiologia. Lisboa: Lidel.