pptx, 3.05 MB
pptx, 3.05 MB
docx, 14.85 KB
docx, 14.85 KB
docx, 60.04 KB
docx, 60.04 KB
docx, 12.32 KB
docx, 12.32 KB
docx, 16.2 KB
docx, 16.2 KB
docx, 15.48 KB
docx, 15.48 KB

This fully-resourced lesson describes the meaning of the terms stem cell, pluripotency, totipotency, morula and blastocyst. The PowerPoint and accompanying worksheets have been designed to cover points 3.17 (i) and (ii) of the Edexcel International A-level Biology specification and contains discussions about the decisions that the scientific community have to make about the use of stem cells in medical therapies.

The lesson begins with a knowledge recall of the structure of eukaryotic cells and the students have to use the first letters of each of the four answers to reveal the key term, stem cell. Time is then taken to consider the meaning of cellular differentiation, and this leads into the key idea that not all stem cells are equal when it comes to the number of cell types that they have the potential to differentiate into. A quick quiz round introduces the five degrees of potency, and then the students are challenged to use their understanding of terminology to place totipotency, pluripotency, multipotency, oligopotency and unipotency in the correct places on the potency continuum. Although the latter three do not have to be specifically known based on the content of specification point 3.17 (i), an understanding of their meaning was deemed helpful when planning the lesson as it should assist with the retention of knowledge about totipotency and pluripotency. These two highest degrees of potency are the main focus of the lesson, and key details are emphasised such as the ability of totipotent cells to differentiate into any extra-embroyonic cell, which the pluripotent cells are unable to do. The morula, and inner cell mass and trophoblast of the blastocyst are then introduced and used to demonstrate these differences in potency. The final part of the lesson discusses the decisions that the scientific community have to make about the use of embryonic stem cells, adult stem cells and also foetal stem cells which allows for a link to chorionic villus sampling from topic 2.

There is also a Maths in a Biology context question included in the lesson (when introducing the morula) to ensure that students continue to be prepared for the numerous calculations that they will have to tackle in the terminal exams. This resource has been differentiated two ways to allow students of differing abilities to access the work

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Topic 3: Cell structure, Reproduction & Development (Edexcel International A-level Biology)

The locus and linkage, meiosis, differential gene expression and protein transport within cells lessons have been uploaded for free and by downloading these, you will be able to observe the detail of planning that has gone into all of the lessons that are included in this bundle. This intricate planning ensures that the students are engaged and motivated whilst the detailed content of topic 3 (Cell structure, Reproduction and Development) of the Edexcel International A-level Biology specification is covered. The 14 lesson PowerPoints and accompanying resources contain a wide range of activities which cover the following topic 3 specification points: * All living organisms are made of cells * Cells of multicellular organisms are organised into tissues, organs and organ systems * The ultrastructure of eukaryotic cells * The function of the organelles in eukaryotic animal cells * The role of the RER and Golgi apparatus in protein transport within cells * The ultrastructure of prokaryotic cells * Magnification and resolution in light and electron microscopes * The gene locus is the location of a gene on a chromosome * The linkage of genes on a chromosome * The role of meiosis in ensuring genetic variation * Understand how the mammalian gametes are specialised for their functions * The role of mitosis and the cell cycle in growth and asexual reproduction * Calculation of mitotic indices * The meaning of the terms stem cell, pluripotent, totipotent, morula and blastocyst * The decisions that have to be made about the use of stem cells in medical therapies * Cells become specialised through differential gene expression * One gene can give rise to more than one protein through post-transcriptional changes to mRNA * Phenotype is the interaction between genotype and the environment * Epigenetic modifications can alter the activation of certain genes * Some phenotypes are affected by multiple alleles or by polygenic inheritance Due to the detail included in all of these lessons, it is estimated that it will take in excess of 6 weeks of allocated A-level teaching time to complete the teaching of the bundle

£21.00

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