pptx, 8 MB
pptx, 8 MB
docx, 19.94 KB
docx, 19.94 KB
docx, 16.54 KB
docx, 16.54 KB
docx, 17.8 KB
docx, 17.8 KB
docx, 14.66 KB
docx, 14.66 KB
docx, 12.72 KB
docx, 12.72 KB

This fully-resourced lesson describes genetic biodiversity as the number of genes in a population and considers how it can be assessed. The engaging PowerPoint and accompanying differentiated resources have been primarily designed to cover point 4.2.1 (e) of the OCR A-level Biology A specification but also introduces inheritance and codominance so that students are prepared for these genetic topics when they are covered in module 6.1.2

In order to understand that 2 or more alleles can be found at a gene loci, students need to be confident with genetic terminology. Therefore the start of the lesson focuses on key terms including gene, locus, allele, recessive, genotype and phenotype. A number of these will have been met at GCSE, as well as during the earlier lessons in module 2.1.3 when considering meiosis, so a quick quiz competition is used to check on their recall of the meanings of these terms. The CFTR gene is then used as an example to demonstrate how 2 alleles results in 2 different phenotypes and therefore genetic diversity. Moving forwards, students will discover that more than 2 alleles can be found at a locus and they are challenged to work out genotypes and phenotypes for a loci with 3 alleles (shell colour in snails) and 4 alleles (coat colour in rabbits). Two calculations are provided to the students that can calculate the % of loci with more than one allele and the proportion of polymorphic gene loci. At this point, the students are introduced to codominance and again they are challenged to apply their understanding to a new situation by working out the number of phenotypes in the inheritance of blood groups. The lesson concludes with a brief consideration of the HLA gene loci, which is the most polymorphic loci in the human genome, and students are challenged to consider how this sheer number of alleles can affect the chances of tissue matches in organ transplantation

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Module 4: Biodiversity, evolution and disease (OCR A-level Biology A)

The detailed content, exam-style questions, guided discussion points and quiz competitions that are found in each of the 16 paid lessons that are included in this bundle (as well as the 5 free lessons which are named at the bottom) cover the following specification points in module 4 of the OCR A-level Biology A specification: Module 4.1.1 * The different types of pathogen that can cause communicable diseases in plants and animals * The means of transmission of animal and plant communicable pathogens * The primary non-specific defences against pathogens in animals * The structure and mode of action of phagocytes * The structure, different roles and modes of action of B and T lymphocytes in the specific immune response * The primary and secondary immune responses * The structure and general functions of antibodies * An outline of the action of opsonins, agglutinins and anti-toxins * The differences between active and passive immunity, and between natural and artificial immunity * Autoimmune diseases * The principles of vaccination Module 4.2.1 * How biodiversity can be considered at different levels * The random and non-random sampling strategies that are carried out to measure the biodiversity of a habitat * How to measure species richness and species evenness * The use and interpretation of Simpson's Index of Diversity * How genetic biodiversity may be assessed * The ecological, economic and aesthetic reasons for maintaining biodiversity * In situ and ex situ methods of maintaining biodiversity * International and local conservation agreements made to protect species and habitats 4.2.2 * The biological classification of species * The binomial system of naming species and the advantage of such a system * The features used to classify organisms into the five kingdoms * The evidence that has led to new classification systems * The different types of variation * Using the standard deviation to measure the spread of a set of data * Using the Student's t-test to compare means of data values of two populations * Using the Spearman's rank correlation coefficient to consider the relationship of the data * The different types of adaptations to their environment * The mechanism by which natural selection can affect the characteristics of a population over time * How evolution in some species has an impact on human populations If you would like to get an idea of the quality of the lessons that are included in this bundle, then download the following five OCR A lessons which have been uploaded for free: Immunity & vaccinations Reasons for maintaining biodiversity Taxonomic hierarchy and the binomial naming system Adaptations and natural selection Transmission of animal and plant pathogens

£24.50
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Maths in A-level Biology (OCR A-level Biology)

The mathematical element of the OCR A-level Biology A specification is substantial and every year, there are a large number of exam questions that require the application of a range of mathematical skills. Therefore, a clear understanding of how and when to apply these skills is closely related to success on this course and the following calculations are covered by the 9 lessons that are included in this bundle: * Using the chi-squared test to determine significance between the observed and expected results of a genetic cross * Using the Hardy Weinberg principle to calculate the frequency of an allele or a genotype in a population * Calculating the standard deviation to measure the spread of data * Using the Student's t-test to compare the means of two sets of data * Calculating the temperature coefficient * Calculating the proportion of polymorphic gene loci * Using and interpreting Simpson's index of diversity to calculate the biodiversity of a habitat * Using the Spearman's rank correlation coefficient to consider the relationship of the data * The use and manipulation of the magnification formula A revision lesson is also included in this bundle which acts as a fun and engaging revision of the range of calculations

£10.00
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Module 4.2.1: Biodiversity (OCR A-level Biology A)

The biodiversity topic may not be every students' favourite, but questions relating to this module 4 topic are very common in the OCR terminal exams, meaning it can be an area where a lot of marks are unfortunately lost. With this in mind, hours of research and planning has gone into each of the 6 lessons that are included in this bundle to ensure that the slides and accompanying worksheets contain interesting and relevant biological examples that will catch the attention of the students and ultimately increase the likelihood of the retention of the detailed A-level content. There are also regular understanding checks in the form of exam-style questions with accompanying mark schemes to allow the students to assess their progress. The following specification points in module 4.2.1 of the OCR A-level Biology A specification are covered in this bundle: * How biodiversity may be considered at different levels * Random sampling and non-random sampling (opportunistic, stratified, systematic) * How to measure species richness and species evenness * The use and interpretation of Simpson's Index of Diversity * How genetic biodiversity may be assessed, including calculations * The ecological, economic and aesthetic reasons for maintaining biodiversity * In situ and ex situ methods of maintaining biodiversity * International and local conservation agreements made to protects species and habitats The "reasons for maintaining biodiversity" lesson has been uploaded for free so if you download this, you will be able to recognise the quality of lesson that can be found in this bundle

£11.20

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