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- Below are some of the arguments about the use of transgenic organisms. From your own perspective, explain your answer in the questions in not more than 5 sentences. 1. If you are a farmer would you take the chance of growing crops that are pest resistant? Why or why not? 2. Considering the knowledge gained in genetic engineering, would you try to patronize GMO fruits and vegetables? Why or why not? 3. Is creating or altering genes of an organism a form of Blasphemy to the creator (God)? Why? 4. Is genetic engineering morally permissible or not?I believe that there are many good things that can come out of people getting to design their baby’s genetic material. But there are also many bad things as well. From the article by Bio medical about the pros and cons of having a designer baby it states that a pro is that this type of engineering can “ might help prevent genetic diseases such as Alzheimer’s, Huntington’s Disease, down syndrome, Spinal Muscular Atrophy, and many others”. I think that it is great that we could get rid of Alzheimer’s due to how destructive it can be to the people that suffer it. But I think the other diseases that it can eliminate is horrible due to them making our world a more unique place such as people with autism, Down syndrome. By doing this it could eliminate the whole population of people with disabilities community and make everyone “normal”. Another bad that I found in the article Ethics of designer babies which states that a major flaw for these babies is “designer baby technologies suggest…Give a schematic diagram of how we can Treatment Down's syndrome by using gene therapy? Please answer at your own words,please..
- What are the moral and ethical considerations of using transgenic animals to manufacture various human products?a. Discuss the genetic potential of the cloning of single genes, cells, organs, and entire organisms. Distinguish between plants and animals. Research for recent examples or studies, if any, to support your answer. You may also add the benefits/ usefulness of the results of those certain studies (if available). You can follow this format. Genetic potential of the In plants In animals cloning of: a. Single genes b. Cells c. Organs d. Entire organismsAnswer each of the following questions correctly. a. How PCR may be used for the detection of disease–causing pathogens in a population during COVID Pandemic. For example: It may be used to check if a patient has a COVID virus infection. b. How cloning and expression of certain genes allows for massive production of the desired product. For example: the cloning and expression of insulin in bacteria allows for the mass production of this necessary protein for use by diabetic patients.
- 1. a) If you were at risk of a fatal disease such as Huntington’s disease and only the 95% accurate preliminary genetic test was available, would you take the test? After all, 95% of the time the test would tell you whether you would eventually get Huntington’s disease or whether you did not have to worry about getting this disease. b) The linkage distance between the DNA sequence used in the test and the actual Huntington’ disease locus was 5%. In a large sample of the Venezuelan family, what percentage of people would inherit the DNA sequence but not the Huntington’s allele (i.e. be a false positive test for Huntington’s)? What percentage of that large Venezuelan family would not inherit the DNA sequence but would inherit the Huntington’s allele (i.e., be a false negative test for Huntington’s)?Dolly is the first mammal to have been successfully cloned from an adult cell Which of the following statement/s is/are most relevant to the birth of Dolly? I. It suggests that human could be cloned. II. It proves that specialized cells could be used to create an exact copy of the animal they came from. III. It improves the production of milk, meat, and other products from livestock. IV. It proves that animals could be cloned to have gene mutations that help scientists study diseases that develop in the animals. A. II only B. I and II C. III, and IV D. II, III, and IV Which of the following statements best explain the significance of mitosis and ? A. Both mitosis and meiosis produce diploid cells which responsible for the continuity of life. B. Many single-celled organisms rely on mitosis and meiosis as their primary means of asexual reproduction C. replication, cells have another interesting choice, whether they want to make an identical copy, or do they want to make four half-copies…The idea behind PCR-based diagnostics is that a very small number of microbial genomes in a patient sample can be multiplied by PCR and more easily detected by the clinical team managing the patient’s care. Also, genetic-based diagnostics are very useful for viral infections because we don’t have biochemical tests, etc. to distinguish one virus from another (remember, viruses are metabolically inactive). However, a lot of work goes into the development of these tests. For instance, PCR requires primers that are complementary to the viral genome that is being copied. If primers are complementary to the target genome, what must scientists know to design primers that bind to the viral genome to be copied? (I mean this to be a general question; don’t look up the details of designing primers)
- 2) Transgenic animal refers to an organism whose genome has been altered by the transfer of a gene or genes from another species or breed. Cows, pigs and goats had been modified especially for pharmaceutical purposes. Explain three (3) most used transfection technology for the creation of transgenic animals.Give a schematic diagram of how we can Treatment Down Syndrome by using gene therapy? Please answer at your own words,please..Answer each of the following questions correctly.(2-5 sentences only) A. How cloning and expression of certain genes allows for massive production of the desired product.(Give an specific example) For example: the cloning and expression of insulin in bacteria allows for the mass production of this necessary protein for use by diabetic patients. B. How PCR may be used for the detection of disease–causing pathogens in a population during COVID Pandemic. For example: It may be used to check if a patient has a COVID virus infection.