1) Recombinant DNA technology and selective breeding are 2 techniques that seek to produce desirable traits within an organism, yet they do so in very different ways. How do the methods of each process differ? What technique would more reliable in producing the desired outcome? Why?
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1) Recombinant DNA technology and selective breeding are 2 techniques that seek to produce desirable traits within an organism, yet they do so in very different ways. How do the methods of each process differ? What technique would more reliable in producing the desired outcome? Why?
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- Do all of them True/False 31) The process by which an electrical charge is used to introduce DNA into a cell to produce a transgenic organism is called electroporation.Answer: 32) Reproductive cloning is used to produce large amounts of mammalian proteins from transgenic agricultural animals such as cattle.Answer: 33) In gene addition, homologous recombination is used to remove the original gene and replace it with the cloned gene.Answer: 34) All stem cells have the potential to differentiateAnswer: 35) A bone marrow transplant involves the transfer of multipotent stem cellsAnswer: 36) The fact that in mammalian systems multiple genes may compensate for the loss of a gene is called gene redundancy.Answer:Genetic engineering utilized to create food sources has been said to be both like and unlike traditional breeding. One way it is different is: It mixes genes from different individuals of the same or similar species It involves whole organisms living in the field It selects from combinations of genes that come together on their own It mixes genes of different organisms such as viruses and crops, or spiders and goatsWhat is DNA fingerprinting? what is its application/s (legally and medically) and limitation/s? How does this technology work? i.e in genomic DNA identification? What is its molecular basis? How does molecular biology paved way for the emergence of this technology?
- Genetic engineering applied for generating food sources is said to be different from traditional breeding. Which of the following is different in the case of genetic engineering? It always involves the mixing of different genes from similar species. It mixes genes of different organisms such as viruses and crops, spiders, and goats. It selects from the combination of genes that recombine on their own It involves the gene of the whole organism.What are some possible research questions and practical applications that could be addressed by creating organisms with artificial chromosomes and synthetic genomes? What might be some potential safety, environmental, social, and ethical concerns about creating organisms with synthetic genomes?1. Do you think genetic engineering is a real solution? What about using genetics as a crime control or treatment method? What ethical issues would this raise? 2. What are some of the problems facing women in the corrections workplace? Are these the same kinds of problems found throughout the criminal justice system are they unique? Explain your answer. 3. What is the relationship between incarceration rates in this country and crime rates? Which seems to be driving the other? Does the research show that the relationship is intuitive or counterintuitive?
- 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)?(20)Genetic engineering utilized to create food sources has been said to be both like and unlike traditional breeding. One way it is different is: (a) It mixes genes from different individuals of the same or similar species (b) It involves whole organisms living in the field (c) It selects from combinations of genes that come together on their own (d) It mixes genes of different organisms such as viruses and crops, or spiders and goatsI 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…
- (11) Genetic engineering utilized to create food sources has been said to be both like and unlike traditional breeding. One way it is different is: (a) It mixes genes from different individuals of the same or similar species (b) It involves whole organisms living in the field (c) It selects from combinations of genes that come together on their own (d) It mixes genes of different organisms such as viruses and crops, or spiders and goatsWhat are some safety and ethical concerns raised by the use of recombinant DNA technology? What are some dangers of introducing genetically engineered organisms into the environment?a) Use the internet to identify current uses of genetic engineering. Explain three different applications: what it is, how it works and its benefits.