Microbiology: A Systems Approach
5th Edition
ISBN: 9781259706615
Author: Marjorie Kelly Cowan Professor
Publisher: McGraw-Hill Education
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Textbook Question
Chapter 10, Problem 4MCQ
The creation of biological molecules entirely from chemicals is called
- a. recombination.
- b. bioremediation.
- c. sequencing.
- d. synthetic biology.
- e. artificial biology.
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Chapter 10 Solutions
Microbiology: A Systems Approach
Ch. 10.1 - Provide examples of practical applications of...Ch. 10.2 - Prob. 2AYPCh. 10.2 - Describe how gel electrophoresis is used to...Ch. 10.2 - Prob. 4AYPCh. 10.2 - Prob. 5AYPCh. 10.3 - Prob. 6AYPCh. 10.3 - List examples of genetically modified bacteria,...Ch. 10.4 - Prob. 8AYPCh. 10.4 - Prob. 9AYPCh. 10.5 - Outline in general terms the process of DNA...
Ch. 10.5 - Prob. 11AYPCh. 10.5 - Prob. 12AYPCh. 10.5 - Prob. 13AYPCh. 10.6 - Prob. 14AYPCh. 10 - Which of the following is/are not essential to...Ch. 10 - Prob. 2MCQCh. 10 - The function of ligase is to a. rejoin segments of...Ch. 10 - The creation of biological molecules entirely from...Ch. 10 - Which of the following sequences, when combined...Ch. 10 - A region of DNA in a plasmid that is recognized by...Ch. 10 - Prob. 7MCQCh. 10 - Which of the following is a primary participant in...Ch. 10 - Single nucleotide polymorphisms are found in a....Ch. 10 - Microarrays are used to monitor a. the rate of DNA...Ch. 10 - Prob. 11TFCh. 10 - A nucleic acid probe can be used to identify...Ch. 10 - Prob. 13TFCh. 10 - In order to detect recombinant cells, plasmids...Ch. 10 - Plasmids are the only vectors currently available...Ch. 10 - You are a public health official trying to...Ch. 10 - a.Construct a strand of complementary DNA (cDNA)...Ch. 10 - a.Explain whether or not DNA polymerase from a...Ch. 10 - a.Define the term RFLP. Explain how RFLPs are...Ch. 10 - Prob. 5CTQCh. 10 - From chapter 6, figure 6.19. What has happened to...Ch. 10 - Prob. 2VCCh. 10 - Using the words that follow, please create a...
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- Sequencing a genome and identifying individual genes are processes typically carried out - A. via manual transcription by a team of genetic scientists. B. by computers using high-throughput methods. C. by hand with a team of information scientists. D. using experimental processes.arrow_forwardWhich of the following does not conform about Genetic Engineering? * a. used recombinant DNA (rDNA) technology b. direct manipulation of only one gene c. requires complex machinery and innovative minds d. process of manually transferring genetic informationarrow_forwardWhich of the following is true about DNA manipulation? Select the best answer. A. all of these B. DNA has never been transferred between different organisms. C. Transferring DNA from one organism into another always kills the host organism. D. Whole genomes have been manipulated by humans for centuries; now individual genes ca be inserted into different organisms using a variety of techniques. E. DNA can't be manipulated.arrow_forward
- Define the following terms:a. PCRb. DNA microarrayc. chromosomal jumpingd. genome projecte. bioinformaticsarrow_forwardThe ab initio approach finds genes by looking for a. common sequences found in most genes. b. similarity in sequence with known genes. c. mRNA with the use of in situ hybridization. d. mutant phenotypesarrow_forwardSelect the TRUE statement about genetic engineering?" A. The process of direct manipulating of an organism's genes using biotechnology. B. The manipulation of organisms or their components to make useful products. C. Utilizing the natural biological processes of the existing living systems. D. The process of transferring genetic traits through cross-breeding.arrow_forward
- Which statement is true? a. There is no danger involved in recombinant DNA research in humans. b. Stringent safety rules make the use of recombinant DNA research impossible. c. There is no danger in releasing recombinant organisms into the environment. d. Stringent safety rules make the use of recombinant DNA research possible. e. There is no danger involved in recombinant DNA research in bacteria.arrow_forwardWhen using gene therapy to treat an hereditary disease, the idea is to: A. Introduce the correct gene into the patient's DNA B. Inject the patient with a specific protein to cure the disease. C. Blood transfusions from healthy individuals. D. ntroduce mRNA molecules with the correct genetic information to the patient. E. Introduce a virus to the patient that will specifically destroy mutated cells.arrow_forwardThe BLAST program is a tool fora. inserting many DNA fragments into a cell at the same time.b. translating a DNA sequence into an amino acid sequence.c. identifying homology between a selected sequence and geneticsequences in databases.d. all of the above.e. both b and c.arrow_forward
- What is the most challenging issue facing genome sequencing? a. the inability to develop fast and accurate sequencing techniques b. the ethics of using information from genomes at the individual level c. the availability and stability of DNA d. all of the abovearrow_forwardFor each situation, write the letter of the technique that would be most helpful; A. DNA editing A doctor wants to know if a patient has an inherited using CRISPR B. DNA replication using PCR C. DNA analysis through genetic testing D. DNA insertion 16. disorder. I A scientist needs many copies of a gene to conduct an 17. experiment. A genetic engineer wants to replace a defective copy of a gene with a functional copy in a chromosome. 18. into bacteria as a plasmid A medical researcher needs many copies of a protein 19. (insulin) to be produced to use in a medical treatment. A researcher crossed two purebred shrubs of the same species. One produces a fruit with a thin skin, and one produces a fruit with a thick skin. All of the plants resulting from the cross produce fruits with thick skins. Enter one letter in each blanks (19 & 20) to correctly complete the sentences. ninate Education TM, Inc.arrow_forwardWrite the advantages and disadvantages of applying such application in the DNA of an organism. a. Drug delivery systems that are based on bacterial or viral host. b. Producing genetically modified organisms to enhance food production. c. Combining two or more genes in one organism to enhance its traits. d. DNA manipulation of certain species to produce organs for harvesting.arrow_forward
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