(TCO 1) Organisms whose cells are eukaryotic include which of the following?
Molds Yeasts Fungi
All of the above None of the above
Chapter 1, The Early Years of Microbiology section
(TCO 1) The scientific method
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(TCO 1) Organisms whose cells are eukaryotic include which of the following?
Molds Yeasts Fungi
All of the above None of the above
Chapter 1, The Early Years of Microbiology section
(TCO 1) The scientific method consists of four basic steps. Which option below shows the correct sequence of events?
Observe results, generate hypothesis, ask question based upon observations, conduct experiment
Conduct experiment, ask question based upon observations, generate hypothesis, observe results
Generate hypothesis, conduct experiment, observe results, ask question based upon observations
Ask question based upon observations, generate hypothesis, conduct experiment, observe results
None of the above
Chapter 1, The Golden Age of Microbiology section
(TCO 1) Which of the following is not a characteristic of algae?
Correct Answer
They reproduce asexually by budding.
They may be single celled or multicellular. They are photosynthetic.
They are eukaryotic organisms.
They provide much of the world’s oxygen.
Chapter 1, The Early Years of Microbiology section
(TCO 1) Which of the following scientists provided evidence in favor of the concept of spontaneous generation?
Needham Redi Spallanzani Buchner Pasteur
Chapter 1, The Golden Age of Microbiology section
(TCO 2) Archaea are similar to bacteria in that . they do not have peptidoglycan in their cell walls
their cell membranes contain branched hydrocarbon chains they are not known to cause disease
they are a variety of shapes including cocci, bacilli, spirals, or pleiomorphic they are similar to bacteria in all the ways listed above
Chapter 11, Survey of Archaea section
Question 6
2 / 2 pts
(TCO 2) Photosynthetic bacteria . produce glucose and oxygen
may also be nitrogen fixers have chloroplasts
cannot tolerate oxygen in their environment all have heterocysts
Chapter 11, Survey of Bacteria section
(TCO 2) Which of the following is not a component of bacterial cell walls? Peptidoglycan
Lipoteichoic acids Mycolic acid Tetrapeptide
Tubulin
Chapter 3, Cell Structure and Function
(TCO 2) Bacterial cell walls that are resistant to drying contain . carbohydrates
amino acids lipopolysaccharide tubulin
waxes
Chapter 3, Cell Structure and Function
(TCO 2) Which of the following is not associated with the nucleus of a eukaryotic cell?
Chromatin
Cristae Histones Nucleoplasm Nucleolus
Chapter 3, Cell Structure and Function
(TCO 2) Which of the following bacterial cell structures plays an important role in the creation of biofilms?
Glycocalyces Flagella Fimbriae
Pili
Both fimbriae and glycocalyces Chapter 3, Cell Structure and Function
(TCO 2) 4) Both mitochondria and chloroplasts have inner membranes with much
greater surface area than their outer membranes. Discuss the contribution of the extensive inner membranes to the roles of these organelles. (10 points)
Your Answer:
Both the mitochondria and chloroplasts are to be considered as primitive organelles, they are able to sustain life, energy production, synthesis and transport of material and maintaining their structure. The mitochondrial membrane consists of small structures called Cristae. Cristae is the primary site for ATP synthesis and the maintenance of the proton gradient in the mitochondria. Due to the fact that cells do require a lot of energy,
that is why there are multiple mitochondria's in a cell. As for the chloroplast inner membrane this is the primary site for photosynthesis. The inner membrane has the ability to signal fatty acids and lipids. One of the major functions of this inner membrane is the role in signaling transduction.
Chapter 3
Both organelles use metabolic processes embedded in lipid membranes to produce cellular energy. The cristae of mitochondria produce ATP. The thylakoids of chloroplasts are the sites of light energy capture and conversion to cellular energy. The extensive surface area of the folded inner membranes allows both organelles to produce much more energy than would otherwise be possible.
Quiz Score: 26 out of 30
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