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MMG 301 EXAM 1 QUESTIONS ANSWERED CORRECTLY LATEST UPDATE 2026

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Voorbeeld 2 van de 8 pagina's

MMG 301 EXAM 1 QUESTIONS ANSWERED CORRECTLY LATEST UPDATE 2026 What kind of lenses do optical light microscopes have? - Answers Glass lenses What kind of lenses do electron microscopes have? - Answers Magnet lenses Magnification - Answers How big we can make something Resolution - Answers Limits the size of what can be clearly seen Why do we use immersion oil? - Answers Beneficial to light microscopy; increases numerical aperature; not as much light gets through without the oil Resolving Power Equation - Answers (.5 x λ) / numerical aperature List the steps on the Gram Stain - Answers 1. Flood heat-fixed smear with crystal violet for 1 minute 2. Add iodine solution for 1 minute 3. Decolorize with alcohol for 20 seconds 4. Counterstain with safranin for 1-2 minutes List the steps for the Acid-Fast Stain - Answers 1. Small amount of organism suspended in a saline solution is fixed on a slide 2. Slide is flooded with fuchsin and phenol for 3 minutes, gentle rinsed with water 3. Slide is decolorized with 3% HCl in 70% alcohol until color appears to be removed for 2 minutes, rinsed wth water 4. Slide is flooded with methylene blue counterstain for 30 seconds, rinsed with water, air-dried Phase Contrast Microscopy - Answers Converts differences in refractive index within unstained cells into contrast (living cells) Darkfield Microscopy - Answers Utilizes cardoid condenser between light source and specimen (good for looking at extremely thin cells) Describe the hydrophobic head and the hydrophobic tail of a phospholipid - Answers Made of fatty acids linked to a glycerol phosphate by an ester bond Ampithatic Molecule - Answers Molecule that contains both hydrophobic and hydrophilic regions Where are ester lipids found? - Answers Bacteria Eukarya Where are ether lipids found? - Answers Archea Fluid Mosiac & Its Functions - Answers Acts as a barrier, anchor for membrane proteins, site of energy generation Chemiosmosis - Answers Movement from a higher concentration to a lower concentration; releases energy List the three mechanisms - Answers !. Simple transport (driven by energy in the proton motive force) 2. Group Translocation (chemical modification of the transported substance driven by phosphoenolpyruvate) 3. ABC Transporter (periplasmic binding proteins are involved and energy comes from ATP) Uniport - Answers "Passve diffusion" - One molecule passes into the cell without the use of energy Antiport - Answers One nutrient transported in, another nutrient transported out Symport - Answers A nutrient and a different molecule are transported in together O-Specific Polysaccharide - Answers Purple Part of Diagram (LPS) Core Polysaccharide - Answers Pink Part of Diagram (LPS) Lipid A - Answers Yellow Part of Diagram (LPS) What does LPS stand for? What does it act as? - Answers Lipopolysaccharide - Can act as an endotoxin What does peptidoglycan look like in a sample of e. Coli? - Answers Polymer of a tetrapeptide repeating unit G-M-G-M... List the differences between gram (+) and gram (-) peptidoglycan sheets and crosslinks - Answers Gram (+) 1-3 sheets Many crosslinks Gram (-) 10-15+ sheets Few crosslinks Teichoic Acid - Answers Polymer of repeating ribitols or glycerol phosphate Lipoteichoic Acid - Answers Teichoic acids covalently bonded by membrane lipids Why does gram (+) bacteria retain color during a gram stain? - Answers The difference of the thickness of the peptidoglycan allows for the crystal violet stain to remain during decolorization in gram (+) bacteria List the major components in a gram (-) outer membrane - Answers Lipopolysaccharide (LPS) Porins Transport proteins What part of the LPS can be used for diagnostic testing? - Answers O-Specific Polysaccharide What part of the LPS can define a serotype? - Answers O-Specific Polysaccharide Where is the location of the porins in the gram (-) outer membrane? - Answers Span the outer membrane bilayer; trimetric tube-like proteins S-Layers - Answers A paracrystalline array of protein that completely surrounds and protects the cell Paracrystalline - Answers No spaces How can 4-6 million base pairs fit into one cell? - Answers DNA is formed into supercoils by topoimerases to create an aggregated nucleoid Where are the flagella located in spirochetes? - Answers Inside periplasm How do spirochetes move? - Answers "Corkscrew" through a medium because of rotation of the bacterium What is glycogen? - Answers Carbon storage polymer made of glucose How is glycogen utilized? - Answers It is degraded under carbon limitation to provide the cell with carbon and energy List the phosphate reaction - Answers ATP + polyphosphase ⇌ ADP + polyphosphate(n+1) glucose → glucose-6-phosphate + polyphosphate(n-1) What is PHB (poly-beta-hydroxybutyrate) extracted from? - Answers Extracted from poly(3-hydroxybutyrate) by acid hydrolysis Why is PBH (poly-beta-hydroxybutyrate) consumed by a cell? - Answers PHB is consumed to sustain growth and maintain of viability when exogenous supply is insufficient What are the two proteins in gas vesicles? - Answers GvpA and GvpC What are the functions of the gas vesicles? - Answers To provide buoyancy to photosynthetic aquatic prokaryotes What bacteria contains visible sulfur granules? - Answers Thiomargarita bacterium List the equation for sulfur oxidation - Answers H₂S → S⁰ + SO₄² List the steps of the Hammer Experiment - Answers 1. Fill two bottles with a lake sample containing bacteria 2. Hit the stopper of bottle "B" to produce a hydrostatic pressure spike that collapses the gas vesicles inside the bacteria. 3. Bacteria with intact gas vesicles float to the surface (bottle "A"), while bacteria with collapsed vesicles loose buoyancy and sink to the bottom (bottle "B") Bottle "B" must now create new gas vesicles to regain buoyancy. b. Thuringiensis - Answers Procedures proteins toxic to insect larvae b. Subtilis - Answers Model bacterium for endospore formation b. Anthracis - Answers Causes anthrax c. Perfringens - Answers Causes gangrene and food poisoning c. Tetani - Answers Causes tetanus c. Botulinum - Answers Causes botulinum List the sporulation stages - Answers 1. Asymmetric cell division of cytoplasmic membrane 2. Engulfment by mother cell membrane 3. Cortex formation 4. Spore coat formation, Ca², dipicolinic acid 5. Maturation 6. Release Exosporium - Answers Outermost protein covering Sore coats - Answers Several layers of other specific proteins Cortex - Answers Contains nucleoid, ribosomes, and other molecules necessary for germination Capsules - Answers Semi-rigid matrix with a defined border that follows the contour of the cell; excludes India ink particles Attached tightly to the bacterium Slime Layers - Answers Non-rigid matrix that's easily deformed; does NOT exclude India ink particles Can be washed off What are fimbriae needed for? - Answers Important for adhesion of bacterial cells to host cells, each other, and inanimate surfaces Pili - Answers Longer and less numerous than fimbriae; can elongate or retract List the different types of pili - Answers Conjugative Type IV; can be extended outward then retracted Twitching Motility - Answers Cell is dragged forward, pilus retracts List the different flagellar arrangements - Answers Flagellum Diagram - Answers Proteins in MS and C rings made first, followed by mot proteins, then P and L rings Hook proteins followed by filament proteins Be able to distinguish between tumbles and runs of bacteria and their flagella - Answers Reversible Flagella vs. Unidirectional Flagella - Answers What can the capillary tube assay be used for? - Answers Demonstration of chemotaxis Chemotaxis - Answers The sensing of chemicals and resulting movements List the capillary tube action steps - Answers 1. Insertion of capillary tube containing control with no chemical into a bacterial suspension. Concentration gradient begins to form as capillary is inserted 2. The control capillary contains a salt solution that is neither an attractant nor repellant 3. Accumulation of bacteria in a capillary containing an attractant 4. Repulsion of bacteria by a repellant Autotroph - Answers Can synthesize its own food from inorganic carbon sources using light or chemical energy Heterotroph - Answers Cannot manufacture its own food; instead obtains food and energy by taking organic substances (plant/animal matter) Chemolithotroph - Answers Derives energy from chemical reactants and synthesizing all necessary organic compounds from CO₂ Chemoorganotroph - Answers Oxidize chemical bonds in organic compounds as their energy source Phototroph - Answers Manufactures their own food from inorganic substances using light for energy Catabolism vs. Anabolism - Answers Catabolism: Consumes evergy Anabolism: Requires energy Exergonic Reaction - Answers - delta G; energy released Endergonic Reaction - Answers + delta G; energy formed

Voorbeeld van de inhoud

MMG 301 EXAM 1 QUESTIONS ANSWERED CORRECTLY LATEST
UPDATE 2026


What kind of lenses do optical light microscopes have? - Answers Glass lenses
What kind of lenses do electron microscopes have? - Answers Magnet lenses
Magnification - Answers How big we can make something
Resolution - Answers Limits the size of what can be clearly seen
Why do we use immersion oil? - Answers Beneficial to light microscopy; increases
numerical aperature; not as much light gets through without the oil
Resolving Power Equation - Answers (.5 x λ) / numerical aperature
List the steps on the Gram Stain - Answers 1. Flood heat-fixed smear with crystal
violet for 1 minute
2. Add iodine solution for 1 minute
3. Decolorize with alcohol for 20 seconds
4. Counterstain with safranin for 1-2 minutes
List the steps for the Acid-Fast Stain - Answers 1. Small amount of organism
suspended in a saline solution is fixed on a slide
2. Slide is flooded with fuchsin and phenol for 3 minutes, gentle rinsed with water
3. Slide is decolorized with 3% HCl in 70% alcohol until color appears to be removed
for 2 minutes, rinsed wth water
4. Slide is flooded with methylene blue counterstain for 30 seconds, rinsed with water,
air-dried
Phase Contrast Microscopy - Answers Converts differences in refractive index within
unstained cells into contrast (living cells)
Darkfield Microscopy - Answers Utilizes cardoid condenser between light source and
specimen (good for looking at extremely thin cells)
Describe the hydrophobic head and the hydrophobic tail of a phospholipid - Answers
Made of fatty acids linked to a glycerol phosphate by an ester bond
Ampithatic Molecule - Answers Molecule that contains both hydrophobic and
hydrophilic regions
Where are ester lipids found? - Answers Bacteria Eukarya
Where are ether lipids found? - Answers Archea
Fluid Mosiac & Its Functions - Answers Acts as a barrier, anchor for membrane
proteins, site of energy generation
Chemiosmosis - Answers Movement from a higher concentration to a lower
concentration; releases energy
List the three mechanisms - Answers !. Simple transport (driven by energy in the
proton motive force)
2. Group Translocation (chemical modification of the transported substance driven by
phosphoenolpyruvate)
3. ABC Transporter (periplasmic binding proteins are involved and energy comes
from ATP)
Uniport - Answers "Passve diffusion" - One molecule passes into the cell without the
use of energy
Antiport - Answers One nutrient transported in, another nutrient transported out
Symport - Answers A nutrient and a different molecule are transported in together
O-Specific Polysaccharide - Answers Purple Part of Diagram (LPS)
Core Polysaccharide - Answers Pink Part of Diagram (LPS)

, Lipid A - Answers Yellow Part of Diagram (LPS)
What does LPS stand for? What does it act as? - Answers Lipopolysaccharide - Can
act as an endotoxin
What does peptidoglycan look like in a sample of e. Coli? - Answers Polymer of a
tetrapeptide repeating unit

G-M-G-M...
List the differences between gram (+) and gram (-) peptidoglycan sheets and
crosslinks - Answers Gram (+)
1-3 sheets
Many crosslinks
Gram (-)
10-15+ sheets
Few crosslinks
Teichoic Acid - Answers Polymer of repeating ribitols or glycerol phosphate
Lipoteichoic Acid - Answers Teichoic acids covalently bonded by membrane lipids
Why does gram (+) bacteria retain color during a gram stain? - Answers The
difference of the thickness of the peptidoglycan allows for the crystal violet stain to
remain during decolorization in gram (+) bacteria
List the major components in a gram (-) outer membrane - Answers
Lipopolysaccharide (LPS)
Porins
Transport proteins
What part of the LPS can be used for diagnostic testing? - Answers O-Specific
Polysaccharide
What part of the LPS can define a serotype? - Answers O-Specific Polysaccharide
Where is the location of the porins in the gram (-) outer membrane? - Answers Span
the outer membrane bilayer; trimetric tube-like proteins
S-Layers - Answers A paracrystalline array of protein that completely surrounds and
protects the cell
Paracrystalline - Answers No spaces
How can 4-6 million base pairs fit into one cell? - Answers DNA is formed into
supercoils by topoimerases to create an aggregated nucleoid
Where are the flagella located in spirochetes? - Answers Inside periplasm
How do spirochetes move? - Answers "Corkscrew" through a medium because of
rotation of the bacterium
What is glycogen? - Answers Carbon storage polymer made of glucose
How is glycogen utilized? - Answers It is degraded under carbon limitation to
provide the cell with carbon and energy
List the phosphate reaction - Answers ATP + polyphosphase ⇌ ADP +
polyphosphate(n+1)

glucose → glucose-6-phosphate + polyphosphate(n-1)
What is PHB (poly-beta-hydroxybutyrate) extracted from? - Answers Extracted from
poly(3-hydroxybutyrate) by acid hydrolysis
Why is PBH (poly-beta-hydroxybutyrate) consumed by a cell? - Answers PHB is
consumed to sustain growth and maintain of viability when exogenous supply is
insufficient
What are the two proteins in gas vesicles? - Answers GvpA and GvpC

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