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GROWTH OF MICROORGANISMS

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Page 1: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

GROWTH OF MICROORGANISMS

Page 2: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Nutritional Classification

• Based upon energy and carbon sources

• Energy source- electron donors– Phototrophs (light nourishment)– Photosynthesis

Page 3: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Electron Donors• Chemotrophs

• Oxidation

• Reduction

• Breaking & forming bonds

Page 4: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)
Page 5: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Carbon Source

• Autotrophs (self)

• Heterotrophs ( different)

• Combination of terms

Page 6: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Photoautotrophs

• Energy(electrons) source-light

• Carbon source-CO2

• Green & purple Sulfur bacteria

Page 7: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Photoheterotrophs

• Energy source-light

• Carbon source –organic cpds

• Green & purple non Sulfur bacteria

Page 8: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Chemoautotrophs

• Energy source is oxidation -reduction reactions

• Carbon source

• Nitrifying bacteria

Page 9: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Chemoheterotrophs

• Energy & carbon source

• Remove electrons from H in organic cpds

• Final electron acceptor is oxygen

• Final electron acceptor is organic cpd

Page 10: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Physical Requirements for Growth

• Temperature-range– Psychrophiles

– Psychrotrophs

Page 11: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Temperature

• Mesophiles-25-40C

• Thermophiles-50-60C

• Hyperthermophiles

Page 12: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Determination of Range

• Maximum temperature

• Minimum temperature

• Optimum temperature is closer to max

Page 13: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

pH

• Measures acidity or alkalinity

• Bacteria grow best at slightly alkaline pH

• Add buffers to bacterial cultures

• Molds & yeasts lower pH

Page 14: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Osmotic Pressure

• Microbes need water to grow

• Use salt/sugar to preserve food

• Obligate halophiles

• Facultative halophiles

Page 15: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Chemical Requirements for Growth

• Carbon source-50% of dry weight of cell

• Nitrogen source-amino acids, nucleic acids

Page 16: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Minerals

• Trace elements– Small amounts of Fe, Zn, Cu, Co etc.

– Macronutrients-S & P

• Water-medium for chemical reactions

Page 17: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Other Growth Requirements

• Growth factors-essential nutrients

• E. coli needs no growth factors

Page 18: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Other Growth Requirements

• Buffers

• A solidifying agent

Page 19: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Agar Advantages

• Few organisms degrade it

• Liquefies at 100 C

• Liquid until 40-50 C

• Lab-keep liquid at 50 C

• Once solidified, heat to 100 C

• Gelatin– Nutrient for some organisms– Liquefies at 35-37 C

Page 20: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Oxygen Requirements

• Aerobes– Use molecular oxygen for respiration– Superoxide free radicals (O. -)

– Superoxide dismutase- must have

– H2O2 is toxic

Page 21: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Oxygen Requirements

• Facultative anaerobes

Page 22: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Oxygen Requirements

• Obligate anaerobes

Page 23: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Oxygen Requirements

• Aerotolerants

• Microaerophiles

Page 24: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Growth of Bacterial Population

• Binary fission or budding

• Generation time-doubling time

Page 25: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Growth Curve

• Lag phase-preparing to grow

• Log phase

• Stationary phase-growth ceases

• Death Phase

Page 26: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Growth of a Colony

• Mass of cells –pure culture

• Some colonies are distinct

• Mixture of cells in different phases of growth

Page 27: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Growth of a Colony

• Location within colony determines access to oxygen

• Surface cells fully aerobic

• E. coli obtain energy aerobic respiration

• Embedded cells in center-anaerobic

Page 28: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Biofilms

• In nature, microbes in liquid environment

• Cells imbedded in extracellular slime– Excreted by cells

• Type of defense mechanism

Page 29: GROWTH OF MICROORGANISMS. Nutritional Classification Based upon energy and carbon sources Energy source- electron donors –Phototrophs (light nourishment)

Biofilms

• Quorum sensing

• Important role in infections

• Soaps & disinfectants