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Bioenergetics Lecture 5 summary Susan.Kaminskyj@usask.ca Last time –integrating catabolic metabolism, review catabolism This time –similarities and differences between cellular respiration and photosynthesis –chlorophyll, photosystems II and I (in that order) But first….!
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Electron transport chain pumps H +, making a gradient F o in inner membrane F 1 in matrix Lower H + concentration = higher pH Mitochondrial matrix Higher H + concentration = lower pH Intermembrane space ATP synthase uses the H + gradient to generate ATP Potential energy of falling water used to grind grain Potential energy of ‘falling’ H + used to generate ATP
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ATP synthase uses the H + gradient to generate ATP
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Cellular Respiration
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A series of redox reactions …. PHOTOSYNTHESIS RESPIRATION PHOTOSYNTHESIS
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Respiration vs photosynthesis Mitochondria –All aerobic eukaryotes Oxidation of CHO to CO 2 Generation of NADH and FADH 2 ATP synthesis Chloroplasts –Plants, algae Energy harvest from sunlight Generation of NADPH Reduction of CO 2 to CHO Note NADH (respiration) vs NADPH (photosynthesis) P photosynthesis CHO = carbohydrate
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Photosynthesis is an endothermic redox process Energy source? Useful byproducts? Sunlight Glucose and O 2
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Red and Blue light are absorbed from the incident (white) light, leaving Green to be reflected or transmitted
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Photosynthesis produces oxygen Are all wavelengths photosynthetically active? Spirogyra Photosynthetic Active spectrum
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First, light energy must be captured Illuminated chlorophyll fluoresces (gives off light) if captured light energy is not transferred to another acceptor
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Capture is not enough! Isolated chlorophyll fluoresces if newly captured energy is not transferred In a leaf, the reaction centre transfers the captured energy to a relatively stable intermediate chemical
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The reaction centre is the heart of the photosystem Energy transfer between pigment molecules to a special central pair of chlorophylls (reaction centre) and thence to the primary electron acceptors
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Two parts to the light reaction
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Chemiosmosis can make ATP
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Two parts to the light reaction phaeophytin ferredoxin
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Source and fate of carbon and oxygen in carbohydrates formed by photosynthesis
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Photosystem II makes ATP
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Photosystem I makes NADPH
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NADH vs NADPH NADH catabolism NADPH anabolism (P photosynthesis) For each, the reduced form stores ~ 3 times more energy than ATP
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