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Photosynthesis
Photosynthesis
• The process by which plants, algae, and some
microorganisms harness solar energy and convert
it into chemical energy.
• Endergonic reaction
• Redox reaction
• Only done by autotrophs
• Glucose used for: fuel own plant respiration
(50%), growth, make other important compounds
(amino acids, cellulose, starch, sucrose)
6CO2 + 6H2O C6H12O6 + 6O2
Photosynthesis Equation
Overall equation: 6CO2 + 6H2O  C6H12O6 + 6O2
Photosynthesis is a Redox Reaction
Redox-reactions
Photosynthesis/Respiration Cycle
Cellular
respiration
CO2 and H2O
ATP (available for
cellular tasks)
Heat energy
Atmospheric Oxygen
Light
• Light is the source of energy for
photosynthesis
– Made of photons—packets of kinetic energy
– Part of electromagnetic spectrum
– 3 types from the sun get to the earth
• Ultraviolet
• Visible
• Infrared
Light
Pigments
• Pigment—Substance that absorbs light energy
• Several types of pigments:
– Chlorophyll a—most abundant, green pigment,
absorb blue/red, reflect green
– Accessory Pigments:
• Chlorophyll b—absorb blue/red, reflect green
• Carotenes—absorb blue, reflect orange/red
• Xanthophylls—absorb purple/blue/ green, reflect
yellow
Pigments
Pigment Color Organisms
Major Pigment
Chlorophyll a
green (or yellow) plants, algae, bacteria
Accessory Pigment
Chlorophyll b
yellow plants, algae
Carotenoids (xanthophylls
and carotenes)
orange, red, yellow plants, algae, bacteria,
archaea
Structure of a leaf
Structure of a leaf
Chloroplasts
• Mainly found in cells in the LEAF
– Lots of surface area to absorb light
– Has abundant water
– Main site of gas exchange
• Exchange occurs through stomata surrounded by guard
cells
– Mainly located in mesophyll
Chloroplasts
Chloroplasts
Chloroplasts
• Stroma—inner fluid with DNA, ribosomes, fluid
• Grana—Stacks of thylakoid
• Thylakoid—Disks, membranes with
photosynthetic pigments
• Photosystem—in thylakoid membrane
– Chlorophyll a (approx. 300 molecules)
• Reaction Center
– Accessory pigments (approx. 50 molecules)
• Antenna pigment to funnel light to reaction center
– Proteins
Chloroplasts
Chloroplasts
Photosynthesis Overview
• Happens in 2 stages
– Light Reactions—convert solar energy into
chemical energy
• Occurs in thylakoid membrane
– Carbon Reactions—use ATP and NADPH to reduce
CO2 to glucose
• Occurs in the stroma
Photosynthesis Overview
Photosynthesis Overview
Light Reactions: Photosystems
What happens if you could capture this
energy?
Light Reactions: Photosystems
Plants capture this energy!
Light Reactions: Photosystems
The Light Reactions
• Photosystem II
– Pigment molecules absorb light and transfer to
reaction center (chlorophyll a)
– Water is split into 2H+ and ½ O2
– Water donates 2 electrons
– Energy “excites” 2 electrons to a higher energy orbital
– Chlorophyll a ejects “excited” electrons to first
electron transport chain (ETC)
– ETC makes a proton gradient from stroma into the
thylakoid space
– ATP synthase uses proton gradient to make ATP
(chemiosmotic phosphorylation)
• Used in carbon reactions
The Light Reactions—Photosystem II
ATP Generation—Photosystem II
The Light Reactions
• Photosystem I
– Pigment molecules absorb light and transfer to
reaction center (chlorophyll a)
– 2 electrons come from first ETC
– Energy “excites” 2 electrons to a higher energy
orbital
– Chlorophyll a ejects “excited” electrons to first
electron transport chain (ETC)
– Electrons are passed to NADP+ to reduce it to
NADPH (used in carbon reactions)
The Light Reactions—Photosystem I
NADPH Generation—Photosystem
I
Making ATP: Photophosphorylation
H+ gradient: as
electrons moved
within membrane,
H+ is pumped into
the thylakoid space
Making ATP: Photophosphorylation
ATP produced: ATP
synthase allows H+
to go down its
concentration
gradient, generates
ATP
ETC vs. Photophosphorylation
Energy source Final Electron Acceptor
The Carbon Reactions
• Also known as: Calvin Cycle, “Dark reactions”
• Occurs in the stroma
• Uses ATP and NADPH to make glucose from CO2
• Calvin Cycle:
– Step 1: Carbon fixation—incorporation of CO2 into an
organic molecule
• CO2 combines with RuBP, using enzyme called rubisco
– Step 2: PGAL Synthesis
– Step3: PGAL makes glucose
– Step 4: Regeneration of RuBP
Calvin Cycle
C3 Plants
• Calvin Cycle = C3 Pathway
• All plants use Calvin Cycle, but some plants ONLY
use C3 pathway
– 95% of plants are this way
• Inefficient—lose some energy to heat
– 30% on the best sunny day
– In Photorespiration rubisco uses O2 instead of CO2 as
a substrate
– Stomates open, O2 diffuses out, CO2 is used
– Hot dry climates, stomates cannot stay open—lost
water, O2 builds up, photorespiration takes over
C4 Plants
• C4—adaptation to help minimize
photorespiration (1% of plants)
• C4 Plants—Separate light reactions and Calvin
Cycle into different cells
– Light reactions and carbon fixation—mesophyll
– CO2 combines with 3 carbon molecule to make 4
carbon—C4
– C4—(malate) moves to bundle sheath cells, rest of
Calvin Cycle
• Bundle sheath cells NOT exposed to O2
C3 and C4 Plant Anatomy
C4 plantC3 plant
Vein
Stoma
Mesophyll
cell
Bundle-
sheath cell Mesophyll
cell
Stoma
Vein
Bundle-
sheath cell
CAM Plants
• Occurs in desert plants (3–4% of plants)
• Only open stomates at night to fix CO2, then
fix again during the day using Calvin Cycle
– Store night time CO2 as malate in vacuoles
– Stomates open, malate to chloroplast, release
CO2, used in Calvin Cycle
• Happens in same cells
Pathway
C3 plant C4 plant CAM plant
Global Warming
Green house effect: radiant heat trapped by CO2
Global Warming
Ozone Depletion
Ozone: O3 (O2 converted to O3) filters out UV rays
Ozone Depletion
Chlorofluorocarbons: release chlorine which destroys
ozone
Antarctica
Ozone
Depletion
Chlorofluorocarbons:
release chlorine which
destroys ozone
Antarctica

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Photosynthesis Updated

Hinweis der Redaktion

  1. Left: “fern” by Jeff Hart. Licensed under a CC-BY 2.0 Generic license. https://www.flickr.com/photos/ipeguy/8806321645 Right: created by Lumen Learning
  2. Image content by Lumen Learning
  3. “Deer in my Compost Pile” by Scott Darbey. Licensed under a CC-BY 2.0 Generic license. https://www.flickr.com/photos/scott_darbey/9232916274
  4. Timeline of Oxygen in the Atmospere . Provided by: wikipedia. Located at: http://upload.wikimedia.org/wikipedia/commons/5/56/Oxygen_atmosphere.png. License: CC BY: Attribution
  5. Image from Boundless
  6. “Chlorophyll a” https://en.wikipedia.org/wiki/Chlorophyll_a “Chlorophyll b” https://en.wikipedia.org/wiki/Chlorophyll_b “Carotenoid” https://en.wikipedia.org/wiki/Carotenoid
  7. Image from Boundless
  8. “Leaf Structure” by Zephryris. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Leaf_Structure.svg
  9. “Leaf Tissue Structure” by Zephyris. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Leaf_Tissue_Structure.svg
  10. “Leaves Snipe Dale” on Wikimedia Commons. Licensed under a CC-BY-SA 3.0 Unported license. https://commons.wikimedia.org/wiki/File:Leavessnipedale.jpg “Leaf Tissue Structure” by Zephyris. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Leaf_Tissue_Structure.svg “Leaf Spongy Mesophyll” by Markus Nolf. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Leaf_spongy_mesophyll.jpg
  11. “Chloroplast” by Kelvinsong. Available under a CC-0 1.0 Universal Public Domain Dedication. https://commons.wikimedia.org/wiki/File:Chloroplast_(borderless_version)-en.svg
  12. Left: “Chloroplast New” by It’sJustMe. Released into the public domain by copyright holder. http://commons.wikimedia.org/wiki/File:Chloroplast-new.jpg Right: “Helical granum” by Kelvinsong. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Helical_granum.png “Granum Lables” by Kelvinsong. Licensed under a CC-BY-SA 3.0 Unported license. http://en.wikipedia.org/wiki/File:Granum_labels.svg
  13. Image from Boundless
  14. Images from Boundless
  15. Image Copyright Caroline Hampton. This work is licensed under the Creative Commons Attribution-Share Alike 2.0 Generic Licence. To view a copy of this licence, visit http://creativecommons.org/licenses/by-sa/2.0/ or send a letter to Creative Commons, 171 Second Street, Suite 300, San Francisco, California, 94105, USA. http://www.geograph.org.uk/reuse.php?id=1073862
  16. "Simple photosynthesis overview" by Daniel Mayer (mav) - Own work. Licensed under GFDL via Wikimedia Commons - http://commons.wikimedia.org/wiki/File:Simple_photosynthesis_overview.PNG#mediaviewer/File:Simple_photosynthesis_overview.PNG
  17. Images from Boundless
  18. Image from Boundless
  19. Image from Boundless
  20. Image from Boundless
  21. Image from Boundless
  22. “Thylakoid membrane” by Tameeria. Released into public domain by the copyright holder. https://en.wikipedia.org/wiki/File:Thylakoid_membrane.png
  23. “Thylakoid membrane” by Tameeria. Released into public domain by the copyright holder. https://en.wikipedia.org/wiki/File:Thylakoid_membrane.png
  24. Left: Image from Boundless Right: “Thylakoid membrane” by Tameeria. Released into public domain by the copyright holder. https://en.wikipedia.org/wiki/File:Thylakoid_membrane.png
  25. Image from Boundless
  26. “Calvin Cyle4” by Mike Jones. Licensed under a CC-BY-SA 3.0 Unported license. https://commons.wikimedia.org/wiki/File:Calvin-cycle4.svg
  27. Left: Cross Section of Arabidopsis thaliana” by Nighui Shi. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Cross_section_of_Arabidopsis_thaliana,_a_C3_plant..jpg Right: Cross Section of Maize” by Nighui Shi. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Cross_section_of_maize,_a_C4_plant..jpg
  28. Concepts of Biology. Authored by: Robert Bear, David Rintoul. Provided by: Rice University. Located at: http://cnx.org/contents/d0b6df3d-22b7-411f-8f28-5eeed0e1c82d@6/Photosynthetic_Pathways. Project: OpenStax. License: CC BY: Attribution
  29. Left: “Strawberry Greenhouse” by Joi Ito. Licensed under a CC-BY 2.0 Generic license. http://commons.wikimedia.org/wiki/File:Strawberry_greenhouse.jpg Right: “Earth’s Greenhouse Effect” by US EPA. (Public Domain). http://commons.wikimedia.org/wiki/File:Earth%27s_greenhouse_effect_(US_EPA,_2012).png
  30. Top: “Broeikasgastoename” by NASA. (Public Domain). http://commons.wikimedia.org/wiki/File:Broeikasgastoename1850-2000.png Bottom: “Anticline Trap” by MagentaGreen. Licensed under a CC-BY-SA 3.0 Unported license. http://commons.wikimedia.org/wiki/File:Anticline_trap.svg
  31. “Ozone Altitude UV Graph” by NASA. (Public Domain). http://en.wikipedia.org/wiki/File:Ozone_altitude_UV_graph.svg
  32. Left: REPLACE IMAGE Right: “Ozone Hole is Double Record Breaker” by NASA. (Public Domain). http://en.wikipedia.org/wiki/File:NASA_and_NOAA_Announce_Ozone_Hole_is_a_Double_Record_Breaker.png
  33. Left: “Ozone Hole is Double Record Breaker” by NASA. (Public Domain). http://en.wikipedia.org/wiki/File:NASA_and_NOAA_Announce_Ozone_Hole_is_a_Double_Record_Breaker.png Right: “Ozone CFC Trends” by NCAA. (Public Domain). https://commons.wikimedia.org/wiki/File:Ozone_cfc_trends.png