⑨
⑧
- glycolysis > net + 2ATP Ephosphorylation
substrate-level
"lI oMOSPeedinganimas
-
~
+ 2 reduced NADP
ptane death
S 2
denitrification glucose
onoients V
ammonification glucose-6-P
prepare
+ nitrites -
nitrates
I
ammoniuis fructose-1-P
2ATP
photosynthetic pigments nitrification
hexose" 1 , 6-biP
cartenoids ingested x2trise-P Split
Chlorophyl A/B lost
Ifeaces
as
00 accessory pigments Oxidise
·
0 00000o N= 1 F+ R) intermediate
IIIII
00000 X2 2ATP
O
8000 porphyrin ring 2 reduced NAD
·
-
+
T
S
S
"
⑧
O
⑧ I
(paralell to surface) absorbs Xantrophylls net
lost to
g
production
·
hydrocarbon
lacts as
tail
anchory
different
wavelengths
respiration x2 pyruvate pyruvate ! 2ATP
1
carbon aerobic
anaerobic
CO2 + RuBP fixation
↑ -
6 20 + 6202 CoHi206 602 + rubisco GC intermediate *
T
other organic
molecule Iyruvate
r 5 Pyruvate + reduced NAD
molecules
A ATP x2Gp
V
x2 triose Calvin Acetate
phosphater
link reachon
cycle ~
cyclic phosphorylation
2e S 2
reduced
acetyICOA
I lactate + Oxidised NAD
-
<
&
-
&
N -
5-(molecule
&
~
Chemi
~osmosis
NADD 4- (molecule
4
L (coenzyme Krebs
ATP
light NADP cycle NAD
ADP + Pi & energ Y reduced NAD
↳7↓
↑
removed via. blood to the liver
-↑
reduced FAD S
Photophosphorylation J L ~
CO2
photoionisation V FAD
ATP where it is converted back to
electrons are
glycogen
exited remitted PSI
photo hydrolysis Final electron
debt)
light W
Y 2H20 - 4H
+
+ 4e + 02 of water H
+
sk
acceptor loxygen
energy ↓ ↓
ADD
02 + 2 +2H + - H20
PSIT Ht
we
respiration photosynthesis
z
NAD
z
NADPlant
Phosphory
Oxidative H
H
+
space
embrane