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Germination of lettuce seeds (photoreversibility)

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Presentation on theme: "Germination of lettuce seeds (photoreversibility)"— Presentation transcript:

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2 Germination of lettuce seeds (photoreversibility)
Reversible R/FR response system controlled by phytochrome (1952) Taiz-Zeiger 2010

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4 Phytochrome: from synthesis to action
red light germination, flower Induction…… synthesis far red light

5 Phytochrome: homodimeric chromoprotein:
apoprotein and phytochromobilin (open chained tetrapyrrol) as chromophor form holoprotein Arabidopsis: 5 phytochrome proteins (phyA - phy E), differ in their apoproteins

6 Bacterial and plant phytochrome structure and function
Taiz-Zeiger 2010

7 PHYA-GFP and PHYB-GFP fusion proteins migrate into the nucleus
Dark Red PHYA-GFP PHYB-GFP Dark Red

8 Phytochrome and GA action mediate light and dark responses
Taiz-Zeiger 2010

9 Light - dark regulation of COP1 activity
HFR1: long hypocotyl in Far-red LAF1: long after far-red light SPA1: phytochrome A suppressor COP1: constitutive photomorphogenesis HY5: long hypocotyl5 Taiz-Zeiger 2010

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11 Life on earth depends on light derived from the sun
PP01021.jpg Life on earth depends on light derived from the sun

12 Photosynthesis PS1 PS2 Light is required to help water reduce NADP+
Light energizes jumps in energy potential to get electrons run through an electron transfer chain NADPH PP0103.jpg PS1 700 nm ATP PS2 680nm H2O 2H+ + 1/2O2

13 Engelmann experiment What is an action spectrum??
And what is an absorption spectrum?? PP0116B.jpg Engelmann experiment

14 Action spectrum vs. absorption spectrum
PP1804.jpg

15 Directionality of blue light induced bending
(Action spectrum) PP1804.jpg

16 Directionality of blue light induced bending
PP1804.jpg

17 Kinetics of blue light effects
Hypocotyl elongation Membrane depolarization PP1804.jpg Gene induction Hypocotyl elongation

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19 Stomata opening regulated by blue light

20 Stomata opening regulated by blue light
Protoplasts dark Protoplasts blue light

21 How are light regulation and metabolism interconnected
Zeaxanthin cycle in guard cells

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23 Dark and light form of carotenoid protein in stomata opening

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25 Measuring irradiation:
chloroplast movements (Lemna) depending on light intensity Dunkelheit Schwachlicht Starklicht

26 Blue light induced bending of coleoptiles
PP1804.jpg

27 phot1 (phototropin1) wild-type blue light PP1804.jpg phot1 mutant

28 PHOT genes in Arabidopsis
LOV-domains change redox status in proteins through (Light, Oxygen, Voltage)  LOV-domains are flavin binding sites (FMN)

29 Phototropism chloroplast stomata movement opening

30 cryptochrome, together with phytochromes
deetiolation of seedlings photoperiodic induced morphoses (e.g. flower induction) circadian rhythms

31 cry1 : inhibition of hypocotyl elongation is insensitiv against blue light
dark blue red WT cry1 phyB WT cry1 phyB WT cry1 phyB

32 cry1 : analysis of cry1 mutants and over-producers
dark blue WT cry1 phyB WT cry1 phyB

33 CRY1 shows similarity to prokaryotic DNA photolyases
70% 30% 70% bacterial photolyase Chromophor 1: Chromophor 2: MTHF (pterin) 8-HDF (deazaflavin) FADH-

34 Adduct formation in FMN in PHOT1

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