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  4. Spatially and genetically distinct control of seed germination by phytochromes A and B
 
research article

Spatially and genetically distinct control of seed germination by phytochromes A and B

Lee, Keun Pyo
•
Piskurewicz, Urszula
•
Tureckova, Veronika
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2012
Genes & Development

Phytochromes phyB and phyA mediate a remarkable developmental switch whereby, early upon seed imbibition, canopy light prevents phyB-dependent germination, whereas, later on, it stimulates phyA-dependent germination. Using a seed coat bedding assay where the growth of dissected embryos is monitored under the influence of dissected endosperm, allowing combinatorial use of mutant embryos and endosperm, we show that canopy light specifically inactivates phyB activity in the endosperm to override phyA-dependent signaling in the embryo. This interference involves abscisic acid (ABA) release from the endosperm and distinct spatial activities of phytochrome signaling components. Under the canopy, endospermic ABA opposes phyA signaling through the transcription factor (TF) ABI5, which shares with the TF PIF1 several target genes that negatively regulate germination in the embryo. ABI5 enhances the expression of phytochrome signaling genes PIF1, SOMNUS, GAI, and RGA, but also of ABA and gibberellic acid (GA) metabolic genes. Over time, weaker ABA-dependent responses eventually enable phyA-dependent germination, a distinct type of germination driven solely by embryonic growth.

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Type
research article
DOI
10.1101/gad.194266.112
Web of Science ID

WOS:000308391800009

Author(s)
Lee, Keun Pyo
Piskurewicz, Urszula
Tureckova, Veronika
Carat, Solenne
Chappuis, Richard
Strnad, Miroslav
Fankhauser, Christian
Lopez-Molina, Luis
Date Issued

2012

Publisher

Cold Spring Harbor Lab Press, Publications Dept

Published in
Genes & Development
Volume

26

Issue

17

Start page

1984

End page

1996

Subjects

ABI5

•

DELLA factors

•

abscisic acid

•

phyA

•

phyB

•

seed germination

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SV  
Available on Infoscience
February 27, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/89603
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