TY - JOUR
T1 - Light intensity modulates the regulatory network of the shade avoidance response in Arabidopsis
AU - Hersch, Micha
AU - Lorrain, Séverine
AU - de Wit, Mieke
AU - Trevisan, Martine
AU - Ljung, Karin
AU - Bergmann, Sven
AU - Fankhauser, Christian
PY - 2014
Y1 - 2014
N2 - Plants such as Arabidopsis thaliana respond to foliar shade and neighbors who may become competitors for light resources by elongation growth to secure access to unfiltered sunlight. Challenges faced during this shade avoidance response (SAR) are different under a light-absorbing canopy and during neighbor detection where light remains abundant. In both situations, elongation growth depends on auxin and transcription factors of the phytochrome interacting factor (PIF) class. Using a computational modeling approach to study the SAR regulatory network, we identify and experimentally validate a previously unidentified role for long hypocotyl in far red 1, a negative regulator of the PIFs. Moreover, we find that during neighbor detection, growth is promoted primarily by the production of auxin. In contrast, in true shade, the system operates with less auxin but with an increased sensitivity to the hormonal signal. Our data suggest that this latter signal is less robust, which may reflect a cost-to-robustness tradeoff, a system trait long recognized by engineers and forming the basis of information theory.
AB - Plants such as Arabidopsis thaliana respond to foliar shade and neighbors who may become competitors for light resources by elongation growth to secure access to unfiltered sunlight. Challenges faced during this shade avoidance response (SAR) are different under a light-absorbing canopy and during neighbor detection where light remains abundant. In both situations, elongation growth depends on auxin and transcription factors of the phytochrome interacting factor (PIF) class. Using a computational modeling approach to study the SAR regulatory network, we identify and experimentally validate a previously unidentified role for long hypocotyl in far red 1, a negative regulator of the PIFs. Moreover, we find that during neighbor detection, growth is promoted primarily by the production of auxin. In contrast, in true shade, the system operates with less auxin but with an increased sensitivity to the hormonal signal. Our data suggest that this latter signal is less robust, which may reflect a cost-to-robustness tradeoff, a system trait long recognized by engineers and forming the basis of information theory.
KW - regulatory network model
KW - auxin signaling
KW - auxin biosynthesis
KW - phytochrome B
KW - regulatory network model
KW - auxin signaling
KW - auxin biosynthesis
KW - phytochrome B
UR - https://res.slu.se/id/publ/67860
U2 - 10.1073/pnas.1320355111
DO - 10.1073/pnas.1320355111
M3 - Journal article
C2 - 24733935
SN - 1091-6490
VL - 111
SP - 6515
EP - 6520
JO - Proceedings of the National Academy of Sciences
JF - Proceedings of the National Academy of Sciences
IS - 17
ER -