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David Favero
David Favero
Springer Nature
在 us.nature.com 的电子邮件经过验证
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引用次数
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Molecular mechanisms of plant regeneration
M Ikeuchi, DS Favero, Y Sakamoto, A Iwase, D Coleman, B Rymen, ...
Annual review of plant biology 70 (1), 377-406, 2019
3162019
Arabidopsis thaliana AHL family modulates hypocotyl growth redundantly by interacting with each other via the PPC/DUF296 domain
J Zhao, DS Favero, H Peng, MM Neff
Proceedings of the National Academy of Sciences 110 (48), E4688-E4697, 2013
1302013
A gene regulatory network for cellular reprogramming in plant regeneration
M Ikeuchi, M Shibata, B Rymen, A Iwase, AM Bågman, L Watt, D Coleman, ...
Plant and Cell Physiology 59 (4), 770-782, 2018
1022018
Histone acetylation orchestrates wound-induced transcriptional activation and cellular reprogramming in Arabidopsis
B Rymen, A Kawamura, A Lambolez, S Inagaki, A Takebayashi, A Iwase, ...
Communications biology 2 (1), 404, 2019
822019
Insights into the evolution and diversification of the AT-hook Motif Nuclear Localized gene family in land plants
J Zhao, DS Favero, J Qiu, EH Roalson, MM Neff
BMC plant biology 14, 1-19, 2014
812014
Wound-inducible WUSCHEL-RELATED HOMEOBOX 13 is required for callus growth and organ reconnection
M Ikeuchi, A Iwase, T Ito, H Tanaka, DS Favero, A Kawamura, ...
Plant Physiology 188 (1), 425-441, 2022
702022
Brassinosteroid signaling converges with SUPPRESSOR OF PHYTOCHROME B4‐#3 to influence the expression of SMALL AUXIN UP RNA genes and hypocotyl …
DS Favero, KN Le, MM Neff
The Plant Journal 89 (6), 1133-1145, 2017
522017
Mechanisms regulating PIF transcription factor activity at the protein level
DS Favero
Physiologia Plantarum 169 (3), 325-335, 2020
482020
AT-hook transcription factors restrict petiole growth by antagonizing PIFs
DS Favero, A Kawamura, M Shibata, A Takebayashi, JH Jung, T Suzuki, ...
Current Biology 30 (8), 1454-1466. e6, 2020
482020
Molecular networks orchestrating plant cell growth
A Franciosini, B Rymen, M Shibata, DS Favero, K Sugimoto
Current opinion in plant biology 35, 98-104, 2017
332017
SUPPRESSOR OF PHYTOCHROME B4-# 3 represses genes associated with auxin signaling to modulate hypocotyl growth
DS Favero, CN Jacques, A Iwase, KN Le, J Zhao, K Sugimoto, MM Neff
Plant Physiology 171 (4), 2701-2716, 2016
322016
WIND1 induces dynamic metabolomic reprogramming during regeneration in Brassica napus
A Iwase, K Mita, DS Favero, N Mitsuda, R Sasaki, M Kobayshi, ...
Developmental biology 442 (1), 40-52, 2018
232018
Warm Temperature Promotes Shoot Regeneration in Arabidopsis thaliana
A Lambolez, A Kawamura, T Takahashi, B Rymen, A Iwase, DS Favero, ...
Plant and Cell Physiology 63 (5), 618-634, 2022
192022
Trihelix transcription factors GTL1 and DF1 prevent aberrant root hair formation in an excess nutrient condition
M Shibata, DS Favero, R Takebayashi, A Takebayashi, A Kawamura, ...
New Phytologist 235 (4), 1426-1441, 2022
182022
The SUMO E3 ligase SIZ1 negatively regulates shoot regeneration
D Coleman, A Kawamura, M Ikeuchi, DS Favero, A Lambolez, B Rymen, ...
Plant physiology 184 (1), 330-344, 2020
182020
Molecular pathways regulating elongation of aerial plant organs: a focus on light, the circadian clock, and temperature
DS Favero, A Lambolez, K Sugimoto
The Plant Journal 105 (2), 392-420, 2021
162021
Histone acetylation orchestrates wound-induced transcriptional activation and cellular reprogramming in Arabidopsis. Commun Biol 2: 1–15
B Rymen, A Kawamura, A Lambolez, S Inagaki, A Takebayashi, A Iwase, ...
82019
4-Phenylbutyric acid promotes plant regeneration as an auxin by being converted to phenylacetic acid via an IBR3-independent pathway
A Iwase, A Takebayashi, Y Aoi, DS Favero, S Watanabe, M Seo, ...
Plant Biotechnology 39 (1), 51-58, 2022
52022
Shaping transcriptional responses to a phytohormone
DS Favero
Communications Biology 6 (1), 45, 2023
12023
GTL1 is required for a robust root hair growth response to avoid nutrient overloading
M Shibata, DS Favero, R Takebayashi, A Kawamura, B Rymen, ...
bioRxiv, 2021.06. 27.450011, 2021
12021
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