A familiar ring to it: biosynthesis of plant benzoic acids JR Widhalm, N Dudareva Molecular plant 8 (1), 83-97, 2015 | 375 | 2015 |
Emission of volatile organic compounds from petunia flowers is facilitated by an ABC transporter F Adebesin, JR Widhalm, B Boachon, F Lefèvre, B Pierman, JH Lynch, ... Science 356 (6345), 1386-1388, 2017 | 249 | 2017 |
An alternative pathway contributes to phenylalanine biosynthesis in plants via a cytosolic tyrosine: phenylpyruvate aminotransferase H Yoo, JR Widhalm, Y Qian, H Maeda, BR Cooper, AS Jannasch, I Gonda, ... Nature communications 4 (1), 2833, 2013 | 240 | 2013 |
Completion of the core β-oxidative pathway of benzoic acid biosynthesis in plants AV Qualley, JR Widhalm, F Adebesin, CM Kish, N Dudareva Proceedings of the National Academy of Sciences 109 (40), 16383-16388, 2012 | 204 | 2012 |
Rethinking how volatiles are released from plant cells JR Widhalm, R Jaini, JA Morgan, N Dudareva Trends in plant science 20 (9), 545-550, 2015 | 189 | 2015 |
Biosynthesis and molecular actions of specialized 1, 4-naphthoquinone natural products produced by horticultural plants JR Widhalm, D Rhodes Horticulture Research 3, 2016 | 169 | 2016 |
Contribution of CoA ligases to benzenoid biosynthesis in petunia flowers A Klempien, Y Kaminaga, A Qualley, DA Nagegowda, JR Widhalm, ... The Plant Cell 24 (5), 2015-2030, 2012 | 163 | 2012 |
MutS HOMOLOG1 is a nucleoid protein that alters mitochondrial and plastid properties and plant response to high light YZ Xu, MP Arrieta-Montiel, KS Virdi, WBM de Paula, JR Widhalm, ... The Plant Cell 23 (9), 3428-3441, 2011 | 161 | 2011 |
Contribution of isopentenyl phosphate to plant terpenoid metabolism LK Henry, ST Thomas, JR Widhalm, JH Lynch, TC Davis, SA Kessler, ... Nature plants 4 (9), 721-729, 2018 | 122 | 2018 |
The Origin and Biosynthesis of the Benzenoid Moiety of Ubiquinone (Coenzyme Q) in Arabidopsis A Block, JR Widhalm, A Fatihi, RE Cahoon, Y Wamboldt, C Elowsky, ... The Plant Cell 26 (5), 1938-1948, 2014 | 103 | 2014 |
Identification of a plastidial phenylalanine exporter that influences flux distribution through the phenylalanine biosynthetic network JR Widhalm, M Gutensohn, H Yoo, F Adebesin, Y Qian, L Guo, R Jaini, ... Nature communications 6 (1), 8142, 2015 | 95 | 2015 |
Phylloquinone (vitamin K1) biosynthesis in plants: two peroxisomal thioesterases of lactobacillales origin hydrolyze 1,4‐dihydroxy‐2‐naphthoyl‐coa JR Widhalm, AL Ducluzeau, NE Buller, CG Elowsky, LJ Olsen, ... The plant journal 71 (2), 205-215, 2012 | 92 | 2012 |
A dedicated thioesterase of the Hotdog-fold family is required for the biosynthesis of the naphthoquinone ring of vitamin K1 JR Widhalm, C van Oostende, F Furt, GJC Basset Proceedings of the National Academy of Sciences 106 (14), 5599-5603, 2009 | 71 | 2009 |
A bimodular oxidoreductase mediates the specific reduction of phylloquinone (vitamin K1) in chloroplasts F Furt, C Oostende, JR Widhalm, MA Dale, J Wertz, GJC Basset The Plant Journal 64 (1), 38-46, 2010 | 60 | 2010 |
Agricultural uses of juglone: Opportunities and challenges AKMM Islam, JR Widhalm Agronomy 10 (10), 1500, 2020 | 48 | 2020 |
The origin and biosynthesis of the naphthalenoid moiety of juglone in black walnut RM McCoy, SM Utturkar, JW Crook, J Thimmapuram, JR Widhalm Horticulture research 5 (1), 1-11, 2018 | 47 | 2018 |
Detection and quantification of vitamin K1 quinol in leaf tissues C van Oostende, JR Widhalm, GJC Basset Phytochemistry 69 (13), 2457-2462, 2008 | 43 | 2008 |
Hybrid de novo genome assembly of red gromwell (Lithospermum erythrorhizon) reveals evolutionary insight into shikonin biosynthesis RP Auber, T Suttiyut, RM McCoy, M Ghaste, JW Crook, AL Pendleton, ... Horticulture Research 7, 2020 | 42 | 2020 |
Vitamin K1 (phylloquinone): Function, enzymes and genes C Van Oostende, JR Widhalm, F Furt, AL Ducluzeau, GJ Basset Advances in botanical research 59, 229-261, 2011 | 31* | 2011 |
Convergent evolution of plant specialized 1, 4-naphthoquinones: metabolism, trafficking, and resistance to their allelopathic effects GW Meyer, MA Bahamon Naranjo, JR Widhalm Journal of Experimental Botany 72 (2), 167-176, 2021 | 30 | 2021 |