Nicholas D. Bonawitz
Nicholas D. Bonawitz
Research Scientist, Corteva Agriscience
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The Selaginella genome identifies genetic changes associated with the evolution of vascular plants
JA Banks, T Nishiyama, M Hasebe, JL Bowman, M Gribskov, ...
science 332 (6032), 960-963, 2011
The genetics of lignin biosynthesis: connecting genotype to phenotype
ND Bonawitz, C Chapple
Annual review of genetics 44 (1), 337-363, 2010
Reduced TOR signaling extends chronological life span via increased respiration and upregulation of mitochondrial gene expression
ND Bonawitz, M Chatenay-Lapointe, Y Pan, GS Shadel
Cell metabolism 5 (4), 265-277, 2007
Emerging strategies of lignin engineering and degradation for cellulosic biofuel production
JK Weng, X Li, ND Bonawitz, C Chapple
Current opinion in biotechnology 19 (2), 166-172, 2008
Initiation and beyond: multiple functions of the human mitochondrial transcription machinery
ND Bonawitz, DA Clayton, GS Shadel
Molecular cell 24 (6), 813-825, 2006
Disruption of Mediator rescues the stunted growth of a lignin-deficient Arabidopsis mutant
ND Bonawitz, JI Kim, Y Tobimatsu, PN Ciesielski, NA Anderson, ...
Nature 509 (7500), 376-380, 2014
The Growth Reduction Associated with Repressed Lignin Biosynthesis in Arabidopsis thaliana Is Independent of Flavonoids
X Li, ND Bonawitz, JK Weng, C Chapple
The plant cell 22 (5), 1620-1632, 2010
Can genetic engineering of lignin deposition be accomplished without an unacceptable yield penalty?
ND Bonawitz, C Chapple
Current opinion in biotechnology 24 (2), 336-343, 2013
Ataxia-telangiectasia mutated kinase regulates ribonucleotide reductase and mitochondrial homeostasis
JS Eaton, ZP Lin, AC Sartorelli, ND Bonawitz, GS Shadel
The Journal of clinical investigation 117 (9), 2723-2734, 2007
Convergent Evolution of Syringyl Lignin Biosynthesis via Distinct Pathways in the Lycophyte Selaginella and Flowering Plants
JK Weng, T Akiyama, ND Bonawitz, X Li, J Ralph, C Chapple
The Plant Cell 22 (4), 1033-1045, 2010
Defective mitochondrial gene expression results in reactive oxygen species-mediated inhibition of respiration and reduction of yeast life span
ND Bonawitz, MS Rodeheffer, GS Shadel
Molecular and cellular biology 26 (13), 4818-4829, 2006
REF4 and RFR1, subunits of the transcriptional coregulatory complex mediator, are required for phenylpropanoid homeostasis in Arabidopsis
ND Bonawitz, WL Soltau, MR Blatchley, BL Powers, AK Hurlock, LA Seals, ...
Journal of Biological Chemistry 287 (8), 5434-5445, 2012
Zinc finger nuclease‐mediated targeting of multiple transgenes to an endogenous soybean genomic locus via non‐homologous end joining
ND Bonawitz, WM Ainley, A Itaya, SR Chennareddy, T Cicak, K Effinger, ...
Plant biotechnology journal 17 (4), 750-761, 2019
Use of an in vivo reporter assay to test for transcriptional and translational fidelity in yeast
RJ Shaw, ND Bonawitz, D Reines
Journal of Biological Chemistry 277 (27), 24420-24426, 2002
Rethinking the mitochondrial theory of aging: the role of mitochondrial gene expression in lifespan determination
ND Bonawitz, GS Shadel
Cell Cycle 6 (13), 1574-1578, 2007
Mediator complex subunits MED2, MED5, MED16, and MED23 genetically interact in the regulation of phenylpropanoid biosynthesis
WL Dolan, BP Dilkes, JM Stout, ND Bonawitz, C Chapple
The Plant Cell 29 (12), 3269-3285, 2017
Loss of FERULATE 5-HYDROXYLASE Leads to Mediator-Dependent Inhibition of Soluble Phenylpropanoid Biosynthesis in Arabidopsis
NA Anderson, ND Bonawitz, K Nyffeler, C Chapple
Plant Physiology 169 (3), 1557-67, 2015
Expression of the rDNA-encoded mitochondrial protein Tar1p is stringently controlled and responds differentially to mitochondrial respiratory demand and dysfunction
ND Bonawitz, M Chatenay-Lapointe, CM Wearn, GS Shadel
Current genetics 54, 83-94, 2008
Spatio-temporal control of phenylpropanoid biosynthesis by inducible complementation of a cinnamate 4-hydroxylase mutant
JI Kim, C Hidalgo-Shrestha, ND Bonawitz, RB Franke, C Chapple
Journal of Experimental Botany 72 (8), 3061-3073, 2021
Spectrophotometric determination of reaction rates and kinetic parameters of a BAHD acyltransferase using DTNB (5, 5′-dithio-bis-[2-nitrobenzoic acid])
ML Sullivan, ND Bonawitz
Plant Science 269, 148-152, 2018
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