Google Scholar Profile: https://scholar.google.com/citations?user=5U3dfCAAAAAJ&hl=en
Selected Publications
Voothuluru P., Y. Wu and R.E. Sharp. 2024. Not so hidden anymore: Advances and challenges in understanding root growth under water deficit conditions. Plant Cell 36: 1377-1409
Kang J., P. Voothuluru, E. Hoyos, D. Alexander, M.J. Oliver and R.E. Sharp. 2022. Differential antioxidant and sulfur metabolisms in cotton and maize primary roots in response to equivalent water-deficit stress. Antioxidants 11: 820
Voothuluru P.*, P. Mäkelä, M. Yamaguchi, J. Zhu, I-J Cho, M.J. Oliver, J. Simmonds and R.E. Sharp. 2020. Apoplastic hydrogen peroxide in the growth zone of the maize primary root. Increased levels differentially modulate root elongation under well-watered and water-stressed conditions. Frontiers in Plant Sciences 11:392
Voothuluru P., D.M. Braun and J.S. Boyer. 2018. A novel in vivo imaging assay detects spatial variability in glucose release from plant roots. Plant Physiology 178: 1002-1010.
Voothuluru P., J.C. Anderson, R.E. Sharp and S.C. Peck. 2016. Plasma membrane proteomics in the maize primary root growth zone: novel insights into root growth adaptation to water stress. Plant Cell Environment 39: 2043-2054
Voothuluru P., H.J. Thompson, S.F. Flint-Garcia, and R.E. Sharp. 2013. Genetic variability of oxidase oxalate activity and elongation in water-stressed primary roots of diverse maize and rice lines. Plant Signaling & Behavior 8(3): e23454 doi: 10.4161/psb.23454.
Voothuluru P. and R.E. Sharp. 2013. Apoplastic hydrogen peroxide in the growth zone of the maize primary root under water stress. I. Increased levels are specific to the apical region of growth maintenance. Journal of Experimental Botany 64(5): 1223-1233.