Devang Mehta
Affiliations: | 2014-2022 | Biology | Eidgenössische Technische Hochschule Zürich, Zürich, ZH, Switzerland |
2018-2022 | Biological Sciences | University of Alberta, Edmonton, Alberta, Canada | |
2022- | Biosystems | Katholieke Universiteit Leuven, Leuven, Vlaanderen, Belgium |
Area:
Plant Biology, systems biology, cassava, viruses, crispr, genomicsWebsite:
www.mehta-lab.comGoogle:
"Devang Mehta"Parents
Sign in to add mentorWilhelm Gruissem | grad student | 2013-2018 | ETH Zürich (Microtree) |
Hervé Vanderschuren | grad student | 2013-2018 | University of Liège |
Richard Glen Uhrig | post-doc | 2018-2022 | University of Alberta |
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Publications
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Vanderschuren H, Chatukuta P, Weigel D, et al. (2023) A new chance for genome editing in Europe. Nature Biotechnology |
Kilburn R, Fedosejevs ET, Mehta D, et al. (2023) Substrate profiling of the Arabidopsis Ca-dependent protein kinase AtCPK4 and its Ricinus communis ortholog RcCDPK1. Plant Science : An International Journal of Experimental Plant Biology. 111675 |
Urban L, De Niz M, Fernández-Chiappe F, et al. (2022) eLife's new model and its impact on science communication. Elife. 11 |
Mehta D, Ahkami AH, Walley J, et al. (2022) The incongruity of validating quantitative proteomics using western blots. Nature Plants. 8: 1320-1321 |
Kent BA, Holman C, Amoako E, et al. (2022) Recommendations for empowering early career researchers to improve research culture and practice. Plos Biology. 20: e3001680 |
Scandola S, Mehta D, Li Q, et al. (2022) Multi-omic analysis shows REVEILLE clock genes are involved in carbohydrate metabolism and proteasome function. Plant Physiology |
Mehta D, Cornet L, Hirsch-Hoffmann M, et al. (2022) Author Correction: Full-length sequencing of circular DNA viruses and extrachromosomal circular DNA using CIDER-Seq. Nature Protocols |
Adhikary D, Mehta D, Uhrig RG, et al. (2022) A Proteome-Level Investigation Into Resistance in Canola. Frontiers in Plant Science. 13: 860393 |
Mehta D, Scandola S, Uhrig RG. (2022) BoxCar and Library-Free Data-Independent Acquisition Substantially Improve the Depth, Range, and Completeness of Label-Free Quantitative Proteomics. Analytical Chemistry. 94: 793-802 |
Rodriguez MC, Mehta D, Tan M, et al. (2021) Quantitative Proteome and PTMome Analysis of Arabidopsis Thaliana Root Responses to Persistent Osmotic and Salinity Stress. Plant & Cell Physiology |