Jiping Liu, Ph.D.
Affiliations: | 1993-1999 | Department of Plant Science | University of Arizona, Tucson, AZ |
1999-2004 | Department of Plant Breeding and Genetics | Cornell University, Ithaca, NY, United States | |
2004- | Plant Soil & Nutrition Unit | Robert W. Holley Center, USDA-ARS |
Area:
Plant genetics, plant molecular biology, plant nutrition, ion transport, abiotic stressesGoogle:
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Publications
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Wang Y, Yang S, Li C, et al. (2022) The plasma membrane-localized OsNIP1;2 mediates internal aluminum detoxification in rice. Frontiers in Plant Science. 13: 970270 |
Yu W, Xue Z, Zhao X, et al. (2022) Glyphosate-induced GhAG2 is involved in resistance to salt stress in cotton. Plant Cell Reports |
Potts J, Li H, Qin Y, et al. (2022) Using single cell type proteomics to identify Al-induced proteomes in outer layer cells and interior tissues in the apical meristem/cell division regions of tomato root-tips. Journal of Proteomics. 104486 |
Wang Y, Yu W, Cao Y, et al. (2020) An exclusion mechanism is epistatic to an internal detoxification mechanism in aluminum resistance in Arabidopsis. Bmc Plant Biology. 20: 122 |
Qiu W, Wang N, Dai J, et al. (2019) AhFRDL1 mediated citrate secretion contributes to adaptation of peanuts for Fe deficiency and Al stress. Journal of Experimental Botany |
Zhao Z, Gao X, Ke Y, et al. (2019) A unique aluminum resistance mechanism conferred by aluminum and salicylic-acid-activated root efflux of benzoxazinoids in maize Plant and Soil. 437: 273-289 |
Qin L, Walk TC, Han P, et al. (2018) Adaption of roots to nitrogen deficiency revealed by 3-D quantification and proteomic analysis. Plant Physiology |
Wang Y, Cai Y, Cao Y, et al. (2018) Aluminum-activated root malate and citrate exudation is independent of NIP1;2-facilitated root-cell-wall aluminum removal in Arabidopsis. Plant Signaling & Behavior. 0 |
Jiang F, Wang T, Wang Y, et al. (2017) Identification and characterization of suppressor mutants of stop1. Bmc Plant Biology. 17: 128 |
Wang Y, Li R, Li D, et al. (2017) NIP1;2 is a plasma membrane-localized transporter mediating aluminum uptake, translocation, and tolerance in Arabidopsis. Proceedings of the National Academy of Sciences of the United States of America |