Salinity stress adaptation competence in the extremophile Thellungiella halophila in comparison with its relative Arabidopsis thaliana Q Gong, P Li, S Ma, S Indu Rupassara, HJ Bohnert The Plant Journal 44 (5), 826-839, 2005 | 614 | 2005 |
Salt cress. A halophyte and cryophyte Arabidopsis relative model system and its applicability to molecular genetic analyses of growth and development of extremophiles G Inan, Q Zhang, P Li, Z Wang, Z Cao, H Zhang, C Zhang, TM Quist, ... Plant physiology 135 (3), 1718-1737, 2004 | 539 | 2004 |
Unraveling abiotic stress tolerance mechanisms–getting genomics going HJ Bohnert, Q Gong, P Li, S Ma Current opinion in plant biology 9 (2), 180-188, 2006 | 529 | 2006 |
Dissecting salt stress pathways S Ma, Q Gong, HJ Bohnert Journal of experimental botany 57 (5), 1097-1107, 2006 | 338 | 2006 |
Salicylic acid‐mediated innate immunity in Arabidopsis is regulated by SIZ1 SUMO E3 ligase J Lee, J Nam, HC Park, G Na, K Miura, JB Jin, CY Yoo, D Baek, DH Kim, ... The Plant Journal 49 (1), 79-90, 2007 | 333 | 2007 |
An Arabidopsis gene network based on the graphical Gaussian model S Ma, Q Gong, HJ Bohnert Genome research 17 (11), 1614-1625, 2007 | 290 | 2007 |
Integration of Arabidopsis thaliana stress-related transcript profiles, promoter structures, and cell-specific expression S Ma, HJ Bohnert Genome biology 8, 1-22, 2007 | 274 | 2007 |
SIZ1 Regulation of Phosphate Starvation-Induced Root Architecture Remodeling Involves the Control of Auxin Accumulation K Miura, J Lee, Q Gong, S Ma, JB Jin, CY Yoo, T Miura, A Sato, ... Plant physiology 155 (2), 1000-1012, 2011 | 227 | 2011 |
Novel Positive Regulatory Role for the SPL6 Transcription Factor in the N TIR-NB-LRR Receptor-Mediated Plant Innate Immunity MS Padmanabhan, S Ma, TM Burch-Smith, K Czymmek, P Huijser, ... PLOS Pathogens 9 (3), e1003235, 2013 | 202 | 2013 |
Regulation of reactive oxygen species during plant immunity through phosphorylation and ubiquitination of RBOHD DH Lee, NK Lal, ZJD Lin, S Ma, J Liu, B Castro, T Toruño, ... Nature communications 11 (1), 1838, 2020 | 187 | 2020 |
De novo assembly of a Chinese soybean genome Y Shen, J Liu, H Geng, J Zhang, Y Liu, H Zhang, S Xing, J Du, S Ma, ... Science China Life Sciences 61, 871-884, 2018 | 140 | 2018 |
Loss of TIP1; 1 aquaporin in Arabidopsis leads to cell and plant death S Ma, TM Quist, A Ulanov, R Joly, HJ Bohnert The Plant Journal 40 (6), 845-859, 2004 | 123 | 2004 |
The MAP4 kinase SIK1 ensures robust extracellular ROS burst and antibacterial immunity in plants M Zhang, YH Chiang, TY Toruño, DH Lee, M Ma, X Liang, NK Lal, ... Cell host & microbe 24 (3), 379-391. e5, 2018 | 112 | 2018 |
Arabidopsis RTNLB1 and RTNLB2 Reticulon-Like Proteins Regulate Intracellular Trafficking and Activity of the FLS2 Immune Receptor HY Lee, CH Bowen, GV Popescu, HG Kang, N Kato, S Ma, ... The Plant Cell 23 (9), 3374-3391, 2011 | 89 | 2011 |
Incorporating motif analysis into gene co-expression networks reveals novel modular expression pattern and new signaling pathways S Ma, S Shah, HJ Bohnert, M Snyder, SP Dinesh-Kumar PLoS genetics 9 (10), e1003840, 2013 | 81 | 2013 |
The plastidial retrograde signal methyl erythritol cyclopyrophosphate is a regulator of salicylic acid and jasmonic acid crosstalk M Lemos, Y Xiao, M Bjornson, J Wang, D Hicks, A Souza, CQ Wang, ... Journal of Experimental Botany 67 (5), 1557-1566, 2016 | 59 | 2016 |
Arabidopsis MADS‐box factor AGL16 is a negative regulator of plant response to salt stress by downregulating salt‐responsive genes PX Zhao, J Zhang, SY Chen, J Wu, JQ Xia, LQ Sun, SS Ma, CB Xiang New Phytologist 232 (6), 2418-2439, 2021 | 45 | 2021 |
PARylation of the forkhead‐associated domain protein DAWDLE regulates plant immunity B Feng, S Ma, S Chen, N Zhu, S Zhang, B Yu, Y Yu, B Le, X Chen, ... EMBO reports 17 (12), 1799-1813, 2016 | 37 | 2016 |
Discovery of stress responsive DNA regulatory motifs in Arabidopsis S Ma, S Bachan, M Porto, HJ Bohnert, M Snyder, SP Dinesh-Kumar Public Library of Science 7 (8), e43198, 2012 | 29 | 2012 |
Coexpression characteristics of trehalose‐6‐phosphate phosphatase subfamily genes reveal different functions in a network context P Li, S Ma, HJ Bohnert Physiologia Plantarum 133 (3), 544-556, 2008 | 27 | 2008 |