Dr Ashwani Pareek
Dr Ashwani Pareek
Jawaharlal Nehru University & University of Western Australia
Verified email at - Homepage
Cited by
Cited by
Abiotic stress responses and microbe-mediated mitigation in plants: the omics strategies
KK Meena, AM Sorty, UM Bitla, K Choudhary, P Gupta, A Pareek, ...
Frontiers in plant science 8, 172, 2017
Transcription factors and plants response to drought stress: current understanding and future directions
R Joshi, SH Wani, B Singh, A Bohra, ZA Dar, AA Lone, A Pareek, ...
Frontiers in plant science 7, 1029, 2016
Transgenic tobacco overexpressing glyoxalase pathway enzymes grow and set viable seeds in zinc-spiked soils
SL Singla-Pareek, SK Yadav, A Pareek, MK Reddy, SK Sopory
Plant Physiology 140 (2), 613-623, 2006
An improved protocol for efficient transformation and regeneration of diverse indica rice cultivars
KK Sahoo, AK Tripathi, A Pareek, SK Sopory, SL Singla-Pareek
Plant methods 7, 1-11, 2011
Engineering abiotic stress tolerance via CRISPR/Cas-mediated genome editing
SA Zafar, SSA Zaidi, Y Gaba, SL Singla-Pareek, OP Dhankher, X Li, ...
Journal of Experimental Botany 71 (2), 470-479, 2020
Enhancing salt tolerance in a crop plant by overexpression of glyoxalase II
SL Singla-Pareek, SK Yadav, A Pareek, MK Reddy, SK Sopory
Transgenic research 17, 171-180, 2008
Mitigating the impact of climate change on plant productivity and ecosystem sustainability
A Pareek, OP Dhankher, CH Foyer
Journal of Experimental Botany 71 (2), 451-456, 2020
Abiotic stress adaptation in plants
A Pareek, SK Sopory, HJ Bohnert
Springer, 2009
Transcriptome map for seedling stage specific salinity stress response indicates a specific set of genes as candidate for saline tolerance in Oryza sativa L.
S Kumari, V Panjabi nee Sabharwal, HR Kushwaha, SK Sopory, ...
Functional & Integrative Genomics 9, 109-123, 2009
Genome-wide analysis of rice and Arabidopsis identifies two glyoxalase genes that are highly expressed in abiotic stresses
A Mustafiz, AK Singh, A Pareek, SK Sopory, SL Singla-Pareek
Functional & integrative genomics 11, 293-305, 2011
Immunological evidence for accumulation of two high-molecular-weight (104 and 90 kDa) HSPs in response to different stresses in rice and in response to high temperature stress …
A Pareek, SL Singla, A Grover
Plant Molecular Biology 29, 293-301, 1995
Physiological responses among Brassica species under salinity stress show strong correlation with transcript abundance for SOS pathway-related genes
G Kumar, RS Purty, MP Sharma, SL Singla-Pareek, A Pareek
Journal of plant physiology 166 (5), 507-520, 2009
Clustered metallothionein genes are co-regulated in rice and ectopic expression of OsMT1e-Pconfers multiple abiotic stress tolerance in tobacco via ROS scavenging
G Kumar, HR Kushwaha, V Panjabi-Sabharwal, S Kumari, R Joshi, ...
BMC Plant Biology 12, 1-16, 2012
Whole-Genome Analysis of Oryza sativa Reveals Similar Architecture of Two-Component Signaling Machinery with Arabidopsis
A Pareek, A Singh, M Kumar, HR Kushwaha, AM Lynn, SL Singla-Pareek
Plant physiology 142 (2), 380-397, 2006
Cyclophilins: proteins in search of function
S Kumari, S Roy, P Singh, S Singla-Pareek, A Pareek
Plant signaling & behavior 8 (1), e22734, 2013
Knockdown of an inflorescence meristem‐specific cytokinin oxidase–OsCKX2 in rice reduces yield penalty under salinity stress condition
R Joshi, KK Sahoo, AK Tripathi, R Kumar, BK Gupta, A Pareek, ...
Plant, cell & environment 41 (5), 936-946, 2018
A unique Ni2+ ‐dependent and methylglyoxal‐inducible rice glyoxalase I possesses a single active site and functions in abiotic stress response
A Mustafiz, A Ghosh, AK Tripathi, C Kaur, AK Ganguly, NS Bhavesh, ...
The Plant Journal 78 (6), 951-963, 2014
Plant ecophysiology
MNV Prasad
John Wiley & Sons, 1996
Oxidative environment and redox homeostasis in plants: dissecting out significant contribution of major cellular organelles
P Das, KK Nutan, SL Singla-Pareek, A Pareek
Frontiers in environmental science 2, 70, 2015
Towards salinity tolerance in Brassica: an overview
RS Purty, G Kumar, SL Singla-Pareek, A Pareek
Physiology and Molecular Biology of Plants 14, 39-49, 2008
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