关注
Dr NAVDEEP KAUR
Dr NAVDEEP KAUR
Department of Biotechnology, Guru Nanak Dev University, Amritsar
在 gndu.ac.in 的电子邮件经过验证
标题
引用次数
引用次数
年份
Auxin: a master regulator in plant root development
S Saini, I Sharma, N Kaur, PK Pati
Plant cell reports 32, 741-757, 2013
3482013
Interdependency of reactive oxygen species generating and scavenging system in salt sensitive and salt tolerant cultivars of rice
N Kaur, M Dhawan, I Sharma, PK Pati
BMC plant biology 16, 1-13, 2016
1282016
Phytohormones: Key players in the modulation of heavy metal stress tolerance in plants
S Saini, N Kaur, PK Pati
Ecotoxicology and Environmental Safety 223, 112578, 2021
1152021
Detection of reactive oxygen species in Oryza sativa L.(rice)
N Kaur, I Sharma, K Kirat, PK Pati
Bio-protocol 6 (24), e2061-e2061, 2016
992016
Brassinosteroids: a promising option in deciphering remedial strategies for abiotic stress tolerance in rice
I Sharma, N Kaur, PK Pati
Frontiers in plant science 8, 301539, 2017
912017
Reactive oxygen species dynamics in roots of salt sensitive and salt tolerant cultivars of rice
S Saini, N Kaur, PK Pati
Analytical biochemistry 550, 99-108, 2018
512018
Self-powered biocompatible humidity sensor based on an electrospun anisotropic triboelectric nanogenerator for non-invasive diagnostic applications
S Sardana, Z Singh, AK Sharma, N Kaur, PK Pati, A Mahajan
Sensors and Actuators B: Chemical 371, 132507, 2022
362022
Anti-neuroinflammatory potential of Tylophora indica (Burm. f) Merrill and development of an efficient in vitro propagation system for its clinical use
V Gupta, R Guleri, M Gupta, N Kaur, K Kaur, P Kumar, M Anand, G Kaur, ...
Plos one 15 (3), e0230142, 2020
202020
Harnessing the Potential of Brassinosteroids in Abiotic Stress Tolerance in Plants
N Kaur, PK Pati
Brassinosteroids: plant growth and development, 407, 2019
202019
Integrating classical with emerging concepts for better understanding of salinity stress tolerance mechanisms in rice
N Kaur, PK Pati
Frontiers in Environmental Science 5, 42, 2017
202017
Genome editing: A promising approach for achieving abiotic stress tolerance in plants
N Kaur, S Sharma, M Hasanuzzaman, PK Pati
International Journal of Genomics 2022 (1), 5547231, 2022
192022
Reactive oxygen species generating system and brassinosteroids are linked to salt stress adaptation mechanisms in rice
N Kaur, K Kirat, S Saini, I Sharma, P Gantet, PK Pati
Plant signaling & behavior 11 (12), e1247136, 2016
182016
Reactive oxygen species generating and scavenging systems play critical role in conferring leaf spot disease resistance in Withania somnifera (L.) Dunal
B Singh, N Kaur, P Kumar, V Hallan, PK Pati
Industrial Crops and Products 157, 112889, 2020
172020
Deciphering strategies for salt stress tolerance in rice in the context of climate change
N Kaur, G Kaur, PK Pati
Advances in Rice Research for Abiotic Stress Tolerance, 113-132, 2019
152019
Morphological analysis, protein profiling and expression analysis of auxin homeostasis genes of roots of two contrasting cultivars of rice provide inputs on mechanisms involved …
S Saini, N Kaur, D Marothia, B Singh, V Singh, P Gantet, PK Pati
Plants 10 (8), 1544, 2021
142021
Abiotic stress responses in plants: Current knowledge and future prospects
D Marothia, N Kaur, PK Pati
Abiotic stress in plants 73, 2020
122020
Harnessing the potential of nanobiotechnology in medicinal plants
M Bernela, M Seth, N Kaur, S Sharma, PK Pati
Industrial Crops and Products 194, 116266, 2023
92023
Biotechnological interventions in banana: current knowledge and future prospects
AK Justine, N Kaur, PK Pati
Heliyon 8 (11), 2022
62022
Structural insights into rice SalTol QTL located SALT protein
N Kaur, A Sagar, P Sharma, Ashish, PK Pati
Scientific reports 10 (1), 16589, 2020
62020
Emerging dynamics of brassinosteroids research
I Sharma, N Kaur, S Saini, PK Pati
Biotechnology: Prospects and applications, 3-17, 2013
52013
系统目前无法执行此操作,请稍后再试。
文章 1–20