Saurabh Raghuvanshi
Overview
Explore the profile of Saurabh Raghuvanshi including associated specialties, affiliations and a list of published articles.
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Articles
37
Citations
734
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Recent Articles
1.
Prasad K, Hassan M, Raghuvanshi S, Kumar V
PLoS One
. 2024 May;
19(5):e0301267.
PMID: 38753768
Background: Amyotrophic lateral sclerosis (ALS) is a relentlessly progressive and fatal neurodegenerative diseases for which at present no cure is available. Despite the extensive research the progress from diagnosis to...
2.
Balyan S, Kansal S, Jajo R, Behere P, Chatterjee R, Raghuvanshi S
Funct Integr Genomics
. 2023 May;
23(2):187.
PMID: 37243818
Engineering drought tolerance in rice needs to focus on regulators that enhance tolerance while boosting plant growth and vigor. The present study delineated the concealed function and tissue-mediated interplay of...
3.
Chithung T, Kansal S, Jajo R, Balyan S, Raghuvanshi S
Funct Integr Genomics
. 2023 Jan;
23(1):30.
PMID: 36604385
miRNA biogenesis process is an intricate and complex event consisting of many proteins working in a highly coordinated fashion. Most of these proteins have been studied in Arabidopsis; however, their...
4.
Prasad K, Gour P, Raghuvanshi S, Kumar V
Int J Biol Macromol
. 2022 Jul;
217:853-863.
PMID: 35907451
The global coronavirus disease 2019 (COVID-19) pandemic caused by the SARS-CoV-2 virus has had unprecedented social and economic ramifications. Identifying targets for drug repurposing could be an effective means to...
5.
Dahal S, Gour P, Raghuvanshi S, Prasad Y, Saikia D, Ghatani S
Acta Trop
. 2022 Jun;
233:106564.
PMID: 35716764
Lack of effective surveillance and control methods for neglected helminth diseases particularly in context of rural areas in India is a serious concern in terms of public health. With regard...
6.
Kansal S, Panwar V, Mutum R, Raghuvanshi S
Front Plant Sci
. 2021 Nov;
12:720009.
PMID: 34733300
MicroRNAs (miRNAs) are critical components of the multidimensional regulatory networks in eukaryotic systems. Given their diverse spectrum of function, it is apparent that the transcription, processing, and activity of the...
7.
Gour P, Kansal S, Agarwal P, Mishra B, Sharma D, Mathur S, et al.
Physiol Plant
. 2021 Oct;
174(1):e13585.
PMID: 34652858
The divergence of natural stress tolerance mechanisms between species is an intriguing phenomenon. To study it in rice, a comparative transcriptome analysis was carried out in 'heading' stage tissue (flag...
8.
Giri J, Parida S, Raghuvanshi S, Tyagi A
Curr Genomics
. 2021 May;
22(1):16-25.
PMID: 34045921
Rice occupies a pre-eminent position as a food crop in the world. Its production, how- ever, entails up to 3000 liters of water per kilogram of grain produced. Such high...
9.
Saripalli G, Singh K, Gautam T, Kumar S, Raghuvanshi S, Prasad P, et al.
Plant Mol Biol
. 2020 Jul;
104(1-2):113-136.
PMID: 32627097
Present study revealed a complex relationship among histone H3 methylation (examined using H3K4/K27me3 marks), cytosine DNA methylation and differential gene expression during Lr28 mediated leaf rust resistance in wheat. During...
10.
Sharma C, Saripalli G, Kumar S, Gautam T, Kumar A, Rani S, et al.
Funct Plant Biol
. 2020 Apr;
45(10):1046-1064.
PMID: 32291004
Leaf rust disease causes severe yield losses in wheat throughout the world. During the present study, high-throughput RNA-Seq analysis was used to gain insights into the role of Lr28 gene...