Vemanna S Ramu
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Explore the profile of Vemanna S Ramu including associated specialties, affiliations and a list of published articles.
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Articles
17
Citations
213
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Recent Articles
1.
Saini V, Mehta D, Gupta S, Kumar S, Rani P, Rana K, et al.
J Med Chem
. 2022 Nov;
65(22):15312-15326.
PMID: 36331380
Emergence of vancomycin resistance in Gram-positive bacteria and the prevalence of vancomycin-resistant (VRE) infections are highly alarming as very limited antibiotic options are available against VRE infections. Here, we present...
2.
Pal G, Mehta D, Singh S, Magal K, Gupta S, Jha G, et al.
Front Plant Sci
. 2021 Oct;
12:746912.
PMID: 34630495
pv. () causes bacterial blight and causes sheath blight in rice accounting for >75% of crop losses. Therefore, there is an urgent need to develop strategies for the mitigation of...
3.
Proteasomal Degradation of JAZ9 by Salt- and Drought-Induced Ring Finger 1 During Pathogen Infection
Ramu V, Pal G, Oh S, Mysore K
Mol Plant Microbe Interact
. 2021 Oct;
34(12):1358-1364.
PMID: 34615361
E3 ubiquitin ligase salt- and drought-induced ring finger 1 (SDIR1) plays a novel role in modulating plant immunity against pathogens. The molecular interactors of SDIR1 during pathogen infection are not...
4.
Bakade R, Ingole K, Deshpande S, Pal G, Patil S, Bhattacharjee S, et al.
Mol Biotechnol
. 2021 May;
63(8):719-731.
PMID: 33993401
The bacterial leaf blight in rice caused by Xanthomonas oryzae pv. oryzae (Xoo) affects crop losses worldwide. In spite of developing resistant varieties by introgressing different Xa genes, the occurrence...
5.
V K, Chandrashekar B, K K, Ag S, Makarla U, Ramu V
J Agric Food Chem
. 2021 Apr;
69(14):4144-4152.
PMID: 33789420
Genetic variation is crucial for crop improvement. We adopted a gene editing approach to create variations in the rice genome by targeting the mutator locus homolog 2 (), a DNA...
6.
Lekshmy V, Vijayaraghavareddy P, Nagashree A, Ramu V, Ramegowda V, Makarla U, et al.
Front Plant Sci
. 2021 Mar;
11:632919.
PMID: 33679820
Plants have evolved several adaptive mechanisms to cope with water-limited conditions. While most of them are through constitutive traits, certain "acquired tolerance" traits also provide significant improvement in drought adaptation....
7.
Kaundal A, Ramu V, Mysore K
Bio Protoc
. 2021 Mar;
10(15):e3705.
PMID: 33659369
ATPases are the enzymes that breakdown ATP to ADP and release inorganic phosphate (Pi). Here we provide a detailed protocol to determine the ATPase activity of a recombinant AAA-ATPase protein...
8.
Niranjan V, Uttarkar A, Dadi S, Dawane A, Vargheese A, H G J, et al.
ACS Omega
. 2021 Feb;
6(4):3399-3410.
PMID: 33553958
Reactive carbonyl compounds (RCCs) such as hydroxynonenol, malondialdehyde, acrolein, crotonaldehyde, methylglyoxal, and glyoxal accumulate at higher levels under stress in plants and damage the cell metabolic activities. Plants have evolved...
9.
Ramu V, Oh S, Lee H, Nandety R, Oh Y, Lee S, et al.
Mol Plant Microbe Interact
. 2020 Nov;
34(3):297-308.
PMID: 33231502
Many plant-encoded E3 ligases are known to be involved in plant defense. Here, we report a novel role of E3 ligase SALT- AND DROUGHT-INDUCED RING FINGER1 (SDIR1) in plant immunity....
10.
Ramu V, Dawane A, Lee S, Oh S, Lee H, Sun L, et al.
Mol Plant Pathol
. 2020 Sep;
21(11):1481-1494.
PMID: 32964634
Ribosomes play an integral part in plant growth, development, and defence responses. We report here the role of ribosomal protein large (RPL) subunit QM/RPL10 in nonhost disease resistance. The RPL10-silenced...