» Authors » Sameer Joshi

Sameer Joshi

Explore the profile of Sameer Joshi including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 21
Citations 167
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Dhyani K, Dash S, Joshi S, Garg A, Pal D, Nishant K, et al.
Nucleic Acids Res . 2024 Dec; 53(3). PMID: 39727188
Saccharomyces cerevisiae meiosis-specific Hop1, a structural constituent of the synaptonemal complex, also facilitates the formation of programmed DNA double-strand breaks and the pairing of homologous chromosomes. Here, we reveal a...
2.
Joshi S, Dash S, Vijayan N, Nishant K
DNA Repair (Amst) . 2024 Aug; 141:103727. PMID: 39098164
Loss of Heterozygosity (LOH) due to mitotic recombination is frequently associated with the development of various cancers (e.g. retinoblastoma). LOH is also an important source of genetic diversity, especially in...
3.
Dash S, Joshi S, Pankajam A, Shinohara A, Nishant K
Genetics . 2023 Dec; 226(3). PMID: 38124392
Meiotic crossovers are initiated from programmed DNA double-strand breaks. The Msh4-Msh5 heterodimer is an evolutionarily conserved mismatch repair-related protein complex that promotes meiotic crossovers by stabilizing strand invasion intermediates and...
4.
Pasam R, Kant S, Thoday-Kennedy E, Dimech A, Joshi S, Keeble-Gagnere G, et al.
Plants (Basel) . 2023 Jun; 12(12). PMID: 37375992
Soil salinity can impose substantial stress on plant growth and cause significant yield losses. Crop varieties tolerant to salinity stress are needed to sustain yields in saline soils. This requires...
5.
Thoday-Kennedy E, Dimech A, Joshi S, Daetwyler H, Hudson D, Spangenberg G, et al.
Data Brief . 2022 Dec; 46:108787. PMID: 36506801
This article describes a dataset of high-resolution visible-spectrum images of safflower ( L.) plants obtained from a LemnaTec Scanalyser automated phenomics platform along with the associated image analysis output and...
6.
Joshi S, Pandey B, Rosewarne G
Front Plant Sci . 2022 Nov; 13:976375. PMID: 36352888
Ascochyta blight is one of the most destructive diseases in field pea and is caused by either individual or combined infections by the necrotrophic pathogens , and . Knowledge of...
7.
Karki B, Costanzo L, Joshi S, Fiksman A
Case Rep Rheumatol . 2022 Nov; 2022:6221640. PMID: 36317195
An elderly man with prostate cancer and a deep vein thrombosis (DVT) of the lower extremity diagnosed 12 days ago on apixaban presented with a new-onset palpable rash on both...
8.
Zhao H, Pandey B, Khansefid M, Khahrood H, Sudheesh S, Joshi S, et al.
Front Plant Sci . 2022 Jul; 13:923381. PMID: 35837454
Field pea is the most commonly grown temperate pulse crop, with close to 15 million tons produced globally in 2020. Varieties improved through breeding are important to ensure ongoing improvements...
9.
Joshi S, Thoday-Kennedy E, Daetwyler H, Hayden M, Spangenberg G, Kant S
PLoS One . 2021 Jul; 16(7):e0254908. PMID: 34297757
Drought is one of the most severe and unpredictable abiotic stresses, occurring at any growth stage and affecting crop yields worldwide. Therefore, it is essential to develop drought tolerant varieties...
10.
Thoday-Kennedy E, Joshi S, Daetwyler H, Hayden M, Hudson D, Spangenberg G, et al.
Front Plant Sci . 2021 Jul; 12:662498. PMID: 34220887
Salinity is a major contributing factor to the degradation of arable land, and reductions in crop growth and yield. To overcome these limitations, the breeding of crop varieties with improved...