Achal Dhariwal

2.3k total citations · 1 hit paper
15 papers, 1.6k citations indexed

About

Achal Dhariwal is a scholar working on Molecular Biology, Infectious Diseases and Pulmonary and Respiratory Medicine. According to data from OpenAlex, Achal Dhariwal has authored 15 papers receiving a total of 1.6k indexed citations (citations by other indexed papers that have themselves been cited), including 7 papers in Molecular Biology, 4 papers in Infectious Diseases and 3 papers in Pulmonary and Respiratory Medicine. Recurrent topics in Achal Dhariwal's work include Gut microbiota and health (7 papers), Oral microbiology and periodontitis research (3 papers) and Clostridium difficile and Clostridium perfringens research (3 papers). Achal Dhariwal is often cited by papers focused on Gut microbiota and health (7 papers), Oral microbiology and periodontitis research (3 papers) and Clostridium difficile and Clostridium perfringens research (3 papers). Achal Dhariwal collaborates with scholars based in Norway, Canada and Denmark. Achal Dhariwal's co-authors include Jianguo Xia, Irah L. King, Salam M. Habib, Luis B. Agellon, Jasmine Chong, Fernanda C. Petersen, Ghislaine Fontès, Roger Junges, Nargis Khan and Ajjamada C. Kushalappa and has published in prestigious journals such as Nucleic Acids Research, Nature Communications and Scientific Reports.

In The Last Decade

Achal Dhariwal

14 papers receiving 1.6k citations

Hit Papers

MicrobiomeAnalyst: a web-based tool for comprehensive sta... 2017 2026 2020 2023 2017 400 800 1.2k

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Achal Dhariwal Norway 9 838 252 211 199 165 15 1.6k
Salam M. Habib Canada 5 728 0.9× 246 1.0× 178 0.8× 183 0.9× 104 0.6× 5 1.4k
Shyamal Peddada United States 15 1.0k 1.2× 266 1.1× 190 0.9× 253 1.3× 196 1.2× 41 2.1k
James T. Morton United States 8 1.1k 1.4× 464 1.8× 188 0.9× 203 1.0× 153 0.9× 8 1.9k
Lauren Petersen United States 8 1.2k 1.4× 286 1.1× 173 0.8× 265 1.3× 183 1.1× 12 1.9k
Jakub Truszkowski Canada 6 893 1.1× 490 1.9× 230 1.1× 125 0.6× 120 0.7× 15 1.7k
Daniela I. Drautz‐Moses Singapore 23 748 0.9× 263 1.0× 148 0.7× 166 0.8× 106 0.6× 70 1.6k
Amélia Camarinha‐Silva Germany 25 1.1k 1.3× 218 0.9× 253 1.2× 196 1.0× 202 1.2× 86 2.2k
Laurent Cauquil France 24 996 1.2× 317 1.3× 315 1.5× 165 0.8× 255 1.5× 62 2.4k
Gavin M. Douglas Canada 15 1.1k 1.3× 455 1.8× 434 2.1× 161 0.8× 133 0.8× 31 2.0k
Süleyman Yıldırım United States 18 1.1k 1.3× 290 1.2× 171 0.8× 209 1.1× 249 1.5× 37 2.2k

Countries citing papers authored by Achal Dhariwal

Since Specialization
Citations

This map shows the geographic impact of Achal Dhariwal's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Achal Dhariwal with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Achal Dhariwal more than expected).

Fields of papers citing papers by Achal Dhariwal

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Achal Dhariwal. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Achal Dhariwal. The network helps show where Achal Dhariwal may publish in the future.

Co-authorship network of co-authors of Achal Dhariwal

This figure shows the co-authorship network connecting the top 25 collaborators of Achal Dhariwal. A scholar is included among the top collaborators of Achal Dhariwal based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Achal Dhariwal. Achal Dhariwal is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

15 of 15 papers shown
1.
Dhariwal, Achal, et al.. (2025). Large-scale global molecular epidemiology of antibiotic resistance determinants in Streptococcus pneumoniae. Microbial Genomics. 11(7). 1 indexed citations
2.
Shekhar, Sudhanshu, Martin Schwarzer, Achal Dhariwal, & Fernanda C. Petersen. (2025). Nasal microbiota transplantation: a gateway to novel treatments. Trends in Microbiology. 33(3). 264–267. 4 indexed citations
3.
Rued, Britta E., Achal Dhariwal, Brett C. Covington, et al.. (2025). Impact of the RaS-RiPP tryglysin and culturing conditions on ex-vivo oral microbiomes. npj Biofilms and Microbiomes. 11(1). 152–152.
4.
Brar, Navdeep, Achal Dhariwal, Roger Junges, et al.. (2024). Exploring ex vivo biofilm dynamics: consequences of low ampicillin concentrations on the human oral microbiome. npj Biofilms and Microbiomes. 10(1). 37–37. 2 indexed citations
5.
Dhariwal, Achal, Gabriela Salvadori, Dag Berild, et al.. (2024). Prolonged hospitalization signature and early antibiotic effects on the nasopharyngeal resistome in preterm infants. Nature Communications. 15(1). 6024–6024. 5 indexed citations
6.
Brar, Navdeep, Achal Dhariwal, Sudhanshu Shekhar, et al.. (2024). HAMLET, a human milk protein-lipid complex, modulates amoxicillin induced changes in an ex vivo biofilm model of the oral microbiome. Frontiers in Microbiology. 15. 1406190–1406190. 1 indexed citations
7.
Singh, Yogesh, Christoph Trautwein, J. Romaní, et al.. (2023). Overexpression of human alpha-Synuclein leads to dysregulated microbiome/metabolites with ageing in a rat model of Parkinson disease. Molecular Neurodegeneration. 18(1). 44–44. 22 indexed citations
8.
Dhariwal, Achal, Gabriela Salvadori, Roger Junges, et al.. (2022). Differential response to prolonged amoxicillin treatment: long-term resilience of the microbiome versus long-lasting perturbations in the gut resistome. Gut Microbes. 15(1). 20 indexed citations
9.
Dhariwal, Achal, Gabriela Salvadori, Roger Junges, et al.. (2022). Microbial DNA extraction of high-host content and low biomass samples: Optimized protocol for nasopharynx metagenomic studies. Frontiers in Microbiology. 13. 1038120–1038120. 20 indexed citations
10.
Dhariwal, Achal, et al.. (2021). ResistoXplorer: a web-based tool for visual, statistical and exploratory data analysis of resistome data. NAR Genomics and Bioinformatics. 3(1). lqab018–lqab018. 17 indexed citations
11.
Singh, Yogesh, Christoph Trautwein, Achal Dhariwal, et al.. (2020). DJ-1 (Park7) affects the gut microbiome, metabolites and the development of innate lymphoid cells (ILCs). Scientific Reports. 10(1). 16131–16131. 21 indexed citations
12.
Dhariwal, Achal, et al.. (2020). Role of laccase gene in wheat NILs differing at QTL-Fhb1 for resistance against Fusarium head blight. Plant Science. 298. 110574–110574. 33 indexed citations
13.
Dhariwal, Achal, et al.. (2019). Impact of narrow-spectrum penicillin V on the oral and faecal resistome in a young child treated for otitis media. Journal of Global Antimicrobial Resistance. 20. 290–297. 13 indexed citations
14.
Khan, Nargis, Achal Dhariwal, Ghislaine Fontès, et al.. (2019). Intestinal dysbiosis compromises alveolar macrophage immunity to Mycobacterium tuberculosis. Mucosal Immunology. 12(3). 772–783. 66 indexed citations
15.
Dhariwal, Achal, Jasmine Chong, Salam M. Habib, et al.. (2017). MicrobiomeAnalyst: a web-based tool for comprehensive statistical, visual and meta-analysis of microbiome data. Nucleic Acids Research. 45(W1). W180–W188. 1356 indexed citations breakdown →

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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