Related Experiment Video
Updated: Mar 19, 2026

Isolation and Genome Analysis of Single Virions using 'Single Virus Genomics'
Published on: May 26, 2013
Cryptosporidium as a testbed for single cell genome characterization of unicellular eukaryotes
Karin Troell1, Björn Hallström2, Anna-Maria Divne3
1Department of Microbiology, National Veterinary Institute, Uppsala, Sweden. karin.troell@sva.se.
Background:
Infectious disease involving multiple genetically distinct populations of pathogens is frequently concurrent, but difficult to detect or describe with current routine methodology. Cryptosporidium sp. is a widespread gastrointestinal protozoan of global significance in both animals and humans. It cannot be easily maintained in culture and infections of multiple strains have been reported. To explore the potential use of single cell genomics methodology for revealing genome-level variation in clinical samples from Cryptosporidium-infected hosts, we sorted individual oocysts for subsequent genome amplification and full-genome sequencing.
Results:
Cells were identified with fluorescent antibodies with an 80 % success rate for the entire single cell genomics workflow, demonstrating that the methodology can be applied directly to purified fecal samples. Ten amplified genomes from sorted single cells were selected for genome sequencing and compared both to the original population and a reference genome in order to evaluate the accuracy and performance of the method. Single cell genome coverage was on average 81 % even with a moderate sequencing effort and by combining the 10 single cell genomes, the full genome was accounted for. By a comparison to the original sample, biological variation could be distinguished and separated from noise introduced in the amplification.
Conclusions:
As a proof of principle, we have demonstrated the power of applying single cell genomics to dissect infectious disease caused by closely related parasite species or subtypes. The workflow can easily be expanded and adapted to target other protozoans, and potential applications include mapping genome-encoded traits, virulence, pathogenicity, host specificity and resistance at the level of cells as truly meaningful biological units.
Insights
Single cell genomics can now distinguish genetic variations in infectious agents like Cryptosporidium. This method accurately sequences individual pathogen genomes from clinical samples, revealing biological diversity.
Area of Science:
- Parasitology
- Genomics
- Infectious Diseases
Background:
- Multiple genetically distinct pathogen populations in infectious diseases are hard to detect with current methods.
- Cryptosporidium is a significant global gastrointestinal protozoan affecting humans and animals.
- Detecting mixed Cryptosporidium strains is challenging due to difficulties in culturing and routine analysis.
Purpose of the Study:
- To evaluate single cell genomics for analyzing genome-level variation in clinical Cryptosporidium samples.
- To demonstrate the application of single cell genomics in dissecting complex infectious diseases.
Main Methods:
- Individual Cryptosporidium oocysts were sorted for genome amplification and full-genome sequencing.
- Fluorescent antibodies were used for cell identification with an 80% success rate.
- Ten amplified single cell genomes were sequenced and compared to the original population and a reference genome.
Main Results:
- Single cell genome sequencing achieved 81% average coverage, with combined genomes accounting for the full genome.
- Biological variation within the sample was successfully distinguished from amplification noise.
- The methodology proved effective for direct application to purified fecal samples.
Conclusions:
- Single cell genomics successfully revealed genome-level variation in Cryptosporidium.
- This approach can differentiate closely related parasite species or subtypes within a sample.
- The workflow is adaptable for other protozoans, aiding in mapping traits like virulence and host specificity.
More Related Videos
12:11A Modified EPA Method 1623 that Uses Tangential Flow Hollow-fiber Ultrafiltration and Heat Dissociation Steps to Detect Waterborne Cryptosporidium and Giardia spp.
Published on: July 9, 2012
05:31Studying Cryptosporidium Infection in 3D Tissue-derived Human Organoid Culture Systems by Microinjection
Published on: September 14, 2019
Related Concept Videos
Fungal Phylum Microsporidia
Diversity of Protists I
Genomic DNA in Eukaryotes
Diversity of Protists IV
Genomic DNA in Prokaryotes
Genomic Diversity in Bacteria
Although bacterial genomes are much...
Comparing Mitochondrial, Chloroplast, and Prokaryotic Genomes