Connor Sharp

@magicmicrobe.bsky.social

Lecturer in Microbiology at the University of Reading. Interested in uncovering how bacteria fight it out and using those strategies against them

🚨 New preprint with @annadewar.bsky.social 🚨 Do plasmids “ameliorate” towards their hosts? Maybe… We show that the classic plasmid-host GC correlation is confounded by population structure, and argue that plasmid mobility shapes the opportunity for host-associated compositional evolution.

Mobility shapes plasmid GC content evolution

Plasmids are frequently AT-rich relative to their bacterial hosts. Despite this tendency towards lower GC content, plasmid and host chromosome GC content are positively correlated across diverse collections of plasmid-host pairs. However, the evolutionary processes underlying this pattern remain unclear. The classic model of amelioration predicts that horizontally acquired DNA gradually converges on host nucleotide composition. However, because plasmids can repeatedly transfer between bacterial hosts, the opportunity for such host-associated evolution may depend on their transmission dynamics. Using 50,936 plasmid-host pairs from a public sequence database, we found that the apparent global correlation between plasmid and host chromosome GC content was largely driven by differences between bacterial species rather than within species. We therefore accounted for plasmid and host population structure when testing how plasmid mobility shaped host-associated compositional evolution. We compared two contrasting regimes: a population of 3,682 Enterobacterales plasmids distributed across diverse host backgrounds, and six long-term host-associated plasmids from a Rhizobium leguminosarum lineage with INSeq-determined gene essentiality data. In the Enterobacterales population, GC content variation was overwhelmingly explained by plasmid lineage rather than host phylogeny, and conjugative plasmids showed greater similarity to their host chromosomes than mobilisable or non-mobilisable plasmids. In the Rhizobium leguminosarum plasmids, synonymous-site composition was more similar to the host chromosome among genes required across multiple host life stages. Together, these results support a model in which plasmid mobility influences the opportunity for host-associated evolutionary processes to alter nucleotide composition. ### Competing Interest Statement The authors have declared no competing interest. Wellcome Trust, 319534/Z/24/Z St. John's College, University of Oxford, UK

doi.org

Really excited to share a fully-funded PhD position in my lab at the University of Reading exploring how E. coli uses competition to survive in the microbiome. Perfect for anyone interested in using a mix of biochem and ecology to study pathogens. Deadline May 29th! www.findaphd.com/phds/project...

Investigating how E. coli exploits bacterial competition in the microbiome at University of Reading on FindAPhD.com

PhD Project - Investigating how E. coli exploits bacterial competition in the microbiome at University of Reading, listed on FindAPhD.com

findaphd.com

Why do bacteria carry multiple similar weapons? Great to team up with @s-booth.bsky.social again, combining some very cool experimental work and bioinformatics to investigate why bacteria keep hold of seemingly redundant weapons.

Sean Booth@s-booth.bsky.social · 5mo ago

For my first bluesky post I'm stoked to share this work, done with fellow Foster lab alum Connor Sharp! (@magicmicrobe.bsky.social) We set out to discover why bacteria carry multiple similar weapons for attacking other bacteria. www.biorxiv.org/content/10.6...

A stylized cartoon of a bacterial cell. It is blue with three long wavy filaments curved around it. On the top left are four cyan spiral spikes, on the bottom left are four navy spiral spikes. Floating on the right of the cell are three groups of stylized proteins. Each group has three wrapped up helices, on group is pink, one purple, one magenta.

What does competition for iron look like for pathogens in different environments? We had the chance to contribute to this great paper looking at Salmonella in the gut with the Cunrath Lab (UoStrasbourg). Salmonella relies on siderophore exploitation at low pH url: academic.oup.com/microlife/ar...

Salmonella relies on siderophore exploitation at low pH

Abstract. Salmonella enterica, a prominent enteric pathogen, employs sophisticated iron acquisition mechanisms to overcome host-imposed iron limitation, no

academic.oup.com

So happy to share this! Bacteriocins were first discovered over 100 years ago, but what do they actually do? We look at >1000 bacteriocin plasmids and find links to virulence and antimicrobial resistance, and frequent bacteriocin sharing in Enterobacteriaceae. www.nature.com/articles/s41...

Bacterial warfare is associated with virulence and antimicrobial resistance - Nature Communications

Bacteria employ a range of competition systems that deliver toxins to inhibit competing strains. This study shows that these systems are particularly important for the ecology of virulent and antibiot...

nature.com