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Liz Ortiz de Ora

@ortizdeora.bsky.social
361 followers 836 following 26 posts

Microbiologist. Wholobiontist. Molecular and Cell Biologist. Interested in illuminating the invisible connections of the gut microbiome within cross-kingdom interactions.

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Reposted by Liz Ortiz de Ora
Cameron Thrash @jcamthrash.bsky.social · 14/05/2026
Geometric ordering in bacterial communities www.pnas.org/doi/10.1073/... #jcampubs
pnas.org
Geometric ordering in bacterial communities | PNAS
The organization of bacteria has a central role in shaping interactions, dynamics, and composition within communities and microbiomes. Bacteria for...
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Reposted by Liz Ortiz de Ora
Kranzusch Lab @kranzuschlab.bsky.social · 18/02/2026
Congratulations to Ben Morehouse @benmorehouse.bsky.social and the other 2026 Michelson Prize Awardees. All five newly funded projects are incredibly exciting areas of immunology! www.michelsonmedicalresearch.org/news/michels...
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Liz Ortiz de Ora @ortizdeora.bsky.social · 01/02/2026
When viral infection is not an excuse to stop moving!
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Reposted by Liz Ortiz de Ora
Patrick R. Secor @prsecor.bsky.social · 05/01/2026
Now published in PLoS Pathogens! #microsky #phagesky journals.plos.org/plospathogen...
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Reposted by Liz Ortiz de Ora
Ákos T Kovács @evolvedbiofilm.bsky.social · 03/01/2026
A prophage-encoded sRNA limits phage infection of adherent-invasive E. coli #PLoSPathogen from @prsecor.bsky.social journals.plos.org/plospathogen...
journals.plos.org
A prophage-encoded sRNA limits phage infection of adherent-invasive E. coli
Author summary Prophages—viral genomes integrated into bacterial chromosomes—are common in enteric bacteria and can profoundly influence bacterial physiology and ecological fitness. Here we show that ...
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Liz Ortiz de Ora @ortizdeora.bsky.social · 29/12/2025
Sometimes the tick rectal sac looks astral
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Reposted by Liz Ortiz de Ora
Nature Microbiology @natmicrobiol.nature.com · 19/12/2025
Live microscopy to 'phollow' phage outbreaks 🔬✳️ www.nature.com/articles/s41...
nature.com
Phollow reveals in situ phage transmission dynamics in the zebrafish gut microbiome at single-virion resolution - Nature Microbiology
‘Phollow’ is a live imaging-based fluorescence tagging approach that can track phage replication and spread in situ with single-virion resolution.
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Reposted by Liz Ortiz de Ora
Nature Microbiology @natmicrobiol.nature.com · 19/12/2025
As the year ends, we decided to select our favorite papers of 2025 Turns out, it is impossible as we love them all! So, we picked 'some' that exhibit the range of microbiology highlighted through the columns of Nature Microbiology. Here is a glimpse into #EditorPicks of 2025 #MicroSky 🦠
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Reposted by Liz Ortiz de Ora
Asaf Levy @asaflevylab.bsky.social · 26/07/2025
Expression level of anti-phage defence systems controls a trade-off between protection range and autoimmunity By Nitzan Aframian and Avigdor Eldar. www.nature.com/articles/s41...
nature.com
Expression level of anti-phage defence systems controls a trade-off between protection range and autoimmunity - Nature Microbiology
The authors examine several defense systems and find that increased expression enhances their protection range, albeit at a cost of autoimmunity.
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Reposted by Liz Ortiz de Ora
Sternberg Lab @sternberglab.bsky.social · 24/07/2025
1/16 New pre-print from the Sternberg Lab! We uncover how temperate phages can use RNA-guided transcription factors to remodel the flagellar composition of their bacterial host and enhance their fitness. Find the preprint and full story here: tinyurl.com/mshwjd77
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Reposted by Liz Ortiz de Ora
Patrick R. Secor @prsecor.bsky.social · 25/07/2025
We took the day off from the lab and spent all day in Paradise Valley, Montana on the Yellowstone River
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Reposted by Liz Ortiz de Ora
Animalcules @bacteriophile.bsky.social · 01/06/2025
E. coli prophages encode an arsenal of defense systems to protect against temperate phages: Cell Host & Microbe www.cell.com/cell-host-mi...
cell.com
E. coli prophages encode an arsenal of defense systems to protect against temperate phages
Bacteria contain an array of immune systems, with many yet to be discovered. Brenes and Laub isolate temperate phages from diverse E. coli strains, enabling identification of 17 conserved, prophage-en...
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Liz Ortiz de Ora @ortizdeora.bsky.social · 07/05/2025
🤯
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Liz Ortiz de Ora @ortizdeora.bsky.social · 06/05/2025
We’re thrilled to be featured on the May cover of Nature Microbiology... And our Research Briefing is out now—check it out, it’s 🔥! www.nature.com/articles/s41...
nature.com
‘Phollowing’ phage outbreaks in microbiomes with live fluorescence microscopy - Nature Microbiology
Phollow is an in vivo tagging approach for marking bacteriophages with fluorescent proteins while new virions are assembled in bacteria, enabling direct observation of phage outbreaks with single-viri...
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Reposted by Liz Ortiz de Ora
Nature Microbiology @natmicrobiol.nature.com · 25/04/2025
🚨OUT NOW 🚨 Phollow Reveals In Situ Phage Transmission Dynamics in the Zebrafish Gut Microbiome at Single-Virion Resolution 🦠🐟 #MicroSky #MicrobiomeSky www.nature.com/articles/s41...
nature.com
Phollow reveals in situ phage transmission dynamics in the zebrafish gut microbiome at single-virion resolution - Nature Microbiology
‘Phollow’ is a live imaging-based fluorescence tagging approach that can track phage replication and spread in situ with single-virion resolution.
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Liz Ortiz de Ora @ortizdeora.bsky.social · 18/04/2025
I am thrilled to share the first manuscript from the Wiles lab! We present "Phollow", an in vivo phage-tagging approach that enables direct observation of phage outbreaks with single-virion resolution by live imaging. Here some highlights 👇 www.nature.com/articles/s41...
nature.com
Phollow reveals in situ phage transmission dynamics in the zebrafish gut microbiome at single-virion resolution
Nature Microbiology - ‘Phollow’ is a live imaging-based fluorescence tagging approach that can track phage replication and spread in situ with single-virion resolution.
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Reposted by Liz Ortiz de Ora
Michael Baym @baym.lol · 21/02/2025
Legitmately thrilled to share our latest work, in which @fernpizza.bsky.social solved an experimental challenge in plasmid biology as old as the field: measuring how plasmids compete and evolve within individual cells!
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Reposted by Liz Ortiz de Ora
Stephanie Orchanian @stephorch.bsky.social · 17/02/2025
Curious about how the gut microbiome modulates the neurological health of pregnant women and their offspring? Check out my recent review with @pipethero.bsky.social out now @jclinical-invest.bsky.social! 🦠🤰👶🧠 www.jci.org/articles/vie...
jci.org
JCI - The microbiome as a modulator of neurological health across the maternal-offspring interface
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Reposted by Liz Ortiz de Ora
Patrick R. Secor @prsecor.bsky.social · 07/02/2025
Working link: journals.asm.org/doi/10.1128/...
journals.asm.org
Phage reprogramming of Pseudomonas aeruginosa amino acid metabolism drives efficient phage replication | mBio
Bacterial viruses, known as phages, are abundant in all environments that are inhabited by bacteria. During the infection process, phages exploit bacterial resources, resulting in notable changes to b...
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Reposted by Liz Ortiz de Ora
Maria Rebolleda-Gomez @mrebolleda.bsky.social · 18/01/2025
In the literature of domestication and microbiomes there seems to be the expectation that: domestication should lead to the loss of microbiome diversity and host-control. Alejandra Hernandez-Teran and I were both skeptical of both, so we decided to see what we know so far (1/6) shorturl.at/FHY9H
doi.org
Plant domestication does not reduce diversity in root microbiomes
Domestication has profoundly shaped human civilization and the genetic makeup of numerous plant and animal species. While the effects of plant domestication at the genetic and phenotypic levels are well-documented, its impact on plant microbiome remains less understood. Root microbiomes play crucial roles in nutrient acquisition, pathogen defense, and biotic stress tolerance, yet the influence of domestication on their diversity and assembly is still debated. Two primary hypotheses have been proposed: 1) the reduction in microbial diversity resulting from the domestication process, and 2) the diminished ability of host plants to control their microbiomes. To evaluate these hypotheses, we conducted a meta-analysis of multiple crops, comparing the root microbiomes of domesticated plants and their wild relatives. Our results indicate that the effects of domestication are species-specific and context-dependent, with most domesticated plants exhibiting increased microbial diversity and more structured communities, while others show no significant change. Overall, this study provides evidence that plant domestication does not lead to a uniform reduction in microbial diversity or a consistently diminished ability of plants to influence their microbiomes. Based on these findings, we discuss new perspectives and the need for future studies incorporating native soils and host genetic variation in such experiments, analyzing not only diversity but also microbiome function, and considering how root morphology might affect microbiome recruitment. Finally, we highlight the need for research on the potential adaptive or maladaptive consequences that introgression between wild and domesticated plants could have from a microbiome perspective. ### Competing Interest Statement The authors have declared no competing interest.
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Dequina Nicholas @quinascience.bsky.social · 14/01/2025
So Excited to share the newest @biorxivpreprint preprint from the #Nicholaslab Congrats Naveena my 1st #gradstudent on this work. T cells are necessary for development of PCOS reproductive symptoms in a letrozole-induced mouse model of PCOS | bioRxiv www.biorxiv.org/content/10.1...
biorxiv.org
T cells are necessary for development of PCOS reproductive symptoms in a letrozole-induced mouse model of PCOS
Polycystic ovary syndrome (PCOS) is a complex condition with clear genetic susceptibilities that impact the heterogeneous clinical presentation of symptoms and severity through unknown mechanisms. Chr...
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Reposted by Liz Ortiz de Ora
Mark O. Martin @markowenmartin.bsky.social · 09/01/2025
Thursday! Time for a new #MattersMicrobialepisode! Episode #73 with with Dr. Travis Wiles of UC Irvine about directly visualizing the dynamics of the gut microbiome! Filled with #OMG and #WTM moments. PLEASE spread the #GoodMicrobialWord! @bunsen_B @microbe.tv youtu.be/P9UExZIjH_M?...
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Reposted by Liz Ortiz de Ora
Patrick R. Secor @prsecor.bsky.social · 06/01/2025
Friends, please help spread the word about our microbiology REU program at Montana State University. www.montana.edu/mbi/reu/ Each student receives a stipend ($7000 for 10 wks). Travel compensation, room, and board are also provided. Details in the attached pic--Feb 13 deadline 🧫🧪🦠#microsky
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Mark O. Martin @markowenmartin.bsky.social · 03/01/2025
Just finished recording Episode #73 of #MattersMicrobial with Dr. Travis Wiles of UC Irvine. Such an exciting conversation about visualizing the microbiome and observing changes in real time. Wow. @bunsenb @univpugetsound @ASMicrobiology
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Reposted by Liz Ortiz de Ora
bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 21/12/2024
Pervasive phosphorylation by phage T7 kinase disarms bacterial defenses www.biorxiv.org/content/10.1101/202…
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Reposted by Liz Ortiz de Ora
Michael Brockhurst @brockhurstlab.bsky.social · 07/12/2024
Keeping your symbiosis genes on a plasmid is a smart move if you have multiple potential hosts. Here a gut bacterial symbiont, but same is true for N-fixing Rhizobia. www.science.org/doi/10.1126/...
science.org
A conserved bacterial genetic basis for commensal-host specificity
Animals selectively acquire specific symbiotic gut bacteria from their environments that aid host fitness. To colonize, a symbiont must locate its niche and sustain growth within the gut. Adhesins are...
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