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Carl Mesarich

@carlmesarich.bsky.social
287 followers 436 following 12 posts

Molecular Plant Pathologist and Associate Professor at Massey University, New Zealand | Effector Biology | Apple Scab | Tomato Leaf Mould | Kauri Dieback |

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Reposted by Carl Mesarich
CRAG @cragenomica.bsky.social · 05/03/2026
🌱 Join us tomorrow for the seminar by Carl Mesarich (@carlmesarich.bsky.social) from Massey University at 11:00h! 👀 Don't miss it! 📍 CRAG Auditorium 👉 f.mtr.cool/ynnykimnmh
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Carl Mesarich @carlmesarich.bsky.social · 24/02/2026
#AppleScab
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Reposted by Carl Mesarich
Société Française de Phytopathologie @sfp-france.bsky.social · 16/01/2026
#JJC2026 @baudinmael.bsky.social (@irhs-angers.bsky.social) on ancient MAX #effector variants of a #fungal #pathogen evading apoplastic #immunity in #apple
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Reposted by Carl Mesarich
Lauren Hemara @hemara.nz · 06/01/2026
Delighted to see this published in ISMEJ at the end of 2025!! Building on our previous work with the Psa-kiwifruit pathosystem, we competed Psa effector knockout strains against one another, across hosts, to more sensitively identify effector requirements. 🥝🌿 academic.oup.com/ismej/articl...
academic.oup.com
Individually redundant effectors are collectively required for bacterial pathogen virulence
Abstract. Host specificity of a plant pathogen is defined by its effector complement. However, it remains unclear whether the full complement is required f
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Reposted by Carl Mesarich
Maël Baudin @baudinmael.bsky.social · 05/01/2026
🧬 New preprint on fungal effector 🍄🍎 We identify AvrRvi6, the first AVR from Venturia inaequalis. AvrRvi6 is a MAX effector with apoplastic activity, expanding the functional landscape of this major effector family. 📄 bioRxiv: www.biorxiv.org/content/10.6...
biorxiv.org
Ancient MAX Effector Variants of a Fungal Pathogen Evade Apoplastic Immunity in Apple
Venturia inaequalis is an Ascomycota fungus responsible for apple scab, the main disease in apple orchards. During infection, the pathogen colonizes the subcuticular space and secretes hundreds of eff...
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Carl Mesarich @carlmesarich.bsky.social · 02/01/2026
26 years after I planted a #kauri sapling on #Waiheke Island 😍
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Reposted by Carl Mesarich
bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 26/12/2025
Ancient MAX Effector Variants of a Fungal Pathogen Evade Apoplastic Immunity in Apple www.biorxiv.org/content/10.64898/20…
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Reposted by Carl Mesarich
bioRxivpreprint @biorxivpreprint.bsky.social · 26/12/2025
Ancient MAX Effector Variants of a Fungal Pathogen Evade Apoplastic Immunity in Apple www.biorxiv.org/content/10.64898/20…
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Reposted by Carl Mesarich
bioRxivpreprint @biorxivpreprint.bsky.social · 26/12/2025
From Nicotiana to apple: effector screening reveals new avenues for durable scab resistance www.biorxiv.org/content/10.64898/20…
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bioRxiv Microbiology @biorxiv-microbiol.bsky.social · 26/12/2025
From Nicotiana to apple: effector screening reveals new avenues for durable scab resistance www.biorxiv.org/content/10.64898/20…
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Carl Mesarich @carlmesarich.bsky.social · 07/11/2025
Very happy to see this nice piece of work online, led by superstar postdoc Mariana Tarallo. A great collaboration between the teams at @bioprotection.bsky.social/Massey University and the James Hutton Institute!
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Isabelle Fudal @ifudal.bsky.social · 24/09/2025
Now published in Plant Pathology. 'Molecular Investigation of Rlm3 From Rapeseed as a Potential Broad‐Spectrum Resistance Gene Against Fungal Pathogens Producing Structurally Conserved Effectors' - Talbi - Plant Pathology - Wiley Online Library bsppjournals.onlinelibrary.wiley.com/doi/10.1111/...
bsppjournals.onlinelibrary.wiley.com
Molecular Investigation of Rlm3 From Rapeseed as a Potential Broad‐Spectrum Resistance Gene Against Fungal Pathogens Producing Structurally Conserved Effectors
AvrLm3 and structural analogues from the multipathogen LARS family trigger recognition by Rlm3 from rapeseed, that recognition being abolished by the presence of AvrLm4-7 or mutation of key amino aci...
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Reposted by Carl Mesarich
Isabelle Fudal @ifudal.bsky.social · 24/09/2025
The first article of Camille Rabeau (CIFRE PhD student @inrae-bioger.bsky.social and @innolea) now on bioRxiv. Camille characterized Leptosphaeria maculans effector genes expressed during stem colonization of rapeseed and identified new resistance sources. www.biorxiv.org/content/10.1...
biorxiv.org
Conserved 'late' effector genes from Leptosphaeria maculans inducing gene-for-gene quantitative resistance in Brassica napus semi-winter genotypes
Leptosphaeria maculans is a phytopathogenic fungus responsible for stem canker on Brassica napus . Its infectious cycle goes through an early phase of leaf infection and a late phase of colonization a...
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Michael Plank @michaelplanknz.bsky.social · 06/08/2025
A 29% cut to the Marsden Fund, plus major cuts to Endeavour, HRC and elsewhere 😠 With success rates already in single figures in some areas and funding not keeping pace with rising costs, this is devastating for New Zealand science
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Liz Florez @lizflorez.bsky.social · 14/07/2025
🧪⚔️ When a fungal effector tries to coexist with plant apoplastic bacteria My poster’s not up until Thursday, but you can already check it out on Zenodo 👀 📎 zenodo.org/records/1585... 🧾 Poster P-166, Thur 17th, 1:30 pm #2025ISMPMI
zenodo.org
The fungal effector AvrStb6 regulates the wheat pathobiome
Zymoseptoria tritici, the causal agent of the foliar disease Septoria tritici blotch (STB), is a major wheat pathogen in Europe. Although several wheat resistance (R) genes have been identified, Z. tr...
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Carl Mesarich @carlmesarich.bsky.social · 12/06/2025
New research led by Christiaan Schol showing that the Ecp5 effector of Fulvia fulva is Avr6! Congrats to all co-authors! 🍅
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Remco Stam @rstam.bsky.social · 25/04/2025
New Paper out! apsjournals.apsnet.org/doi/epdf/10.... We wanted to know how much genetic variation exists for Zymoseptoria in a single wheat field.
apsjournals.apsnet.org
Zymoseptoria tritici Show Local Differences in Within-Field Diversity and Effector Variation
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Carl Mesarich @carlmesarich.bsky.social · 03/04/2025
Happy to welcome Keith Thorburn and Ashleigh Mosen to our Bioprotection Aotearoa team at Massey Uni! Both will be working on PhD projects related to the identification & functional characterization of avirulence effectors in the #AppleScab fungus, Venturia inaequalis 🍏🍎
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Juan Carlos De la Concepcion @delaconcepcionjc.bsky.social · 26/03/2025
Structure-guided insights into the biology of fungal effectors nph.onlinelibrary.wiley.com/doi/full/10....
nph.onlinelibrary.wiley.com
Structure‐guided insights into the biology of fungal effectors
Phytopathogenic fungi cause enormous yield losses in many crops, threatening both agricultural production and global food security. To infect plants, they secrete effectors targeting various cellular...
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Reposted by Carl Mesarich
Jason Stajich @hyphaltip.bsky.social · 01/03/2025
www.tandfonline.com/doi/full/10....
tandfonline.com
Use their names: there are no basal, lower, or early diverging fungi
Fungal biologists have embraced phylogenies for understanding the biology of this diverse group in an evolutionary framework. In an attempt to highlight lineages of fungi that are distinct from the...
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Reposted by Carl Mesarich
Edel Pérez-López 🇨🇦 @edelplopez.bsky.social · 21/02/2025
Out in @elife.bsky.social ! 🎉 Thank you @sohambio.bsky.social for your persistence! Also to @asimjaved.bsky.social & @jiaxuwu.bsky.social for your contributions! So excited to keep understanding gall-forming pathogens using these results as a starting point! elifesciences.org/reviewed-pre...
promotional figure
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Harrold van den Burg @havandenburg.bsky.social · 10/02/2025
Great new study from our lab revealing insights in Xanthomonas evolution and how loss of the Crispr genome defense was a key step for X. campestris pv campestris.
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Gitta Coaker @gittacoaker.bsky.social · 10/02/2025
www.cell.com/current-biol...
cell.com
Evolution of a vascular plant pathogen is associated with the loss of CRISPR-Cas and an increase in genome plasticity and virulence genes
Paauw et al. report on the evolution of a plant pathogenic Xanthomonas pathovar and show that the gain of mobile genetic elements and virulence factors coincided with the loss of the CRISPR-Cas genome...
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Isabelle Fudal @ifudal.bsky.social · 09/02/2025
Could we identify broad-spectrum resistances able to recognize structural families of effectors? During her PhD, Nacera Talbi demonstrated proof of concept with the Rlm3 resistance protein, which can recognize members of the LARS structural family. www.biorxiv.org/content/10.1...
biorxiv.org
Molecular investigation of Rlm3 from rapeseed as a broad-spectrum resistance gene against fungal pathogens producing structurally conserved effectors
Recognition of a pathogen avirulence (AVR) effector protein by its cognate plant resistance (R) protein triggers immune responses that render the plant resistant, representing an efficient disease con...
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Team Thomma @teamthomma.bsky.social · 10/01/2025
📣New year, new preprint @biorxiv-microbiol.bsky.social 🎉! A study led by the brilliant @yukiyosato.bsky.social showing that Starship giant transposons dominate plastic genomic regions in the fungal plant pathogen Verticillium dahliae and drive virulence evolution. 🧵[1/12] doi.org/10.1101/2025...
doi.org
Starship giant transposons dominate plastic genomic regions in a fungal plant pathogen and drive virulence evolution
Starships form a recently discovered superfamily of giant transposons in Pezizomycotina fungi, implicated in mediating horizontal transfer of diverse cargo genes between fungal genomes. Their elusive nature has long obscured their significance, and their impact on genome evolution remains poorly understood. Here, we reveal a surprising abundance and diversity of Starships in the phytopathogenic fungus Verticillium dahliae. Remarkably, Starships dominate the plastic genomic compartments involved in host colonization, are enriched in virulence-associated genes, and exhibit genetic and epigenetic characteristics associated with adaptive genome evolution. We further uncover extensive horizontal transfer of Starships between Verticillium species and, strikingly, from distantly related Fusarium fungi. Finally, we demonstrate how Starship activity facilitated the de novo formation of a novel virulence gene. Our findings illuminate the profound influence of Starship dynamics on fungal genome evolution and the development of virulence. ### Competing Interest Statement The authors have declared no competing interest.
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Riccardo Baroncelli @riccardobaroncelli.bsky.social · 26/12/2024
Fascinating insights into #Fusarium oxysporum! 🌟 A new study uses reference-free pangenome variation to reveal the #evolution of accessory chromosomes, showcasing their role in host specificity and horizontal transfer. Wow!!! #FungalGenomics @mfseidl.bsky.social www.biorxiv.org/content/10.1...
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Carl Mesarich @carlmesarich.bsky.social · 20/12/2024
Looks like Rvi12, the third major apple scab resistance gene to be cloned, encodes an RLK: onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
The Hansen's baccata #2 gene Rvi12_Cd5 confers scab resistance to the susceptible apple cultivar “Gala Galaxy”
A new apple scab resistance gene was characterized. It may be a valuable resource for both breeders and scientists, to produce new apple cultivars that are naturally resistant to this dangerous patho...
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Associate Professor Siouxsie Wiles @siouxsiew.bsky.social · 04/12/2024
It’s a dark day for research in Aotearoa New Zealand and the ramifications for the country are huge. Minister Judith Collins has just announced our blue-skies funder will no longer fund humanities & social science research and that 50% of what is funded must have economic benefit.
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Liz Florez @lizflorez.bsky.social · 29/11/2024
Let me introduce myself! 😊
https://www.environmental-genomics.de/liz-flores.html
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Carl Mesarich @carlmesarich.bsky.social · 25/06/2024
Happy to see our Avr9B story published in @newphyt.bsky.social! Sequential breakdown of the Cf-9 leaf mould resistance locus in tomato by Fulvia fulva: nph.onlinelibrary.wiley.com/doi/10.1111/...
nph.onlinelibrary.wiley.com
Sequential breakdown of the Cf‐9 leaf mould resistance locus in tomato by Fulvia fulva
<em>New Phytologist</em> is an international journal owned by the New Phytologist Foundation publishing original research in plant science and its applications.
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Carl Mesarich @carlmesarich.bsky.social · 11/02/2024
Please spread the word! This year’s Stromlo Plant Pathology Meeting will be held in beautiful Queenstown, New Zealand, on Aug 31-Sep 01 (www.queenstownresearchweek.org/plant-microb...)! Queenstown at that time of year is simply amazing, with lots to do: queenstownnz.co.nz
queenstownnz.co.nz
Queenstown New Zealand | Official Tourism Website
Queenstown NZ is the official website for Queenstown accommodation, things to do in Queenstown, activities, shopping, wine, events, conferences and more!
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