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Yi-Chang Sung (宋宜璋)

@yichangsung.bsky.social
107 followers 92 following 18 posts

Postdoc scientist at UC Davis. Working on molecular plant microbe interaction.

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Reposted by Yi-Chang Sung (宋宜璋)
Sophien Kamoun @kamounlab.bsky.social · 09/09/2026
“It's unhelpful to draw a sharp line between applied and basic research” Cristobal Uauy @cristobaluauy.bsky.social Director of the John Innes Centre @johninnescentre.bsky.social #PPATH2026 #BSPP26
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 06/05/2026
This work shows that experimental context shapes Arabidopsis immune responses, with implications for how we interpret PRR signaling assays. Heavy lifting by @alba-mp.bsky.social and undergrad researcher Hanxu Sha (who will now pursue her PhD in a plant biology lab at Stanford).
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Reposted by Yi-Chang Sung (宋宜璋)
Alba Moreno Pérez @alba-mp.bsky.social · 05/05/2026
Excited to share our new preprint! We explore how experimental context influences immune responses triggered by elf18 and flg22 in Arabidopsis. Huge thanks to @gittacoaker.bsky.social for her guidance and support, and to Hanxu Sha for her help on this project. www.biorxiv.org/content/10.6...
biorxiv.org
Experimental Context Shapes PRR-Mediated Immune Output Sensitivity in Arabidopsis
Pattern recognition receptors (PRRs) mediate plant immune responses by detecting extracellular immunogenic patterns, including microbe-associated molecular patterns (MAMPs). PRR signaling is commonly assessed using assays such as reactive oxygen species (ROS) bursts, cytosolic calcium influx, mitogen-activated protein kinase (MAPK) activation, and seedling growth inhibition (SGI), which are performed in distinct experimental systems, including seedlings grown on artificial media and soil-grown rosettes. Here, we systematically compare receptor kinase immune outputs triggered by the bacterial MAMPs elf18 and flg22 in Arabidopsis thaliana seedlings and rosettes across a range of concentrations. Rosettes exhibited greater sensitivity than seedlings in ROS assays, whereas cytosolic calcium responses measured using the Aeqcyt/pMAQ2 reporter were stronger in seedlings, correlating with reduced reporter transcript accumulation in rosette tissue. MAPK activation was consistently stronger in rosettes, whereas SGI assays revealed higher sensitivity to elf18 than flg22 in seedlings despite flg22 inducing stronger early signaling outputs. Together, these results demonstrate that canonical PRR-mediated immune outputs are differentially sensitive to experimental context and should not be interpreted as interchangeable measures of immune activation. These findings highlight the importance of considering experimental conditions when comparing immune responses across assays and developmental stages. ### Competing Interest Statement The authors have declared no competing interest. National Institutes of Health, https://ror.org/01cwqze88, R35GM136402 Fundación Alfonso Martín Escudero, https://ror.org/02897ye82
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 05/05/2026
Excited to share that I’ve completed my postdoc at UC Davis and started a new role as Scientist with PI AgSciences R&D team in Seattle. It's been a true privilege to work with @gittacoaker.bsky.social and her brilliant team, investigating how plant tandem kinase proteins recognize pathogens.
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Reposted by Yi-Chang Sung (宋宜璋)
Nick Talbot @talbotlabtsl.bsky.social · 22/03/2026
Some reflections on #Fungal26 This was a great meeting as always but set against some turbulent times of course, which meant many regular attendees were not present. This thread is mainly for them. However, the proportion of first-time attendees was very high and very international. #Fungal26 1/15
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Reposted by Yi-Chang Sung (宋宜璋)
LaBella Lab @lablabella.bsky.social · 19/03/2026
Yi-Chang Sung @yichangsung.bsky.social examines the role of TKP in plant immunity using a rice 🌾 🍚 model #fungal26
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 20/03/2026
It was a great honor to give a Chairs’ Choice Plenary Talk at the Fungal Genetics Conference #fungal26 ! I truly appreciated the opportunity to share our research on tandem kinases and the rice blast system for TKP studies. Great science, great community, and beautiful Asilomar sunshine.
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 03/02/2026
Happy to share my postdoc project at the UCD plant pathology seminar!
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 02/02/2026
@yichangsung.bsky.social gave a great talk on tandem kinases for the UC Davis Plant Path seminar.
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 01/12/2025
@charisramsing.bsky.social gave a great seminar on Clavibacter for UC Davis’ Plant Pathology Department today. New insights into tomato colonization and effector recognition. #MPMI
Charis Ramsing delivering a seminar and reminding the audience about xylem anatomy.
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 27/11/2025
1st time being a plenary speaker! Thanks for the invitation from @plantpathpete.bsky.social and @williamsanu.bsky.social to the Stromolo Conference 2025, sharing my recent findings on plant tandem kinases! Good to visit Canberra again after my PhD!
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Reposted by Yi-Chang Sung (宋宜璋)
Peter Solomon @plantpathpete.bsky.social · 30/10/2025
Registrations for the Stromlo Plant Pathogen Conference #StromPath25 are rolling in fast and the program is now full! Exciting lineup from Japan, Korea, USA, UK, NZ + strong local crew. Join us in Canberra — rego open until Nov 13. Program available here tinyurl.com/3e3tx9j2
tinyurl.com
10th Stromlo Plant Pathology Conference | wheatbiosecurity
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 17/09/2025
Our review on disease resistance gene diversity in Triticeae is finally online 🌾🌾! Gained so many insights writing it with Yinghui Li & Liubov Govta and from the guidance of gittacoaker.bsky.social & Tzion Fahima. Fascinated by plant resistance gene diversity—excited to share!
annualreviews.org
The Spectrum of Diverse Disease-Resistance Genes Cloned and Characterized in the Triticeae Tribe | Annual Reviews
The Triticeae tribe comprises species representing some of the world's largest food and forage crops, including common wheat, durum, barley, rye, and oat. Crop yields are continuously threatened ...
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Reposted by Yi-Chang Sung (宋宜璋)
Peter Solomon @plantpathpete.bsky.social · 20/08/2025
Registrations are rolling in for the 2025 Stromlo Plant Pathology meeting in Canberra (Nov 27–28)! Secure your spot! Speakers: @yasukadota.bsky.social, Cecille Segonzac, @thamlab.bsky.social, @yichangsung.bsky.social, Tek Tay & @danielsyu.bsky.social. Register at tinyurl.com/3e3tx9j2 #strompath25
tinyurl.com
10th Stromlo Plant Pathology Conference | wheatbiosecurity
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 14/06/2025
Submitted my first NIH grant proposal ! 🤞🤞🤞
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 03/06/2025
Excited this MS is out! Here, we genome edited Pire in tomato, a conserved E3 ligase controlling NADPH oxidase accumulation in Arabidopsis. Edited lines exhibited enhanced resistance to foliar bacterial pathogens, but not two root colonizing pathogens. #PlantImmunity academic.oup.com/plcell/artic...
academic.oup.com
Gene editing of the E3 ligase PIRE1 fine-tunes reactive oxygen species production for enhanced bacterial disease resistance in tomato
An E3 ligase helps control plant immune responses and regulates reactive oxygen species production, offering a strategy to boost disease resistance in leav
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Reposted by Yi-Chang Sung (宋宜璋)
Ching-Jung Lin @chjlin.bsky.social · 09/05/2025
👀 EFR-mediated PTI restricts transient transformation and genome editing, but not T-DNA integration. This study combines floral stage targeting 🌷, immune evasion 🛡️, and Agrobacterium engineering 🔧 to boost plant genome editing efficiency. #Agrobacterium #GenomeEditing www.biorxiv.org/content/10.1...
biorxiv.org
Floral Stage Optimization and Immune Evasion Enhance Agrobacterium-Mediated Genome Editing in Arabidopsis
Agrobacterium-mediated transformation via floral inoculation (AMT-FI) enables genetic engineering without tissue culture. It is widely used in the model plant Arabidopsis thaliana, yet its efficiency ...
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 09/05/2025
Paper submitted! One of the last in @jerrytli.bsky.social’s stellar PhD.
Gitta and Tianrun in the office
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 09/05/2025
Phoebe Sinner and @yichangsung.bsky.social presented their work on vector borne effectors and Tandem Kinase Proteins @ucdavis.bsky.social host microbe interactions meeting. Great job by both!!
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 25/04/2025
Our Research Briefing on the tandem kinase proteins paper is online now! Curious about the story behind our TKP paper? 📄 Research Briefing: www.nature.com/articles/s41... 📄 Research article: www.nature.com/articles/s41...
nature.com
A plant dual-kinase protein traps a pathogen effector to trigger immunity - Nature Genetics
Tandem kinase proteins (TKPs) are key regulators of plant immunity. We found that RWT4, a wheat TKP, confers resistance to the fungal pathogen Magnaporthe oryzae by directly recognizing the effector A...
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 24/04/2025
Story behind our recent paper on tandem kinases is out! Written by @yichangsung.bsky.social. #MPMI #PlantBiology www.nature.com/articles/s41...
nature.com
A plant dual-kinase protein traps a pathogen effector to trigger immunity - Nature Genetics
Tandem kinase proteins (TKPs) are key regulators of plant immunity. We found that RWT4, a wheat TKP, confers resistance to the fungal pathogen Magnaporthe oryzae by directly recognizing the effector A...
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 15/04/2025
🌾 Excited to share our research on plant tandem kinase proteins (TKPs)! It’s been fascinating to explore how TKPs interplay effectors to activate plant immunity. Big thanks to my supervisor @gittacoaker.bsky.social, my undergrad student Suji Baik, and our collaborators—it's truly a team effort!
nature.com
Wheat tandem kinase RWT4 directly binds a fungal effector to activate defense - Nature Genetics
This study shows that RWT4, a wheat tandem kinase, confers resistance to the fungal pathogen Magnaporthe oryzae by directly binding to the pathogen effector AvrPWT4 and activating host defense.
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Reposted by Yi-Chang Sung (宋宜璋)
Gitta Coaker @gittacoaker.bsky.social · 15/04/2025
I'm very excited our most recent work on plant tandem kinases (TKPs) has finally been published! TKPs are a fascinating protein family conferring disease resistance to fungi. Originally in bioRxiv. Many thanks to @yichangsung.bsky.social for leading this work. 🧵 www.nature.com/articles/s41...
nature.com
Wheat tandem kinase RWT4 directly binds a fungal effector to activate defense - Nature Genetics
This study shows that RWT4, a wheat tandem kinase, confers resistance to the fungal pathogen Magnaporthe oryzae by directly binding to the pathogen effector AvrPWT4 and activating host defense.
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Yi-Chang Sung (宋宜璋) @yichangsung.bsky.social · 09/03/2025
First post on Bluesky is to Stand up for Science!
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