Sign in

nicocecchini.bsky.social

@nicocecchini.bsky.social
88 followers 291 following 20 posts
PostsRepliesMedia
Reposted by @nicocecchini.bsky.social
Ignacio Lescano López @nacholescano.bsky.social · 02/07/2026
7/7 💡 Our results identify NBR1-mediated degradation of ABI5 as a temperature-dependent mechanism that restrains ABA-associated susceptibility to maintain immunity under warming 📷Working model below ⬇️ 🌱Comments and feedback are very welcome! Great teamwork from everyone ! 😊
221
Reposted by @nicocecchini.bsky.social
Ignacio Lescano López @nacholescano.bsky.social · 02/07/2026
🧵 1/7 🌡️ How do plants maintain immunity as temperatures rise? Excited to share our new preprint showing that selective #autophagy promotes bacterial #immunity under #warming through NBR1-dependent regulation of ABI5. 📄https://biorxiv.org/content/10.64898/2026.07.01.735842v1 #PlantScience
3114
Reposted by @nicocecchini.bsky.social
PlantEvolution 🌱🌾 @plantevolution.bsky.social · 11/06/2026
Amazing! This report suggests that a gall aphid injects into their plant host an enzyme that manipulates auxin levels in the host and thereby induces galls. #plantscience #plantsci www.biorxiv.org/content/10.6...
16927
nicocecchini.bsky.social @nicocecchini.bsky.social · 11/06/2026
Check out our new work on a NLR targeted to plastids envelope and/or plant vascular tissue! www.sciencedirect.com/science/arti... - onlinelibrary.wiley.com/doi/10.1111/...
sciencedirect.com
000
Reposted by @nicocecchini.bsky.social
Jean Greenberg @jeantgreenberg.bsky.social · 18/03/2026
@ismpmi.bsky.social #IS-MPMI members: We are getting a new website soon! There will be a temporary site while we build the new one. Check here for updates on our progress. You will still be able to become or renew your membership or make a donation while we make the new site.
023
Reposted by @nicocecchini.bsky.social
James Lloyd 🧬 @jamespblloyd.bsky.social · 18/03/2026
Cool new perspective paper: Alternative splicing: an underexplored layer in immune receptor regulation, systemic resistance and priming www.frontiersin.org/journals/pla...
frontiersin.org
Frontiers | Alternative splicing: an underexplored layer in immune receptor regulation, systemic resistance and priming
Plant immunity relies on precise regulation of pattern-recognition receptors (PRRs) and nucleotide-binding leucine-rich repeat receptors (NLRs). Beyond trigg...
043
Reposted by @nicocecchini.bsky.social
Alf Soler-Bistué 🦠🔬🧫 @alfmicrobe.bsky.social · 17/03/2026
Just published! at @narjournal.bsky.social . A new example of how gene order in bacterial genomes impacts cell physiology. Inthis episode we messed up with RNA polymerase genes! academic.oup.com/nar/article/...
academic.oup.com
Evolutionary constraints on RNA polymerase gene positioning in the genome of fast-growing bacteria
Abstract. How gene order along chromosomes affects cellular homeostasis and genome evolution remains poorly understood. Bacterial chromosomes are organized
24220
nicocecchini.bsky.social @nicocecchini.bsky.social · 14/03/2026
Our new article on the alternative splicing–plant immunity receptor crossroads is out! Amazing work done with wonderfull collaborators! Ezequiel Petrillo and @damiancambiagno.bsky.social frontiersin.org/journals/pla...
frontiersin.org
Frontiers | Alternative splicing: an underexplored layer in immune receptor regulation, systemic resistance and priming
Plant immunity relies on precise regulation of pattern-recognition receptors (PRRs) and nucleotide-binding leucine-rich repeat receptors (NLRs). Beyond trigg...
011
Reposted by @nicocecchini.bsky.social
Jean Greenberg @jeantgreenberg.bsky.social · 05/03/2026
@ismpmi.bsky.social
145
Reposted by @nicocecchini.bsky.social
Clémence Marchal @clemmar.bsky.social · 03/12/2025
Excited to share our latest work on plant immune receptor biochemistry! @kamounlab.bsky.social @hsuanpai.bsky.social @mpcontreras.bsky.social Jose Salguero Linares @danielluedke.bsky.social @adnroide.bsky.social @jiorgoskourelis.bsky.social www.biorxiv.org/content/10.6...
CC-NLRs exhibit diverse conformations in the resting state.
Figure depicts different NLR resting and activated states. While ZAR1 exists as a monomer bound to its guardees in its resting state, several forms have been observed for the NRC2 helper, including dimers, tetramers, and filaments. While filament-like structures were observed via confocal microscopy for NRC2 upon overexpression in planta, these structures were not detected for its paralog NRC4, suggesting a potentially different resting state configuration for NRC4. Our work suggests that the Pik CC-NLR pair forms a hetero-complex bound to the plasma membrane in its resting state. How effector binding to the integrated domain (ID) of the Pik-1 sensor leads to the activation of the complex remains to be determined.
37639
Reposted by @nicocecchini.bsky.social
Sophien Kamoun @kamounlab.bsky.social · 04/12/2025
I just published: On the diversity of resting states of NLR immune receptors New story on rice Pik NLR immune receptor pair — turns out it sits as a 1 MDa membrane-bound beast before activation 🤯. Another wild twist in the ever-expanding universe of NLR resting states! medium.com/p/on-the-div...
medium.com
On the diversity of resting states of NLR immune receptors
New story on the rice Pik NLR immune receptor pair — turns out it sits as a 1 MDa membrane-bound beast before activation 🤯. Another wild…
0169
Reposted by @nicocecchini.bsky.social
Loic Lepiniec @lepiniec.bsky.social · 15/09/2025
Arabidospis ... the last annual MASC (Multinational Arabidopsis Steering Committee) report (2024-2025) is available ! – Arabidopsis, arabidopsisresearch.org/masc-publica...
01411
Reposted by @nicocecchini.bsky.social
Tatsuya Nobori @tatsuyanobori.bsky.social · 13/08/2025
How can we better understand the plant immune system? In my new @cp-cellhostmicrobe.bsky.social piece, I propose “immune cell states” as a framework for uniting molecular and cellular perspectives. www.cell.com/cell-host-mi...
38039
Reposted by @nicocecchini.bsky.social
GetGenome @getgenome.bsky.social · 11/08/2025
We just published: Why you should sequence your plasmids (and how to do it for free) Through @getgenome.bsky.social scientists in 100 countries can access free whole-plasmid sequencing —giving researchers the confidence to move their experiments forward. medium.com/p/why-you-sh...
medium.com
Why you should sequence your plasmids (and how to do it for free)
Through GetGenome, scientists in 100 countries can access free whole-plasmid sequencing — removing barriers, improving quality control…
054
Reposted by @nicocecchini.bsky.social
Sophien Kamoun @kamounlab.bsky.social · 23/07/2025
New @ISMPMI Board Members #DreamTeam 😍 🇬🇧 🇨🇳 🇨🇦 🇦🇷 🇩🇪 🇰🇪
0255
nicocecchini.bsky.social @nicocecchini.bsky.social · 21/07/2025
000
Reposted by @nicocecchini.bsky.social
Christine Faulkner @pdchristine.bsky.social · 23/04/2025
An important consequence of the analysis by Paajanen et al is that the 'cell-to-cell mobile RNA' user-defined description listed under Gene Ontology by TAIR is a classification based on flawed analyses. Be careful! #PlantScience
12312
Reposted by @nicocecchini.bsky.social
Pingtao Ding (he/him) @dinglab.bsky.social · 01/07/2025
Cell-type-specific execution of effector-triggered immunity Our new preprint is online, 1 July⬇️ With @himanshuchhillar.bsky.social @leonardojo.bsky.social Amey Redkar @kaisakajala.bsky.social @jonathandgjones.bsky.social For early readers & community feedback🙏🏼 #openscience @erc.europa.eu
32919
nicocecchini.bsky.social @nicocecchini.bsky.social · 01/07/2025
Checkout this article I found at PLOS: dx.plos.org/10.1371/jour...
dx.plos.org
000
Reposted by @nicocecchini.bsky.social
Sociedad Argentina de Fisiología Vegetal @socargfisiveg.bsky.social · 30/06/2025
🌿 En nuestra próxima RAFV también tenemos el honor de contar con el Dr Ronald Pierik como orador en plenarias. No se la pierdan!! 🌻Join us for the Plenary Lecture by Dr Ronald Pierik at the XXXV RAFV Deadline for abstract submission: today 30/06! fisiologiavegetal.org/rafv/
023
nicocecchini.bsky.social @nicocecchini.bsky.social · 24/06/2025
Excited to share our new work!! onlinelibrary.wiley.com/doi/10.1111/... #PlantImmunity #Arabidopsis #NLR #PlastidImmunity #plastid
onlinelibrary.wiley.com
The Arabidopsis TNL immune receptor BNT1 localizes to the plastid envelope and is required for the flg22‐induced resistance against Pseudomonas
This study identifies BNT1 as a TNL-class immune receptor localized to the plastid envelope. Two distinct isoforms of BNT1 were characterized: one with a plastid-targeting signal anchor that ensures ...
233
Reposted by @nicocecchini.bsky.social
Gitta Coaker @gittacoaker.bsky.social · 13/06/2025
Interesting - bik1 T-DNA mutants are smaller, have high levels of SA (autoimmune phenotype), but CRISPR mutants do not have more severe compromised defense. #plantimmunity #plantscience www.biorxiv.org/content/10.1...
biorxiv.org
New alleles of Arabidopsis BIK1 reinforce its predominant role in pattern-triggered immunity and caution interpretations of other reported functions
The receptor-like cytoplasmic kinase BIK1 and its close homolog PBL1 have been widely recognized as central components of plant immunity. However, most genetic studies of BIK1 and PBL1 functions were ...
1118
Reposted by @nicocecchini.bsky.social
Jose M. Estevez @estevezjosem.bsky.social · 05/06/2025
Here is our newest paper recently published in Plant Communications on "Root hair growth under the control of auxin under low temperature low nutrient environment". Comments and suggestions are more than welcome! Here the pdf www.cell.com/plant-commun... Leaded by Victoria Berdion Gabarain et al.
2137
Reposted by @nicocecchini.bsky.social
Mary Williams @PlantTeaching @plantteaching.bsky.social · 31/05/2025
If you missed yesterday's @theplantcell.bsky.social webinar on Translating Research from Arabidopsis to other systems, it was GREAT! A recorded is embedded in the blog post blog.aspb.org/may-30-plant.... Key point: Arabidopsis is small, inexpensive, fast, and continues to be a stellar model. 🌱
The Plant Cell. 
Panel Discussion: Translating from Arabidopsis. Speakers: Federico Ariel, Michael Bevan, Anna Stepanova, Xiaolan Zhang. Hosts: Adrienne Roeder and Cris Argueso.
03218
nicocecchini.bsky.social @nicocecchini.bsky.social · 06/04/2025
www.nature.com/articles/s41...
nature.com
Epidermal electronic-tattoo for plant immune response monitoring - Nature Communications
Real-time and continuous monitoring of plant immune responses is essential for plant immunity study and crop pathogen management. Here, the authors report an ultra-thin electronic tattoo patch made of...
031
nicocecchini.bsky.social @nicocecchini.bsky.social · 03/04/2025
Pseudomonas syringae subpopulations cooperate by coordinating flagellar and type III secretion spatiotemporal dynam… pubmed.ncbi.nlm.nih.gov/40175722/
pubmed.ncbi.nlm.nih.gov
Pseudomonas syringae subpopulations cooperate by coordinating flagellar and type III secretion spatiotemporal dynamics to facilitate plant infection - PubMed
Isogenic bacterial populations can display probabilistic cell-to-cell variation in response to challenges. This phenotypic heterogeneity can affect virulence in animals, but its impact on plant pathog...
000
nicocecchini.bsky.social @nicocecchini.bsky.social · 03/04/2025
academic.oup.com/plphys/advan...
academic.oup.com
Water immunity overrides stomatal immunity in plant resistance to Pseudomonas syringae
Water immunity dictates disease outcome and can override the lack of stomatal immunity in plant resistance to Pseudomonas syringae.
000
Reposted by @nicocecchini.bsky.social
Phil Carella @philcarella.bsky.social · 01/04/2025
Conserved effectors underpin the virulence of liverwort-isolated Pseudomonas in divergent plants Very happy to share the published version of our work on natural Marchantia-Pseudomonas interactions. Out now in Current Biology: www.cell.com/current-biol...
cell.com
Conserved effectors underpin the virulence of liverwort-isolated Pseudomonas in divergent plants
Robinson et al. identify pathogenic Pseudomonas viridiflava in wild Marchantia polymorpha liverworts and interrogate the mechanisms enabling virulence in non-flowering and flowering plants. Their resu...
16838
Reposted by @nicocecchini.bsky.social
Sociedad Argentina de Fisiología Vegetal @socargfisiveg.bsky.social · 25/03/2025
🌱Curso avanzado en Biología Molecular y Biotecnología Vegetal. Fecha: 5-14/05 2025. Lugar: Facultad de Ciencias, Universidad de Chile. Más info en FY 👇 Link de inscripción: forms.gle/jCNDR1tVwkAh... Consultas: curso.biomol.biotecveg@gmail.com
023
nicocecchini.bsky.social @nicocecchini.bsky.social · 23/03/2025
000
Reposted by @nicocecchini.bsky.social
manavellalab.bsky.social @manavellalab.bsky.social · 21/03/2025
Does the smell and flavor of strawberries depend on variations in gene-associated transposons? It seems so! Check out our new preprint! www.biorxiv.org/content/10.1...
biorxiv.org
Naturally occurring variation in gene-associated transposable elements impacts gene expression and phenotypic diversity in woodland strawberry
Transposable elements (TEs) constitute a major portion of plant genomes and play key roles in shaping genome architecture, regulating gene expression, and driving genome evolution. In this study, we g...
03719
Reposted by @nicocecchini.bsky.social
manavellalab.bsky.social @manavellalab.bsky.social · 11/03/2025
Do you want to know more about how transposons control plant gene expression? here is our new review, with a twist 😉, may the force be with you! "The genome awakens: transposon-mediated gene regulation" Trends in Plant Science www.cell.com/trends/plant...
cell.com
The genome awakens: transposon-mediated gene regulation
Current progress in plant genomics has uncovered important roles of transposable elements (TEs) in gene regulation and has transformed their perception from 'junk DNA' to key genomic players. Recent a...
1228
nicocecchini.bsky.social @nicocecchini.bsky.social · 06/03/2025
www.ismpmi.org/Events/2025C...
ismpmi.org
IS-MPMI
International Society for Molecular Plant-Microbe Interactions
000
Reposted by @nicocecchini.bsky.social
PM Delaux @pierremarcdelaux.bsky.social · 05/03/2025
and we thought auxin signalling was "kind of solved".. TIR1-produced cAMP is essential for auxin response (in Arabidopsis thaliana) 🔽 www.nature.com/articles/s41...
nature.com
TIR1-produced cAMP as a second messenger in transcriptional auxin signalling - Nature
cAMP produced by the TIR1/AFB receptors of the main endogenous developmental plant hormone auxin acts as a true second messenger, revising the established paradigm of transcriptional auxin signalling.
05223
Reposted by @nicocecchini.bsky.social
Emmanuelle Bayer @emmanuellebayer.bsky.social · 27/02/2025
🌱 Excited about plant biology? Apply for the CSHL Frontiers & Techniques in Plant Science course! Hands-on training, world-class instructors, and cutting-edge research. 🧬🔬 📅 Application deadline: March 15 Details & apply here 👉 meetings.cshl.edu/courses.aspx... #PlantScience #CSHL
meetings.cshl.edu
Frontiers & Techniques in Plant Science
Cold Spring Harbor Laboratory Meetings & Courses -- a private, non-profit institution with research programs in cancer, neuroscience, plant biology, genomics, bioinformatics.
11319
Reposted by @nicocecchini.bsky.social
Jose M. Estevez @estevezjosem.bsky.social · 24/02/2025
Please take a look, new preprint from collegues www.biorxiv.org/content/10.1...
biorxiv.org
PHYTOCHROME INTERACTING FACTORS are required to coordinate microtubule dynamics and differential cell growth during Arabidopsis apical hook opening
Background: Differential cell growth is a key strategy that enables plants to adjust their morphology in response to internal and external cues. Apical hook opening in dark-grown Arabidopsis seedlings serves as an excellent model to study how coordinated cell expansion generates organ bending. Several works highlight the influence of hormone signaling, cell wall mechanics, and environmental cues on cortical microtubule (cMT) arrangement in bending tissues. However, the precise genetic hierarchy governing these processes remains largely unknown. Results: Here, we reveal a two-step growth rate during apical hook opening, in which an initial phase of differential cell expansion is followed by a phase of more balanced growth. We show that cMT re-arrangement precedes and predicts cell expansion patterns, suggesting a central role in coordinating differential growth. Our findings indicate that PIF transcription factors regulate this process, as pifq mutants fail to align cMT reorganization with growth dynamics, resulting in premature hook opening. RNA-seq analysis further supports a role for PIFs in coordinating cell wall remodeling and microtubule-associated gene expression, including kinesins and cell wall-modifying enzymes. Conclusions: Our study uncovers a PIF-dependent regulatory mechanism that orchestrates cytoskeletal dynamics and cell expansion to control apical hook opening. ### Competing Interest Statement The authors have declared no competing interest.
011
Reposted by @nicocecchini.bsky.social
Jean Greenberg @jeantgreenberg.bsky.social · 17/02/2025
#plantscience #science #ISMPMI #APS Plant scientists- Nature and ASPB are collecting information about the USA science-related executive orders, etc: www.nature.com/articles/d41... blog.aspb.org/research-imp...
blog.aspb.org
Research Impacts of Recent Executive Orders and Memos – and a Call to Action to the ASPB Community | Plant Science Today
Since President Donald Trump took office on January 20,4a series of executive actions have shaken the research community. Several executive orders were released that targeted diversity, equity, and in...
022
Reposted by @nicocecchini.bsky.social
Tatsuya Nobori @tatsuyanobori.bsky.social · 12/02/2025
Activation and inhibition mechanisms of a plant helper NLR www.nature.com/articles/s41...
nature.com
Activation and inhibition mechanisms of a plant helper NLR - Nature
In plant immunity, sensor NLR resistosomes can generate heterotrimer complexes comprising the helper NLR NRG1, and investigation of cryo-EM structures shows the mechanisms of these heterotrimers in im...
02311
Reposted by @nicocecchini.bsky.social
Jack Rhodes @jackrhodes.bsky.social · 11/02/2025
Neofunctionalized RGF pathways drive haustorial organogenesis in parasitic plants
biorxiv.org
Neofunctionalized RGF pathways drive haustorial organogenesis in parasitic plants
Parasitic plants initiate rapid de novo organogenesis of a specialized feeding structure called a haustorium upon contact with their hosts. Currently, little is known about the internal signals regula...
013
Reposted by @nicocecchini.bsky.social
Jose M. Estevez @estevezjosem.bsky.social · 03/02/2025
Finally out!! Team work!! You can see the article online nph.onlinelibrary.wiley.com/share/RFENKX... Please send me your comments and suggestions. We love to collaborate if you work in something related!! Root biology rocks!! More is coming soon!!
doi.org
Two antagonistic gene regulatory networks drive Arabidopsis root hair growth at low temperature linked to a low‐nutrient environment
Root hair (RH) cells can elongate to several hundred times their initial size, and are an ideal model system for investigating cell size control. Their development is influenced by both endogenous a.....
71918
nicocecchini.bsky.social @nicocecchini.bsky.social · 31/01/2025
We are very happy to share our preprint published in @biorxiv_plants We show that BNT1 is the first TNL-class NLR immune receptor localized to plastid envelopes 👇🏻 www.biorxiv.org/content/10.1...
biorxiv.org
The Arabidopsis TNL immune receptor BNT1 localizes to the plastid envelope and mediates flg22-induced resistance against Pseudomonas
Precise localization and trafficking of plant immune receptors are critical for their function. We identify the TNL-class nucleotide-binding leucine-rich repeat receptor (NLR) BURNOUT1 (BNT1) from Ara...
010
Reposted by @nicocecchini.bsky.social
bioRxiv Plant Bio @biorxiv-plants.bsky.social · 31/01/2025
The Arabidopsis TNL immune receptor BNT1 localizes to the plastid envelope and mediates flg22-induced resistance against Pseudomonas www.biorxiv.org/content/10.1101/202…
053
Reposted by @nicocecchini.bsky.social
Tatsuya Nobori @tatsuyanobori.bsky.social · 08/01/2025
New year, new paper! Now published in @nature.com. We identified and characterised diverse immune cell states in plants under pathogen attack. My postdoc work in the Ecker lab at @salkinstitute.bsky.social. A thread (0/n) #PlantScience www.nature.com/articles/s41...
23253129
Reposted by @nicocecchini.bsky.social
manavellalab.bsky.social @manavellalab.bsky.social · 30/12/2024
Last good news from 2024! Our latest paper on TE-derived small RNAs is finally out! It reveals a beautiful buffering mechanism involving epigenetics, chromatin organization, and pathogen resistance. A great collaboration with @plantevolution.bsky.social, don’t miss it! www.nature.com/articles/s41...
44219
nicocecchini.bsky.social @nicocecchini.bsky.social · 17/12/2024
www.biorxiv.org/content/10.1...
biorxiv.org
000
Reposted by @nicocecchini.bsky.social
Phil Carella @philcarella.bsky.social · 03/12/2024
New Preprint! We identified Pseudomonas in wild liverworts and explored what makes them virulent. www.biorxiv.org/content/10.1...
1010349
Reposted by @nicocecchini.bsky.social
Jean Greenberg @jeantgreenberg.bsky.social · 12/12/2024
I'm excited to share that our latest publication is open access and online. Phytosulfokine downregulates defense‐related WRKY transcription factors and attenuates pathogen‐associated molecular pattern‐triggered immunity doi.org/10.1111/tpj....
doi.org
Phytosulfokine downregulates defense‐related WRKY transcription factors and attenuates pathogen‐associated molecular pattern‐triggered immunity
Our study reveals that phytosulfokine (PSK) promotes plant growth by suppressing defense mechanisms, highlighting a key link between growth regulation and immune response. By demonstrating how PSK do....
1166
nicocecchini.bsky.social @nicocecchini.bsky.social · 10/12/2024
www.nature.com/articles/d41...
nature.com
‘There will be nothing left’: researchers fear collapse of science in Argentina
One year into President Javier Milei’s presidency, scientists are exiting the country in the face of big budget cuts.
010
Reposted by @nicocecchini.bsky.social
Marc Somssich @somssich.bsky.social · 12/11/2024
Hey! The packs are capped at 150 accounts, & this is long full. I have moved to replacing inactive accounts with active ones, but with the current surge of new requests, I am reaching my limit again. For now, I have at least added you to the MPMI pack, as your a PlantPath lab. go.bsky.app/H3986W6
099