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xixizhang9001.bsky.social

@xixizhang9001.bsky.social
137 followers 225 following 2 posts

Plant science, vascular cambium, stem cell, cell biology, postdoc

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Peter Etchells @peteretchells.bsky.social · 22/06/2026
Qing took on a project with a biochemistry core in a genetics lab. She was incredibly resilient and crucially, we had wonderful collaborators @xixizhang9001.bsky.social @apmahonen.bsky.social @villepaavilainen.bsky.social Ehmke, Ray, Wenbin, Prodeep, Tuomas, Hanan, Yuan. Congratulations all!
static.klipy.com
Mighty Morphin Power Rangers Posing
ALT: Mighty Morphin Power Rangers Posing
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Reposted by @xixizhang9001.bsky.social
Peter Etchells @peteretchells.bsky.social · 22/06/2026
Really pleased to see Qing He’s work out in its final form (www.pnas.org/doi/epdf/10....). My group had previously shown that PXY-mediated regulation of cambium development had an ERECTA-mediated influence, but we didn’t understand the mechanism. 🧵
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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Reposted by @xixizhang9001.bsky.social
Maddy Seale @maddyseale.bsky.social · 05/12/2025
Out in @science.org this week: PME5 is sequestered in the nucleus and released during cytokinesis allowing its activity to be timed with cell division. www.science.org/doi/10.1126/... #PlantScience #PlantSci
science.org
Cell wall patterning regulates plant stem cell dynamics
The plant cell wall regulates development through spatiotemporal modulation of its chemical and mechanical properties. Pectin methylesterification is recognized as a rheological switch controlling wal...
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Reposted by @xixizhang9001.bsky.social
Trends in Plant Science @cp-trendsplantsci.bsky.social · 25/11/2025
The genetics of paradoxes: CLE peptide signaling in the Arabidopsis root tip #plantscience
dlvr.it
The genetics of paradoxes: CLE peptide signaling in the Arabidopsis root tip
Signaling of secreted CLAVATA3/EMBRYO SURROUNDING REGION (CLE) peptides via CLV1-type receptor kinases is a central mechanism regulating stem cell pool size. Originally characterized in the context of shoot meristem maintenance, this network has been increasingly scrutinized in recent years for its role in Arabidopsis thaliana (Arabidopsis) root meristem maintenance and organization. These analyses revealed unique, often seemingly paradoxical facets, which can be understood from the rewiring of CLE signaling networks in the root compared with the shoot. Here, we review the intricate interplay between distinct and antagonistic CLE signaling pathways in the primary root meristem, which suggests that the core function of CLE signaling in roots is to dynamically buffer antagonism between positive and negative signaling inputs, thereby enhancing developmental robustness.
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Ari Pekka Mähönen @apmahonen.bsky.social · 17/11/2025
We found that cytokinin-induced LBDs drive radial (secondary) growth in Arabidopsis root by reshaping primary cell wall pectin, in part through four pectate-lyase-like genes. Huge congrats to the fantastic postdocs who led this work: Lingling Ye and Xin Wang. 1/x www.nature.com/articles/s41...
nature.com
Cambium LBDs promote radial growth by regulating PLL-mediated pectin metabolism - Nature Plants
This study reveals that LBD transcription factors in the cambium drive radial plant growth by regulating PECTATE LYASE-LIKE (PLL) enzymes that remodel cell wall pectin, promoting cell expansion.
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xixizhang9001.bsky.social @xixizhang9001.bsky.social · 17/11/2025
Very excited to share that another project from my postdoc has been published in PNAS! It’s been quite a journey, and I finally feel like I’ve fully transitioned from cell biology into the world of plant developmental biology.
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Reposted by @xixizhang9001.bsky.social
Ari Pekka Mähönen @apmahonen.bsky.social · 14/11/2025
By combining molecular genetics with cell-ablation experiments, we found that vascular cambium stem cells and xylem-identity cells form an interchangeable unit, a stem cell niche. Meticulous work by @xixizhang9001.bsky.social, Ondrej Smetana, Jing Zhang & Xiaoyu Wang 1/x www.pnas.org/doi/10.1073/...
pnas.org
Auxin transport positions stem cells in the vascular cambium during normal development and regeneration | PNAS
The vascular cambium contains bifacial stem cells producing secondary phloem in one and secondary xylem to the opposite direction. In Arabidopsis r...
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Plantae.org @plantaeofficial.bsky.social · 14/11/2025
⏰Happening next Friday, November 21, 2025, at 2:30 pm Eastern time. Join us!🌱 👉Free registration at plantae.org/plantaeprese... #plantscience
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xixizhang9001.bsky.social @xixizhang9001.bsky.social · 19/11/2024
So excited to see my first author paper from my postdoc came out. We identified the vascular cambium stem cell factors CAILs and revealed their positioning mechanism.
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Ari Pekka Mähönen @apmahonen.bsky.social · 08/11/2024
Finally out! We identified the stem cell factors (CAILs) of the vascular cambium, and a mechanism involving a ligand sequestration to position the stem cells. This work is a result of fruitful collaboration with @peteretchells.bsky.social and Tusscher labs. 🧵 1/x www.science.org/doi/10.1126/...
science.org
Identification of cambium stem cell factors and their positioning mechanism
Wood constitutes the largest reservoir of terrestrial biomass. Composed of xylem, it arises from one side of the vascular cambium, a bifacial stem cell niche that also produces phloem on the opposing ...
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Reposted by @xixizhang9001.bsky.social
Bert De Rybel @bertderybel.bsky.social · 18/11/2024
Good week for those interested in oriented divisions and middle cortex formation in the Arabidopsis root. Out in Current Biology: www.cell.com/current-biol...
cell.com
Three RLKs integrate SHR-SCR and gibberellins to regulate root ground tissue patterning in Arabidopsis thaliana
Chang et al. reveal that ARH1, FEI1, and FEI2 negatively regulate middle cortex formation via modulating the biosynthesis of GA. They elucidate that SHR and SCR negatively control the expression level...
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