Our latest preprint is now on bioRxiv!
We developed Apical3DTip, a new tool to quantify 3D cell shape from live images. It measures cell shape, division planes, and daughter-cell volumes, with broader use for morphometrics.
https://t.co/xLBCokW321
Thrilled to share that our new work is out in @ThePlantJournal! 🌱We’ve developed KymoTip, a simple pipeline that automates tip growth analysis. It’s perfect for tracking growth dynamics with nuclei and Ca2+ waves. 🔬✨Check it out here:https://t.co/3bF7nck7sD
Thrilled to share that our new work is out in @ThePlantJournal! 🌱We’ve developed KymoTip, a simple pipeline that automates tip growth analysis. It’s perfect for tracking growth dynamics with nuclei and Ca2+ waves. 🔬✨Check it out here:https://t.co/3bF7nck7sD
Thrilled to share that our new work is out in @ThePlantJournal! 🌱We’ve developed KymoTip, a simple pipeline that automates tip growth analysis. It’s perfect for tracking growth dynamics with nuclei and Ca2+ waves. 🔬✨Check it out here:https://t.co/3bF7nck7sD
Excited to share our latest work on bioRxiv! 🌿 We discovered that Ca2+ oscillation occurs in Arabidopsis zygote. Interestingly, instead of F-actin, this Ca2+ wave promotes the turnover of microtubule band to regulate cell elongation. https://t.co/zUAe9WLmLd
Our new preprint is out on bioRxiv!
Live gametes deep inside reproductive tissues of an angiosperm, liverwort, and fern can now be visualized—just with fluorescent staining! 🌱🔬
https://t.co/4dwXe7LB96
Our research has been published in Quantitative Plant Biology!
https://t.co/YRdLVl9nSC
It presents a mechanical model explaining how Arabidopsis zygotes elongate keeping their tips spherical.
Our reserch has been published in Current Biology!
https://t.co/wvmf4fyVhN
It provides the model that the ‘radial' axis is already started just after the zygote division!