#embryonicdevelopment
REVIEW: Timing is everything: transcription bursting in development
By Jee Min Kim and Daniel Larson
➡️ https://tinyurl.com/gd352465

#transcription #molecularbiology #transcriptionbursting #embryonicdevelopment #stemcell #differentiation #mRNA #development #molecularmechanism
September 8, 2025 at 3:06 PM
SRF: A New Regulator of Retrotransposons and Early Embryonic Genes🧬

A team led by Prof. Maria-Elena Torres-Padilla, #HelmholtzMunich, has uncovered a key player in early embryonic development: SRF.

👉 t1p.de/d87p5

@metorrespadilla.bsky.social @epihmgu.bsky.social
#EmbryonicDevelopment #Epigenetics
March 6, 2025 at 12:01 PM
Lab meeting with the Zenker Lab

In our latest 'Lab meeting' post, we meet the Zenker lab, based @armilabs.bsky.social @monashuniversity.bsky.social in Melbourne, Australia. The lab is interested in all things #StemCells, #EmbryonicDevelopment and #LiveImaging.

Meet the Lab:
Lab meeting with the Zenker Lab - the Node
This is part of the 'Lab meeting' series featuring developmental and stem cell biology labs around the world. Where is the lab? Jennifer: You can
thenode.biologists.com
April 3, 2025 at 10:25 AM
"The process of sex reversal occurs during #EmbryonicDevelopment or before #GonadDifferentiation."
April 29, 2025 at 4:58 PM
How does the #nucleolus shape early development?
This review explores its remodeling in oocytes and embryos, highlighting roles in chromatin organization, #epigenetic inheritance, oocyte maturation and #EmbryonicDevelopment.
#OpenAccess #GenesAndDiseases: doi.org/10.1016/j.ge...
September 21, 2026 at 3:07 PM
OUTLOOK: MEF2C networks in heart tube development
By Hassan Abdulrazzak and Mark Mercola
➡️ https://genesdev.cshlp.org/content/39/23-24/1397.full

Learn more here:
➡️ https://genesdev.cshlp.org/content/39/23-24/1451.abstract

#transcriptionfactor #embryonicdevelopment #heartdevelopment #cardiactract
December 11, 2025 at 4:01 PM
A #gene that turns on very early in #embryonicdevelopment could be key to the formation of the placenta, which provides the developing fetus with all of the nutrients it needs to thrive during gestation.
UC San Diego Researchers Uncover the Earliest Stages of Human Placenta Formation
A gene that turns on very early in embryonic development could be key to the formation of the placenta, which provides the developing fetus with all of the nutrients it needs to thrive during…
buff.ly
December 4, 2025 at 9:15 PM
Hidden viral DNA may control human embryonic growth: Emerging findings suggest that viral DNA may play an important part in how embryos form, right after fertilization.

#Genetics #EmbryonicDevelopment #ViralDNA #HumanEvolution #ScientificDiscovery #EarthDotCom #EarthSnap #Earth
Hidden viral DNA may control human embryonic growth
Emerging findings suggest that viral DNA may play an important part in how embryos form, right after fertilization.
www.earth.com
February 11, 2025 at 1:15 PM
Embryonic Skin Shows Scientists How To Heal Faster
All the science news you can handle in a single feed
purescience.news
November 24, 2025 at 4:32 AM
#morphogenesis
#embryonicdevelopment
#mechanicalforces

Nice thread - and OA paper - on how Nature's *bricolage solves a problem for fruit flies' embryos.

*François Jacob's term for making do with constraints and byproducts at hand, like Gould & Lewontin's Spandrels of San Marco.
September 10, 2025 at 2:53 PM
We’re delighted to welcome Prof. Cantas Alev as a keynote speaker at #IFFS2027!

Keynote 2: Reconstituting Human Early #EmbryonicDevelopment & #Organogenesis in Vitro

📅 19 April 2027 | 15:30–16:00
📍 Brisbane, Australia

🔗: congress.iffsreproduction.org/programme/

#stemcell #embryology #biology
September 23, 2026 at 5:58 AM
This review summarizes #TBX4’s vital roles in #EmbryonicDevelopment and organ function, its dysregulation in diseases, highlights DNA methylation-driven suppression, and emphasizes the need for deeper research into its molecular mechanisms.

#OpenAccess: doi.org/10.1016/j.ge...
December 11, 2025 at 1:25 AM
Nature finds multiple paths to success: Evolution might allow for multiple optimal solutions, depending on the constraints and conditions under which an organism evolves.

#EvolutionaryBiology #OptimizationTheory #EmbryonicDevelopment #FruitFlyResearch #MultipleSolutions #EarthDotCom #EarthSnap
Evolution’s many solutions: Nature finds multiple paths to success
Evolution might allow for multiple optimal solutions, depending on the constraints and conditions under which an organism evolves.
www.earth.com
January 30, 2025 at 10:17 PM
Crocodile scales are shaped by tissue growth, not genetics: A groundbreaking study reveals that crocodile scale formation is driven by tissue mechanics rather than genetics.

#CrocodileScales #TissueGrowth #EmbryonicDevelopment #MorphologicalDiversity #EvolutionaryBiology #EarthDotCom #Earth
Crocodile scales are shaped by tissue growth, not genetics
A groundbreaking study reveals that crocodile scale formation is driven by tissue mechanics rather than genetics.
www.earth.com
December 14, 2024 at 7:25 PM
Congrats to IPI postdoctoral fellow Nirakar Basnet for co-authoring a recent paper @natcomms.nature.com with former colleagues at the Mizuno Lab. They resolved the #cryoEM structure of #SSNA-1, providing a detailed look at its self-assembly and role in #embryonicdevelopment ➡️
Structural insights into SSNA1 self-assembly and its microtubule binding for centriole maintenance - Nature Communications
Cryo-EM shows SSNA-1 forms anti-parallel coiled-coils with a triple-helical junction for microtubule binding. Disrupting self-assembly or deleting SSNA-1 reduces C. elegans embryonic viability and…
buff.ly
November 25, 2025 at 6:02 PM
Study explains how growth and gut structure cause snake embryos to coil

🤖 IA: It's not clickbait ✅
👥 Users: It's not clickbait ✅

#snakeembryos #embryonicdevelopment #evolution

View full AI summary:
Study explains how growth and gut structure cause snake embryos to coil
An international research team has identified a likely physical mechanism that causes snake embryos to form distinctive right-handed spirals early in development. The study, published in Current Biology, suggests that the unusual shape results from a mismatch between the rapid growth of the snake's body and the slower growth of its gut. Researchers examined photographs and records of more than 900 embryos representing 39 species of snakes and other limbless squamates. They found a consistent pattern during the early stages of development: embryos initially coiled to the right when viewed from head to tail. Because embryos at these stages do not yet have mature muscles capable of controlling their position, the researchers looked for a mechanical explanation. CT scans provided an important clue. Imaging revealed a gut structure extending through the developing spiral and surrounded by blood vessels associated with the yolk. According to the researchers, the gut effectively acts as a tether while the snake's body continues to lengthen rapidly. This constraint causes the growing body to buckle and twist into a coil. The position of the yolk, which is consistently on the embryo's left side, helps determine the initial right-handed direction of the spiral. The coiling pattern can change later in development. As the yolk decreases in size and the embryo gains more room to move, developing muscles allow it to reposition itself. Near hatching, researchers observed both right- and left-handed coils. The findings offer a relatively simple mechanical explanation for an unusual feature of snake development and may provide a useful model for understanding how spiral structures arise elsewhere in biology. The project began during the COVID-19 lockdown as an observational research question about whether snake embryos consistently showed a particular form of 'handedness.'
en.killbait.com
September 1, 2026 at 8:42 PM
محققین کا کہنا ہے کہ یہ مشاہدات پیدائشی دل کی بیماریوں کی تشخیص کرنے میں مدد دے سکتے ہیں
مزید پڑھیئے: www.aaj.tv/news/30460581
#AajNews #HeartFormation #MedicalBreakthrough #EmbryonicDevelopment #ScienceDiscovery
May 15, 2025 at 4:27 AM
New Discovery Reveals Unconventional Mechanism of Cell Division in Embryos

🤖 IA: It's not clickbait ✅
👥 Usuarios: It's not clickbait ✅

#celldivision #embryonicdevelopment #mechanicalratchet

View full AI summary:
New Discovery Reveals Unconventional Mechanism of Cell Division in Embryos
A team of scientists from Technische Universität Dresden has uncovered a surprising new mechanism for how large embryonic cells divide. This discovery challenges the long-held belief that a fully closed contractile ring is essential for cell division. The researchers, studying zebrafish embryos, found that instead of a complete actin ring, these cells use a 'mechanical ratchet' system to divide. This system relies on microtubules and the physical properties of the cytoplasm, which change in stiffness throughout the cell cycle. The researchers observed that the actin band remains stable as it contracts due to the stabilizing role of microtubules. When the cell enters interphase, the cytoplasm becomes stiffer, helping stabilize the actin band, allowing it to contract step by step. This process repeats across several cell cycles, gradually dividing the cell. This new mechanism may explain how large yolk-rich cells in animals like zebrafish and other species divide rapidly, providing a solution for those that cannot rely on traditional methods of cell division.
killbait.com
March 1, 2026 at 1:31 PM
⚡ We are delighted to share today’s #Highlights2025 article:

📕 In vivo modeling of lethal congenital contracture syndrome 1 suggests pathomechanisms in cellular stress responses

Discover the article, here ➡️ buff.ly/VFjwRCC

#embryonicdevelopment #neuralcrest #stressresponse #sympatheticneurons
February 4, 2026 at 2:30 PM
New research suggests that consuming large amounts of #UltraProcessedFoods is linked not only to reduced #fertility in #men but also to slower growth in early #embryos and smaller yolk sacs, which are essential for early #EmbryonicDevelopment.
Ultra-processed foods are linked to reduced fertility and embryonic development – BioNews Central
New research suggests that consuming large amounts of ultra-processed foods is linked not only to reduced fertility in men but also to slower growth in early embryos and smaller yolk sacs, which are essential for early embryonic development. ...
sbee.link
March 25, 2026 at 3:09 AM
🔬 NEW RESEARCH ALERT: #IETSPapersOfTheMonth 📊

Tongji University researchers found #Nanoplastics exposure in male mice led to early #EmbryonicDevelopment abnormalities & changes in reproductive #GeneExpression profiles in #FrontiersInCellAndDevelopmentalBiology. Read more ▶️ doi.org/10.3389/fcel...
May 27, 2025 at 2:03 PM