Exciting news! 🤩 I'm thrilled to share that we have an opening for a Junior Research Fellow in our ANRF project. 🌱 If you've got a P.G. in Biological Sciences and a passion for plant research, check it out! 🔬 #ResearchOpportunity
Wound repair demands extra energy and building blocks. In our manuscript, we show that wounding activates local sugar transport to funnel carbohydrates to the regeneration site. We also introduce a new glucose sensor in plants. Is this how plants coordinate repair and growth?
@Act_Forward@openletteryt@elonmusk@grok The problem is not about stealing the words to develop the languages. THE PROBLEM is using the words AGAINST their real meaning. Here the "swastika" is being used for totally irrelevant symbol. If symbols have different meanings, why to call them with same name?
@Act_Forward@openletteryt@elonmusk@grok Someone was stealing words from our languages/cultures and you here are saying we can not even claim it? THIS IS NOT DICTATION.
Again, millions saying a lie does not make it a truth. You are being corrected by everyone but you are still showing your arrogant ignorance
@Act_Forward@openletteryt@elonmusk@grok You totally missed the point either by ignorance or your arrogance doesn't allow you to accept the fact. Repeating a lie a thousand times doesn't make it a truth. The truth is, it was a mistake to call this symbol "Swastika". You can keep on repeating the lie. Gel well soon!
@Act_Forward@openletteryt@elonmusk@grok So, you are saying that people who were developing english coud not find the real word for nazi symbol, rather they made a mistake by naming it with something else. Your ignorance and arrogance is on another level.
@ianmiles What do you expect in 50 cents? People want luxury for free. If someone is capable of spending, wont be buying from such places AND if someone is not, he wont be dying in such places!!!
Plant cells know what type to be based on signals they receive from their neighbors. But when you cut the root, cells rapidly change their identity to regenerate missing tissues, yet their neighbors persist... So how does that work?https://t.co/a1NlfQANTD
In the long awaited paper from my PhD lab, we uncover the distinct role of TAA1 & TAR2 in combination with auxin transport in the stemcell differentiation at SAM in Arabidopsis.
Our latest Development paper talks about the fundamental role of auxin in SAM patterning, and how it influences the differentiation of stem cells!
Local auxin biosynthesis promotes shoot patterning and stem cell differentiation in Arabidopsis shoot apex https://t.co/9309KE0TEM,
Seeing some qs on what Gemini *is* (beyond the zodiac :). Best way to understand Gemini’s underlying amazing capabilities is to see them in action, take a look ⬇️
How Japanese have produced wood for 700 years, without cutting down trees.
Daisugi is an ancient Japanese forestry technique developed in the 14th century originally used by people living in the Kitayama prefecture, because the territory was extremely poor in saplings.
They planted cedars pruned in a special way to produce shoots that eventually would become perfect, straight, knot-free lumbers.
The shoots are gently pruned by hand every two years leaving only the top boughs, allowing them to grow straight. Harvesting takes 20 years and old 'tree stock' can grow up to a hundred shoots at a time.
There was actually another reason why the technique was developed: fashion. In the 14th century, a linear, stylized form of architecture known as sukiya-zukuri (数寄屋造り) became popular, and every prominent samurai or nobleman wanted a house built in this way.
There were simply not enough raw materials available to keep up with demand, so daisugi was developed to produce more wood in a shorter time.
The wood produced with this technique has also impressive qualities: it's 140% more flexible than standard cedar and 200% denser and stronger. And, it's extremely durable.
@Varun_Research @aktilaiyan Accessibility is also a big thing when we talk about premier league research. Very few Indian institutions provide access to good journals. Sometimes, you want to read but ...
Finally out: mScarlet3
A brilliant and fast-maturing red fluorescent protein.
Congrats to the teams of Dorus Gadella and Antoine Royant!
https://t.co/PhyF2I8dOe