🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
Ketamine Triggers Sex-Specific Brain Recovery Responses
During ketamine anesthesia the brain’s nerve cells fall silent, and as consciousness returns, they begin to reconnect. A study in mice by researchers at the Institute of Science and Technology Austria (ISTA) and colleagues at Allen Institute for Brain Science in Seattle, has now for the first time shown that immune cells in the brain play a critical role in this process, and indicates that there are differences between female and male brains.
🎥 Can editing the ‘dark genome’ make crops more heat tolerant?
[Disclosure: AgFunderNews’ parent company AgFunder is an investor in Plantik Biosciences.] Can editing the so-called “da…
Molecular GPS Guides Neutrophils to Sites of Infection
Data from a scientific collaboration between scientists at the University of Bath and UMass Chan Medical School helps explain how neutrophils, part of the immune system’s defense system, move through the body. Their findings shed light on the mechanisms that control neutrophil movement to specific infection sites without damaging healthy tissues along the way. According to the scientists, their findings point to a potential new target for anti-inflammatory drugs that can treat different conditions including chronic inflammatory diseases of the gut and lung.
