Research Stories

How Dragonflies Catch Prey in Midair

Despite their small size, dragonflies are arguably one of the most impressive predators in the animal kingdom. According to Rachel Crane, a biologist at the University of California Davis, dragonflies often catch up to 95% of the prey they go after, a rate she described as “wildly high compared to where most predators are.” 

More incredible still, this prey capture all happens in midair.

“Dragonflies are doing these really, really fast, high-speed aerial captures,” said Crane. 

Hibernating Corals and the Microbiomes That Sustain Them

As winter approaches, many species of animals — from bears and squirrels to parasitic wasps and a few lucky humans — hunker down for some needed rest. The northern star coral (Astrangia poculata) also enters a hibernating state of dormancy, or quiescence, during this time. But what happens to its microbiome while it’s sleeping?

Breaking the Loop Leading to Muscular Fibrosis

A team of UC Davis researchers is on a mission to solve a key mystery in the formation of muscular fibrosis. The researchers are studying why special stem cells known as fibro-adipogenic progenitors (FAPs) get derailed from normal muscle regeneration following injury, and instead produce excess material that can lead to fibrosis. The team may have unlocked a way to prevent these cells from getting stuck in an endless loop of collagen production, causing fibrotic muscles. 

Making Prosthetics More Lifelike

David Brockman, a retired CalFire captain and avid outdoorsman, built a deck in the backyard of his home last year, without the use of his dominant right hand, which he lost in an accident. The prosthetic hand he used instead was a crude but functional steel hook-and-harness device.

Brockman has tried other artificial limbs, including a high-tech prosthesis called a myoelectric. It looks like a hand and works by using electrical signals from muscles in the forearm. But that one just didn’t work for him.

Corals Saving Corals

Under the right living arrangement, disease-resistant corals can help “rescue” corals that are more vulnerable to disease, found a study from the University of California, Davis, that monitored a disease outbreak at a coral nursery in Little Cayman, Cayman Islands. 

Biodiversity Genomics Europe Aims to Reverse Biodiversity Loss

UC Davis is a collaborating partner in a new European effort to use DNA data to characterize and conserve life on Earth. The Biodiversity Genomics Europe consortium, launched Sept. 26, is affiliated with the Earth BioGenome Project, which has its administrative headquarters at UC Davis. Harris Lewin, distinguished professor of evolution and ecology at UC Davis, chairs the EBP Working Group.

Study Identifies Key Mechanism for Protein Trafficking in Plants and Bacteria

Plants photosynthesize to survive, and bacteria divide to reproduce, but to accomplish these necessary biological functions, the cells of these organisms employ protein trafficking. More specifically, these functionalities, among many others, rely on the twin-arginine translocation (Tat) pathway, which, when properly functioning, allows for the transportation of proteins across cellular membranes.

Single-protein Images Show How E. coli Repairs DNA While Replicating It

The success of E. coli bacteria depends on their ability to multiply very rapidly by dividing into new cells. The bacteria can divide as quickly as they can make an entire new copy of their DNA while minimizing errors. New work from researchers at the University of California, Davis College of Biological Sciences answers a key question about how E. coli fixes damage to DNA in the middle of duplicating it.