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Lorena Anderson

Scientists Assemble a Biological Clock in a Test Tube to Study How It Works

Daily cycles in virtually every aspect of our physiology are driven by biological clocks (also called circadian clocks) in our cells. The cyclical interactions of clock proteins keep the biological rhythms of life in tune with the daily cycle of night and day, and this happens not only in humans and other complex animals but even in simple, single-celled organisms such as cyanobacteria.

Researchers Unraveling Mysteries of Electrosensory Gel in Sharks, Skates

Cartilaginous fishes such as sharks and skates have a sixth sense, but it’s not ESP — it’s electrosense. Such fishes use hundreds or thousands of specialized organs to sense prey and mates and to navigate the oceans.

A cross-disciplinary group of researchers at UC Merced is making new discoveries about the fundamental structure of the organs and how this structure may provide clues as to how this sixth sense works.

Chemistry Lab Receives NSF Funding to Study How Proteins Protect from Dehydration

Like many people this summer, Professor Shahar Sukenik has dehydration on his mind.

But it’s not the soaring outside temperatures prompting this focus. Dehydration has been a theme of his lab’s work for the past year, from understanding how seeds know when to germinate to a new grant to further knowledge about the proteins that help protect cells and organisms against irreversible drying.

Cows are Udderly Useful for Healthy Vegetation Management on Nature Reserve

Today is National Cow Appreciation Day, a “holiday” invented by a fast-food chain that sells a lot of "chikn." But it’s still a good opportunity to celebrate our neighbors to the northeast — even if being surrounded by cows wasn’t necessarily how you imagined your college experience.

The cows might be an unusual sight to some, but they play an integral part in the healthy management of the approximately 6,500-acre Merced Vernal Pools and Grassland Reserve.

Improved Molecular Tool Deepens Study of Gene-Cell Interaction

A group of researchers harnessing the power of light to control gene expression has dramatically improved its method, optimizing speed and precision, and opening new research avenues for scientists who employ optogenetics — the use of light and genetic engineering to control cells.

A new paper in the journal Zebrafish details the advancements made in Professor Stephanie Woo’s lab and quantifies the results of experiments on zebrafish embryos.

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