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tag drosophila microbiology evolution neuroscience developmental biology

Keeping Time with Drosophila
Laura Bonetta | Feb 3, 2002 | 10 min read
Circadian clocks—the biological timekeepers that operate on a daily cycle—keep virtually every living creature in tune with its environment. These internal clocks regulate a wide range of fundamental biological processes, including movement, smell, sleep, mating, and feeding. A true circadian clock is endogenous; that is, it keeps time even in the absence of external cues. The clock can, however, be reset, or entrained, by daylight, allowing the synchronization of circadian rhythms t
Conceptual image showing molecules making up a brain shape
The Noncoding Regulators of the Brain
Christie Wilcox, PhD | Sep 12, 2022 | 10+ min read
Noncoding RNAs are proving to be critical players in the evolution of brain anatomy and cognitive complexity.
An illustration of green bacteria floating above neutral-colored intestinal villi
The Inside Guide: The Gut Microbiome’s Role in Host Evolution
Catherine Offord | Jul 1, 2021 | 10+ min read
Bacteria that live in the digestive tracts of animals may influence the adaptive trajectories of their hosts.
What Lies Sleeping
Philippe Mourrain | Mar 1, 2016 | 4 min read
Why can science still not define this most basic biological process?
Researchers in George Church&rsquo;s lab modified wild type ADK proteins (left) in <em >E.coli</em>, furnishing them with an nonstandard amino acid (nsAA) meant to biocontain the resulting bacterial strain.
A Pioneer of The Multiplex Frontier
Rashmi Shivni, Drug Discovery News | May 20, 2023 | 10 min read
George Church is at it again, this time using multiplex gene editing to create virus-proof cells, improve organ transplant success, and protect elephants.
Drosophila and E. coli Share a Strategy for Signal Release
Ricki Lewis | Nov 10, 2002 | 4 min read
The Faculty of 1000 is aWeb-based literature awareness tool published by BioMed Central. For more information visit www.facultyof1000.com. Science sometimes progresses by persistence and attention to detail. This was the case for the recent discovery that a bacterium and the fruit fly apparently share a strategy for signal release, despite one being a prokaryote and the other a eukaryote.1 The new view suggests that quorum sensing in bacteria and signal transduction in multicellular organisms
Sensory Biology Around the Animal Kingdom
The Scientist | Sep 1, 2016 | 10+ min read
From detecting gravity and the Earth’s magnetic field to feeling heat and the movement of water around them, animals can do more than just see, smell, touch, taste, and hear.
A Recurrent Theme
Ricki Lewis | Jun 10, 2005 | 1 min read
I just had dinner with a Drosophila geneticist, an historian of science specializing in taxonomy, a paleontologist whose expertise is trilobites, and a developmental biologist who is using sea anemone genome data to map mutants, the opposite of the way things were done when I was in graduate school. By now, we all pretty much know one another, and when I looked over at the other tables, I noted the eclectic mixes. Everyone here is talking about it, how this meeting is like no other. AAAS (Am
Who Sleeps?
The Scientist and Jerome Siegel | Mar 1, 2016 | 10+ min read
Once believed to be unique to birds and mammals, sleep is found across the metazoan kingdom. Some animals, it seems, can’t live without it, though no one knows exactly why.
Sweet science
Megan Scudellari | Sep 15, 2010 | 4 min read
Ever had the urge to take a nice crunchy bite of Drosophila or lick icing off a brain? You will after a visit to linkurl:Not So Humble Pie,;http://notsohumblepie.blogspot.com/ a blog run by scientist-turned-baker, Ms. Humble. A blogger who refers to herself as "a typical nerdy biological anthropologist turned stay at home mom," Ms. Humble -- who chooses to remain anonymous -- began the blog in October 2009. Since then, the popular blog has regularly featured science-themed baked goods, from zebr

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