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tag autism spectrum disorder evolution ecology genetics genomics

Artistic rendition of droplet DNA amplification
Finally, Scientists Sequence Single Cells with Long-Read Technology
Holly Barker, PhD | Mar 8, 2023 | 4 min read
By combining two innovative approaches, researchers can now sequence the full spectrum of mutational differences between individual cells’ genomes.
Illustration showing a puzzle piece of DNA being removed
Large Scientific Collaborations Aim to Complete Human Genome
Brianna Chrisman and Jordan Eizenga | Sep 1, 2022 | 10+ min read
Thirty years out from the start of the Human Genome Project, researchers have finally finished sequencing the full 3 billion bases of a person’s genetic code. But even a complete reference genome has its shortcomings.
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.
The Genes Underlying Autism Are Coming Into Focus
Megan Scudellari | Aug 1, 2016 | 10+ min read
As researchers sequence the DNA of thousands of kids with autism, dozens of genetic subgroups are emerging.
Dennis Wall: From moss to autism
Kelly Rae Chi | May 1, 2009 | 3 min read
Dennis Wall: From moss to autism By Kelly Rae Chi © 2009 Leah Fasten In 1996 a few hundred plant scientists gathered in Baton Rouge, La., for an annual phylogenetics meeting. Biology undergraduate Dennis Wall rushed into a lecture hall to meet Brent Mishler, a University of California, Berkeley, integrative biologist, who was considering taking on Wall as a doctoral student. But when Wall, late and disheveled, tried to climb over a row of
Week in Review: October 26–30
Tracy Vence | Oct 29, 2015 | 3 min read
Negative citations; cardiac stem cell saga continues; identifying anonymized genomic study participants; evolution of allergens; a call for biodefense innovation
Genetic Parasites and a Whole Lot More
Barry Palevitz | Oct 15, 2000 | 10+ min read
Photo: Ori Fragman, Hebrew University Hordeum spontaneum, the plant studied for BARE-1 retroelements. With genome sequences arriving almost as regularly as the morning paper, the public's attention is focused on genes--new genes to protect crops against pests; rogue genes that make bacteria resistant to antibiotics; faulty genes that, if fixed, could cure diseases such as muscular dystrophy. What many people don't realize is that genes account for only part of an organism's DNA, and in many c
Recent Trials for Fragile X Syndrome Offer Hope
Randi Hagerman | Sep 1, 2019 | 10+ min read
Despite a solid understanding of the biological basis of fragile X syndrome, researchers have struggled to develop effective treatments.
Why, Oh Y?
Jef Akst | Jan 1, 2015 | 9 min read
A toothpick and a bit of chance shaped David Page’s career, which he has dedicated to understanding the mammalian Y chromosome and fetal germ cell development.
Illuminating Behaviors
Douglas Steinberg | Jun 1, 2003 | 6 min read
Courtesy of Genevieve Anderson If not for Nobel laureates Thomas Hunt Morgan, Eric R. Kandel, and Sydney Brenner, the notion of a general behavioral model might seem odd. Behaviors, after all, are determined by an animal's evolutionary history and ecological niche. They are often idiosyncratic, shared in detail only by closely related species. But, thanks to Morgan's research in the early 20th century, and Kandel's and Brenner's work over the past 35 years, the fly Drosophila melanogaster, t

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