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tag linear regression genetics genomics

Illustration showing assembly Versus Alignment
Infographic: The Sequencing and Assembly of the Human Genome
Brianna Chrisman and Jordan Eizenga | Sep 1, 2022 | 5 min read
With ever-advancing genetic technologies, researchers continue to document the genetic code of the human species.
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.
Bugs as Drugs to Boost Cancer Therapy
Danielle Gerhard, PhD | Jan 18, 2024 | 7 min read
Bioengineered bacteria sneak past solid tumor defenses to guide CAR T cells’ attacks.
Fish in a big blue aquarium
Microbes Responsible for Stealing Aquarium Medicine
Amanda Heidt | Feb 1, 2022 | 6 min read
Researchers discover that bacteria break down medicinal compounds for their nitrogen, solving a mystery that has vexed aquatic veterinarians for years.
Whole-Genome SNP Genotyping
Marilee Ogren | Jun 1, 2003 | 8 min read
Clockwise from top left: images courtesy of Affymetrix, Illumina, Sequenom and Illumina Take any two individuals, sequence and compare their genomic DNA, and you'll find that the vast majority (about 99.9%) of the sequences are identical. In the remaining 0.1% lie differences in disease susceptibility, environmental response, and drug metabolism. Researchers are understandably keen to dissect these variations, most of which take the form of single-nucleotide polymorphisms (SNPs). A SNP (pron
Techniques for Assessing Genomic Copy Number Variations
Sarah C.P. Williams | Oct 1, 2016 | 8 min read
As the importance of genomic copy number variations for health and disease becomes clearer, researchers are creating new ways to detect these changes in the genome.
Beyond Sanger: Toward the $1,000 Genome
Aileen Constans | Jun 29, 2003 | 10 min read
Courtesy of Solexa Total Genotyping Without a doubt, the quarter-century-old Sanger sequencing method performed like a champ during the Human Genome Project. But with the capacity to read only a few hundred bases per reaction, it is far too slow and expensive for routine use in clinical settings. Reaping the rewards of the genomics era will clearly require faster and cheaper alternatives. Some companies estimate that within the next five years, technical advances could drop the cost of seque
Reductio Ad Amino Acid
Bob Sinclair | Feb 1, 1999 | 10+ min read
Date: February 1, 1999Fusion/Tag Proteases TableProteolytic Enzymes TableTable 3Table 4 A proteome analysis aims to characterize all proteins expressed by an organism or tissue. The next step will be to correlate a protein profile with the appropriate genome, and beyond that researchers will want to understand the correlations between levels of proteins, co- and post-translational modifications, and cell or tissue activity. Many of the technologies that are necessary to realize this goal are de
Yeast: An Attractive, Yet Simple Model
Gregory Smutzer | Sep 16, 2001 | 9 min read
Yeast possesses many characteristics that make it especially useful as a model system in the laboratory, including an entirely sequenced genome. Recently, a number of researchers published studies detailing the transition from genome sequencing to functional genomics. Notably, these scientists have developed new high-throughput approaches to the characterization of large numbers of yeast genes. In aggregate, these studies make yeast one of the most well-characterized eukaryotic organisms known.
2020 Top 10 Innovations
The Scientist | Dec 1, 2020 | 10+ min read
From a rapid molecular test for COVID-19 to tools that can characterize the antibodies produced in the plasma of patients recovering from the disease, this year’s winners reflect the research community’s shared focus in a challenging year.

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