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tag c elegans genetics genomics immunology

Green and red fluorescent proteins in a zebrafish outline the animal’s vasculature in red and lymphatic system in green in a fluorescent image. Where the two overlap along the bottom of the animal is yellow.
Serendipity, Happenstance, and Luck: The Making of a Molecular Tool
Shelby Bradford, PhD | Dec 4, 2023 | 10+ min read
The common fluorescent marker GFP traveled a long road to take its popular place in molecular biology today.
Top 7 in Immunology
Edyta Zielinska | Aug 2, 2011 | 3 min read
A snapshot of the most highly ranked articles in microbiology and related areas, from Faculty of 1000
Premade cDNA Libraries
Sarah Goforth | Apr 15, 2001 | 10 min read
Suppliers of Whole-organism cDNA Libraries Suppliers of Tissue-specific cDNA Libraries The questions of gene function, interaction, and regulation are central to the science of molecular biology. Despite the myriad of new technologies, products, and techniques produced by the genomics revolution, some old standards remain just as useful as ever. One such technology is the cDNA (complementary DNA) library. The sheer number of companies offering premade and custom cDNA libraries and products th
Family Affair
Megan Scudellari | Apr 1, 2011 | 3 min read
In discovering their shared ancestry, a distantly related animal geneticist and plant pathologist find a common thread in their work on immune receptors.
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
Model worm susceptible to virus
Carrie Arnold | Jan 24, 2011 | 3 min read
Researchers discover the first virus that can infect Caenorhabditis elegans
Genome Economy
Ricki Lewis | Jun 10, 2001 | 10 min read
The Human Genome Project's discovery1 that the human body runs on an instruction manual of a mere 35,000 or so genes--compared to the worm's 19,000, the fruit fly's 13,000, and the tiny mustard relative Arabidopsis thaliana's 25,000--placed humanity on an even playing field with these other, supposedly simpler, organisms. It was a humbling experience, but humility quickly gave way to awe with the realization that the human genome might encode 100,000 to 200,000 proteins. Scientists base this num
Notable
Jeffrey Perkel | May 12, 2002 | 3 min read
J.O. Korbel et al., "SHOT: A Web server for the construction of genome phylogenies," Trends in Genetics, 18[3]:158-62, March 1, 2002. "This paper reports the results of phylogenetic analysis using whole genome comparisons and introduces a new Web server (named "SHOT") for further analysis by gene-content and gene-order methods. Among the results, the gene-content method showed Homo sapiens to be more closely related to Drosophila melanogaster than Caenorhabditis elegans, and both methods showed
Planning the Future of Plant Genomics
Eugene Russo | Jul 21, 2002 | 5 min read
Image: Courtesy of National Sciences Foundation Arabidopsis Plant genomics researchers stand at a crossroads. Behind them are the completed genome sequences of rice1 and the model mustard plant Arabidopsis thaliana.2 Now, armed with insights gained from both plant and animal sequencing projects, plant biologists must decide how to proceed with future sequencing, proteomics, and functional genomics endeavors--and how to allot precious basic research dollars while, at the same time, keeping
Eat Yourself to Live: Autophagy’s Role in Health and Disease
Vikramjit Lahiri and Daniel J. Klionsky | Mar 1, 2018 | 10+ min read
New details of the molecular process by which our cells consume themselves point to therapeutic potential.

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