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image: Curious George

Curious George

By | October 1, 2016

George Church has consistently positioned himself at genomics’ leading edge.

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image: Lateral Gene Transfer in <em>Drosophila</em>

Lateral Gene Transfer in Drosophila

By | October 1, 2016

DNA transfer is a regular event among bacteria, and research over the past decade has shown that microbes can also shuttle their genetic material to multicellular hosts.

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image: Protozoans Found With No Dedicated Stop Codons

Protozoans Found With No Dedicated Stop Codons

By | October 1, 2016

Some ciliates use the same trio of nucleotides to code for an amino acid and to stop translation.

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image: Science History: The First Transgenic <em>Arabidopsis</em>

Science History: The First Transgenic Arabidopsis

By | October 1, 2016

Tweaks to a transformation protocol in 1986 cemented the little plant's mighty role in plant genetics research.

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image: Some Human Cancers Exhibit Low-grade Inflammation

Some Human Cancers Exhibit Low-grade Inflammation

By | October 1, 2016

NSAIDs reduce this "parainflammation," hinting at how they help lower cancer risk.

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image: Techniques for Assessing Genomic Copy Number Variations

Techniques for Assessing Genomic Copy Number Variations

By | October 1, 2016

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.

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image: DNA Sequencing: From Tedious to Automatic

DNA Sequencing: From Tedious to Automatic

By | October 1, 2016

Sequencing has gone from a laborious manual task costing thousands of dollars to a quick and cheap practice that is standard for many laboratories.

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image: Scientists Catch Translation in the Act

Scientists Catch Translation in the Act

By | October 1, 2016

Newly developed techniques from four different groups rely on the same basic steps to track translation in live cells.

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image: Bacteria and Humans Have Been Swapping DNA for Millennia

Bacteria and Humans Have Been Swapping DNA for Millennia

By | October 1, 2016

Bacteria inhabit most tissues in the human body, and genes from some of these microbes have made their way to the human genome. Could this genetic transfer contribute to diseases such as cancer?

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image: Targeting the Noncoding Genome with CRISPR

Targeting the Noncoding Genome with CRISPR

By | September 29, 2016

Two independent groups demonstrate the utility of CRISPR-based techniques to identify regulatory elements that govern disease-linked genes. 

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