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image: In Situ Hybridization Explained

In Situ Hybridization Explained

By The Scientist Staff | December 1, 2017

Profilee Joseph Gall of the Carnegie Institute describes the process, which he developed in the 1960s.

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image: Spider Silk

Spider Silk

By The Scientist Staff | October 1, 2017

Kraig Biocraft Laboratories has genetically engineered a silkworm to spin spider silk, which might be used for futuristic products.

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image: Watch This Biofilm

Watch This Biofilm

By The Scientist Staff | October 1, 2017

Researchers encoded moving images in DNA within living cells.

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image: A Grisly Stork Buffet

A Grisly Stork Buffet

By The Scientist Staff | August 15, 2017

Marabou storks on Kenya’s Mara River feast on the carcasses of migrating wildebeest that failed to make it across the waterway.

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image: Lubchenco on Conservation

Lubchenco on Conservation

By The Scientist Staff | July 17, 2017

Former NOAA administrator and environmental scientist Jane Lunchenco discusses the importance of science in the face of climate change.

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image: Microbiome Racer

Microbiome Racer

By The Scientist Staff | June 1, 2017

Genomicist Lauren Petersen wins a mountain bike race after she altered her own gut microbial communities.

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image: 45 Feet High and Rising

45 Feet High and Rising

By The Scientist Staff | April 24, 2017

Maize enthusiast Jason Karl aims to continue breaking his own records for the tallest corn plants ever grown.

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image: Cancer Genomes

Cancer Genomes

By The Scientist Staff | April 1, 2017

April Scientist to Watch Angela Brooks of the University of California, Santa Cruz, discusses her search to find vulnerabilities buried within the genomes of cancer cells.

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image: Science Your Plants!

Science Your Plants!

By The Scientist Staff | February 1, 2017

CalTech researcher Elliot Meyerowitz describes how plant genetics influences growth and productivity.

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image: Video: Watch Cells Crawl To Firmer Ground

Video: Watch Cells Crawl To Firmer Ground

By The Scientist Staff | December 11, 2016

This collective migration, called durotaxis, depends on which cells get the best grip on a surface.

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