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Artikel-artikel mengenai Genetic engineering

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A few days after successful fertilization, an embryo becomes a rapidly dividing ball of cells called a blastocyst. Juan Gaertner/Science Photo Library via Getty Images

Promising assisted reproductive technologies come with ethical, legal and social challenges – a developmental biologist and a bioethicist discuss IVF, abortion and the mice with two dads

Scientists can create viable eggs from two male mice. In the wake of CRISPR controversies and restrictive abortion laws, two experts start a dialogue on ethical research in reproductive biology.
While resurrecting dinosaurs may not be on the docket just yet, gene drives have the power to alter entire species. Hiroshi Watanabe/DigitalVision via Getty Images

‘Jurassic World’ scientists still haven’t learned that just because you can doesn’t mean you should – real-world genetic engineers can learn from the cautionary tale

As genetic engineering and DNA manipulation tools like CRISPR continue to advance, the distinction between what science ‘could’ and ‘should’ do becomes murkier.
Most U.S.-grown soybeans are genetically modified, so products containing them may be required to carry the new ‘bioengineered’ label. Johannes Eisele/AFP via Getty Images

What is bioengineered food? An agriculture expert explains

There’s a new label on many US food products – here’s what it means and who pushed to add it.
A tailings pond at an oilsands facility near Fort McMurray, Alta., in July 2012. The estimated cost of reclaiming oilsands mines is almost $31 billion. THE CANADIAN PRESS/Jeff McIntosh

How engineered bacteria could clean up oilsands pollution and mining waste

Solutions to some of the globe’s most daunting environmental challenges may be closer than you think. Scientists are harnessing nature to clean up toxic chemicals and mining waste.
Mikaela Nordborg/Australian Institute of Marine Science

Gene editing is revealing how corals respond to warming waters. It could transform how we manage our reefs

New research involving CRISPR technology has furthered our understanding of corals’ gene functions. Specifically, it has revealed a mechanism underpinning how corals withstand heat stress.

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