ScienceIQ.com

The Gingerbread Man

Did you know that gingerbread came about because of a smut disease of wheat? ...

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TheGingerbreadMan
Medicine

Resistance is NOT Futile!

Maybe if you are a Star Trek heroine up against the Borg, 'resistance is futile.' But if you are a germ that makes people sick, resistance - to antibiotics - is not futile at all. ... Continue reading

ResistanceisNOTFutile
Geology

The San Andreas Fault

Scientists have learned that the Earth's crust is fractured into a series of 'plates' that have been moving very slowly over the Earth's surface for millions of years. Two of these moving plates meet ... Continue reading

TheSanAndreasFault
Biology

Diadromous Fish

Diadromous fish are fish that migrate between freshwater and saltwater. The migration patterns differ for each species and have seasonal and lifecycle variations. Only one percent of all fish in the ... Continue reading

DiadromousFish
Astronomy

Stars With Long Hair

Throughout history, people have been both awed and alarmed by comets, stars with 'long hair' that appeared in the sky unannounced and unpredictably. We now know that comets are dirty-ice leftovers ... Continue reading

StarsWithLongHair

Embryo Transfer and Cloning

EmbryoTransferandCloningScientists use embryo transfer technology to obtain more offspring from a genetically superior animal. For instance, if a farmer owns a cow that produces excellent milk and wants more cows to produce milk like hers, he can use embryo transfer. How? A scientist collects an embryo (a fertilized ovum) from the cow (called ‘the donor’) and transfers it to another cow (‘the recipient’) to complete the gestation period. With normal reproduction a cow would give birth to 6 or 7 calves during her lifetime; with embryo transfer the same number can be obtained in less than a year.

Embryo transfer is required for other reproductive technologies like in vitro fertilization, sperm injection, and cloning by nuclear transfer. In fact, embryo transfer is the predecessor of cloning. But the transition between embryo transfer and cloning was gradual.

In 1952, nuclear transfer experiments with adult frog cells produced viable embryos, but they didn't develop beyond the tadpole stage. In 1986, Steen Willadsen in Cambridge, England, used nucleus transfer to produce sheep. He used embryo cells rather than adult cells. During that time, a company in Texas, Granada Biosciences, employed Willadsen to do nucleus transfer cloning. Granada produced hundreds of calves by nucleus transfer cloning during the '80s and '90s. Finally, in 1997, a group in Scotland used an adult cell from the mammary gland of a sheep, and produced offspring by nuclear transfer; Dolly became the first mammal cloned from an adult cell.