ScienceIQ.com

Sedimentary Rock

Sedimentary rock is one of three rock types on earth. Rock types are classified according to how the rock is formed. Igneous rock forms as it cools to a solid from molten rock. Metamorphic rock forms when rock is altered by intense heat, pressure, or both. Sedimentary rock is formed from particles derived from other rock through the processes of ...

Continue reading...

SedimentaryRock
Chemistry

Turning Oil Into Gas

When you see all those cars at the gas station filling up with unleaded, you may not stop to think about how that gasoline got there. It wasn't pumped out of the ground in that form. The same goes for ... Continue reading

TurningOilIntoGas
Biology

Microarrays: Chipping Away At The Mysteries Of Science And Medicine

With only a few exceptions, every cell of the body contains a full set of chromosomes and identical genes. Only a fraction of these genes are turned on, however, and it is the subset that is ... Continue reading

Microarrays
Geology

Finding Ice In The Rocks--Evidence Of Earth's Ice Ages

In the late 1700s, geologists began trying to determine how huge boulders of granite weighing several tons could have moved as much as 80 km (50 miles) from their origins in the Swiss Alps. Some ... Continue reading

EarthsIceAges
Biology

See You Later Crocodile, In A While Alligator

Name a reptile that is really big, has lots of teeth and has been around for millions and millions of years. If you guessed an alligator, you'd be right. If you guessed a crocodile, you'd also be ... Continue reading

SeeYouLaterCrocodile

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.