Can Mice Be Produced With Two Genetic Mothers?

AI Thread Summary
Recent research has successfully produced mice with two genetic mothers, eliminating the need for a male's DNA in reproduction. This groundbreaking study involved altering the DNA of one mother to mimic male genetic contributions, resulting in the birth of two mice, one of which matured and reproduced. However, the process required hundreds of eggs, yielding only two viable offspring, raising concerns about health risks and efficiency. The findings highlight the importance of paternal genetic contributions in mammalian development, as certain genes, known as "imprinted" genes, exhibit different activity patterns depending on whether they are inherited from the mother or father. This research not only advances understanding of mammalian reproduction but also has potential implications for stem cell therapies in treating diseases.
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They have produced mice with two genetic moms -- and no father.

In fact, one of the mouse mothers was a mutant newborn, whose DNA had been altered to make it act like a male's contribution to an embryo.

But the new work sheds light on why people, mice and other mammals normally need a male's DNA for reproduction, and some experts say it also has implications for the idea of using stem cells to treat disease.

They say they produced two mice, one of which grew to maturity and gave birth.

Experts also noted that it took hundreds of eggs to produce just two mice and that the health risks are unknown.

However, the study provides new evidence for the standard explanation for why mammals normally need a male's DNA.

Scientists say that in an embryo, some mammal genes behave differently if inherited from the father rather than the mother, and that this paternal activity pattern is needed for normal development.

Relatively few genes act in that way, and they are said to be "imprinted." In some cases these genes are active only if inherited from the father, not the mother, and in other cases it is the other way around.

That DNA was combined with genes from ordinary female mice to make reconstructed eggs. Only two of 457 such eggs produced living mice.

Reference:
http://www.sltrib.com/2004/apr/04222004/nation_w/159640.asp
 
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