Originally posted by James_D
Well the Incest isnt a direct link to malformations, but it is a cause in increased frequency. Because of reduced genepool. The best example is the British royal family. They suffered greatly from Clotting deficiency disease, which is a X-linked recessive gene. The frequent inbreeding in the royal family lead to an almost certainty that the males would have the disease, while the females would be carriers.
And also the indian example is just another example of decreased genepool. And therefore an increase in recessive gene diseases will show.
In Norway there is also a slight problem with the pakistani population were, cousins inbreed, and we have an increase in resessive diseases and malformations.
So it's not totally correct to say that inbreeding leads to malformations, but the genes for resessive diseases will be more appearant among the inbreeders.
james.
Sorry for any spelling mistakes, I'm tired..
Well the Incest isnt a direct link to malformations, but it is a cause in increased frequency. Because of reduced genepool. The best example is the British royal family. They suffered greatly from Clotting deficiency disease, which is a X-linked recessive gene. The frequent inbreeding in the royal family lead to an almost certainty that the males would have the disease, while the females would be carriers.
And also the indian example is just another example of decreased genepool. And therefore an increase in recessive gene diseases will show.
In Norway there is also a slight problem with the pakistani population were, cousins inbreed, and we have an increase in resessive diseases and malformations.
So it's not totally correct to say that inbreeding leads to malformations, but the genes for resessive diseases will be more appearant among the inbreeders.
james.
Sorry for any spelling mistakes, I'm tired..
Here is a link to an abbreviated ancestral chart tracking the gene. Henry and Irene's sons are the first group in row VI there.
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