The origin of human aneuploidy: where we have been, where we are going
T Hassold, H Hall, P Hunt - Human molecular genetics, 2007 - academic.oup.com
T Hassold, H Hall, P Hunt
Human molecular genetics, 2007•academic.oup.comAneuploidy is the most common chromosome abnormality in humans, and is the leading
genetic cause of miscarriage and congenital birth defects. Since the identification of the first
human aneuploid conditions nearly a half-century ago, a great deal of information has
accrued on its origin and etiology. We know that most aneuploidy derives from errors in
maternal meiosis I, that maternal age is a risk factor for most, if not all, human trisomies, and
that alterations in recombination are an important contributor to meiotic non-disjunction. In …
genetic cause of miscarriage and congenital birth defects. Since the identification of the first
human aneuploid conditions nearly a half-century ago, a great deal of information has
accrued on its origin and etiology. We know that most aneuploidy derives from errors in
maternal meiosis I, that maternal age is a risk factor for most, if not all, human trisomies, and
that alterations in recombination are an important contributor to meiotic non-disjunction. In …
Abstract
Aneuploidy is the most common chromosome abnormality in humans, and is the leading genetic cause of miscarriage and congenital birth defects. Since the identification of the first human aneuploid conditions nearly a half-century ago, a great deal of information has accrued on its origin and etiology. We know that most aneuploidy derives from errors in maternal meiosis I, that maternal age is a risk factor for most, if not all, human trisomies, and that alterations in recombination are an important contributor to meiotic non-disjunction. In this review, we summarize some of the data that have led to these conclusions, and discuss some of the approaches now being used to address the underlying causes of meiotic non-disjunction in humans.
