Let's see a show of autopods. Part 1.
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The discovery of deep homology was a milestone in the history of evolutionary thought. Anatomical structures in distantly related organisms, structures with only the barest of functional similarities, were found to be constructed under the influence of remarkably similar genetic pathways. The original and classic example from 1989 involves genes controlling pattern in both insects and mammals – the famous Hox genes. Another great example emerged from the study of limb development and evolution in vertebrates, work beautifully described by Neil Shubin in Your Inner Fish.
The idea that the limbs of various animals are homologous – meaning
that they are variations on a theme inherited from common ancestors – is
certainly not new, with roots in the exploration of 'archetypes' by the
great Sir
Richard Owen. But deep homology goes, well, deeper, suggesting that
even basic themes like 'limb' or
'eye'
or even just 'thing-sticking-out-of-the-body-wall'
can be identified and seen to be conserved throughout the biological
world. And, importantly, deep homology points to genetic mechanisms that
underlie basic themes, structural concepts so distinct that they would
not be judged to be related by structural criteria alone. Consider, for
example, limb development in vertebrates.
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Description
The discovery of deep homology was a milestone in the history of evolutionary thought. Anatomical structures in distantly related organisms, structures with only the barest of functional similarities, were found to be constructed under the influence of remarkably similar genetic pathways. The original and classic example from 1989 involves genes controlling pattern in both insects and mammals – the famous Hox genes.
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- aa81b9e7-083e-422a-8eb8-5a8fcd384e86
- GUID
- tag:blogger.com,1999:blog-4948885059517209129.post-1821516705963039652
- URL
- http://sfmatheson.blogspot.com/2011/08/lets-see-show-of-autopods-part-1.html
Dates
- Issued
-
2011-08-03T22:53:00
- Updated
-
2011-08-04T01:21:04