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  4. Analysis of Polycerate Mutants Reveals the Evolutionary Co-option of HOXD1 for Horn Patterning in Bovidae
 
research article

Analysis of Polycerate Mutants Reveals the Evolutionary Co-option of HOXD1 for Horn Patterning in Bovidae

Allais-Bonnet, Aurelie
•
Hintermann, Aurelie
•
Deloche, Marie-Christine
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June 1, 2021
Molecular Biology And Evolution

In the course of evolution, pecorans (i.e., higher ruminants) developed a remarkable diversity of osseous cranial appendages, collectively referred to as "headgear," which likely share the same origin and genetic basis. However, the nature and function of the genetic determinants underlying their number and position remain elusive. Jacob and other rare populations of sheep and goats are characterized by polyceraty, the presence of more than two horns. Here, we characterize distinct POLYCERATE alleles in each species, both associated with defective HOXD1 function. We show that haploinsufficiency at this locus results in the splitting of horn bud primordia, likely following the abnormal extension of an initial morphogenetic field. These results highlight the key role played by this gene in headgear patterning and illustrate the evolutionary co-option of a gene involved in the early development of bilateria to properly fix the position and number of these distinctive organs of Bovidae.

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Type
research article
DOI
10.1093/molbev/msab021
Web of Science ID

WOS:000664191500006

Author(s)
Allais-Bonnet, Aurelie
•
Hintermann, Aurelie
•
Deloche, Marie-Christine
•
Cornette, Raphael
•
Bardou, Philippe
•
Naval-Sanchez, Marina
•
Pinton, Alain
•
Haruda, Ashleigh
•
Grohs, Cecile
•
Zakany, Jozsef
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Date Issued

2021-06-01

Publisher

OXFORD UNIV PRESS

Published in
Molecular Biology And Evolution
Volume

38

Issue

6

Start page

2260

End page

2272

Subjects

Biochemistry & Molecular Biology

•

Evolutionary Biology

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Genetics & Heredity

•

hox genes

•

co-option

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regulatory mutation

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goat and sheep genomics

•

genome-wide association

•

sequence

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translocation

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transcription

•

framework

•

alignment

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growth

•

genes

•

locus

•

time

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPDUB  
Available on Infoscience
July 17, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/180132
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