Two-exon skipping within MLPH is associated with coat color dilution in rabbits.

Coat color dilution turns black coat color to blue and red color to cream and is a characteristic in many mammalian species. Matings among Netherland Dwarf, Loh, and Lionhead Dwarf rabbits over two generations gave evidence for a monogenic autosomal recessive inheritance of coat colour dilution. His...

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Main Authors: Stefanie Lehner, Marion Gähle, Claudia Dierks, Ricarda Stelter, Jonathan Gerber, Ralph Brehm, Ottmar Distl
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3869861?pdf=render
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spelling doaj-a0b79a169e984dc8b2d48336e2daf0fc2020-11-25T01:32:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8452510.1371/journal.pone.0084525Two-exon skipping within MLPH is associated with coat color dilution in rabbits.Stefanie LehnerMarion GähleClaudia DierksRicarda StelterJonathan GerberRalph BrehmOttmar DistlCoat color dilution turns black coat color to blue and red color to cream and is a characteristic in many mammalian species. Matings among Netherland Dwarf, Loh, and Lionhead Dwarf rabbits over two generations gave evidence for a monogenic autosomal recessive inheritance of coat colour dilution. Histological analyses showed non-uniformly distributed, large, agglomerating melanin granules in the hair bulbs of coat color diluted rabbits. We sequenced the cDNA of MLPH in two dilute and one black rabbit for polymorphism detection. In both color diluted rabbits, skipping of exons 3 and 4 was present resulting in altered amino acids at p.QGL[37-39]QWA and a premature stop codon at p.K40*. Sequencing of genomic DNA revealed a c.111-5C>A splice acceptor mutation within the polypyrimidine tract of intron 2 within MLPH. This mutation presumably causes skipping of exons 3 and 4. In 14/15 dilute rabbits, the c.111-5C>A mutation was homozygous and in a further dilute rabbit, heterozygous and in combination with a homozygous frame shift mutation within exon 6 (c.585delG). In conclusion, our results demonstrated a colour dilution associated MLPH splice variant causing a strongly truncated protein (p.Q37QfsX4). An involvement of further MLPH-associated mutations needs further investigations.http://europepmc.org/articles/PMC3869861?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Stefanie Lehner
Marion Gähle
Claudia Dierks
Ricarda Stelter
Jonathan Gerber
Ralph Brehm
Ottmar Distl
spellingShingle Stefanie Lehner
Marion Gähle
Claudia Dierks
Ricarda Stelter
Jonathan Gerber
Ralph Brehm
Ottmar Distl
Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
PLoS ONE
author_facet Stefanie Lehner
Marion Gähle
Claudia Dierks
Ricarda Stelter
Jonathan Gerber
Ralph Brehm
Ottmar Distl
author_sort Stefanie Lehner
title Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
title_short Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
title_full Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
title_fullStr Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
title_full_unstemmed Two-exon skipping within MLPH is associated with coat color dilution in rabbits.
title_sort two-exon skipping within mlph is associated with coat color dilution in rabbits.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Coat color dilution turns black coat color to blue and red color to cream and is a characteristic in many mammalian species. Matings among Netherland Dwarf, Loh, and Lionhead Dwarf rabbits over two generations gave evidence for a monogenic autosomal recessive inheritance of coat colour dilution. Histological analyses showed non-uniformly distributed, large, agglomerating melanin granules in the hair bulbs of coat color diluted rabbits. We sequenced the cDNA of MLPH in two dilute and one black rabbit for polymorphism detection. In both color diluted rabbits, skipping of exons 3 and 4 was present resulting in altered amino acids at p.QGL[37-39]QWA and a premature stop codon at p.K40*. Sequencing of genomic DNA revealed a c.111-5C>A splice acceptor mutation within the polypyrimidine tract of intron 2 within MLPH. This mutation presumably causes skipping of exons 3 and 4. In 14/15 dilute rabbits, the c.111-5C>A mutation was homozygous and in a further dilute rabbit, heterozygous and in combination with a homozygous frame shift mutation within exon 6 (c.585delG). In conclusion, our results demonstrated a colour dilution associated MLPH splice variant causing a strongly truncated protein (p.Q37QfsX4). An involvement of further MLPH-associated mutations needs further investigations.
url http://europepmc.org/articles/PMC3869861?pdf=render
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