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Molecular characterization of HOXC8 gene and methylation status analysis of its exon 1 associated with the length of cashmere fiber in Liaoning cashmere goat.

Authors :
Bai WL
Wang JJ
Yin RH
Dang YL
Wang ZY
Zhu YB
Cong YY
Deng L
Guo D
Wang SQ
Yang SH
Xue HL
Source :
Genetica [Genetica] 2017 Feb; Vol. 145 (1), pp. 115-126. Date of Electronic Publication: 2017 Jan 16.
Publication Year :
2017

Abstract

Homeobox protein Hox-C8 (HOXC8) is a member of Hox family. It is expressed in the dermal papilla of the skin and is thought to be associated with the hair inductive capacity of dermal papilla cells. In the present study, we isolated and characterized a full-length open reading frame of HOXC8 cDNA from the skin tissue of Liaoning cashmere goat, as well as, established a phylogenetic relationship of goat HOXC8 with that of other species. Also, we investigated the effect of methylation status of HOXC8 exon 1 at anagen secondary hair follicle on the cashmere fiber traits in Liaoning cashmere goat. The sequence analysis indicated that the obtained cDNA was 1134-bp in length containing a complete ORF of 729-bp. It encoded a peptide of 242 amino acid residues in length. The structural analysis indicated that goat HOXC8 contained a typical homeobox domain. The phylogenetic analysis revealed that Capra hircus HOXC8 had a closer genetic relationship with that of Ovis aries, followed by Bos Taurus and Bubalus bubalis. The methylation analysis suggested that the methylation degree of HOXC8 exon 1 in anagen secondary hair follicle might be involved in regulating the growth of cashmere fiber in Liaoning cashmere goat. Our results provide new evidence for understanding the molecular structural and evolutionary characteristics of HOXC8 in Liaoning cashmere goat, as well as, for further insight into the role of methylation degree of HOXC8 exon 1 regulates the growth of cashmere fiber in goat.

Details

Language :
English
ISSN :
1573-6857
Volume :
145
Issue :
1
Database :
MEDLINE
Journal :
Genetica
Publication Type :
Academic Journal
Accession number :
28093668
Full Text :
https://doi.org/10.1007/s10709-017-9950-5