skip to main content

Identification of BMP15 Exon 2 for fecundity traits by PCR-RFLP and nucleotide sequencies in Kejobong goat

A. Febriana  -  Faculty of Animal and Agricultural Sciences, Diponegoro University, Indonesia
S. Sutopo  -  Faculty of Animal and Agricultural Sciences, Diponegoro University, Indonesia
*E. Kurnianto  -  Faculty of Animal and Agricultural Sciences, Diponegoro University, Indonesia
Open Access Copyright (c) 2017 Journal of the Indonesian Tropical Animal Agriculture under https://creativecommons.org/licenses/by-sa/4.0/.

Citation Format:
Abstract

Kejobong goat is known as prolific and high productivity goat breed in Indonesia. PCR-RFLP and sequencing technique was established in the present study to accomplish the polymorphisms of Bone Morphogenetic Protein 15 (BMP15) gene exon 2 on Kejobong goat does. The blood samples was collected from 48 Kejobong does which were selected based on their litter size. The size of PCR amplification of BMP15 gene exon 2 was 837 bp. The product of PCR-RFLP technique digested by HinfI enzyme showed that the samples were monomorphic. Authentication result using nucleotide sequencing found 4 substitution (A391G, C464G, T828C and C830G), 1 alignment gap (site 817) and 1 insertion nucleotide (site 822). This mutations caused 6 haplotypes formatted. The mutants of BMP15 exon 2 on Kejobong goats indicated that this breed had their own mutation controling the prolific trait. The phylogenetic tree build on the sequences of BMP15 gene exon 2 of Kejobong goats was grouped into 3 clusters. The alignment gap indicated to be the specific marker for the prolific trait (duplet) in Kejobong goat. The particular insertion site could be the recognition site of Kejobong goat based on BMP15 exon 2.

Fulltext View|Download
Keywords: fecundity trait; polymorphisms; BMP15 gene; prolific; Kejobong goat

Article Metrics:

Last update:

  1. Effect of insulin-like growth factor 1 gene on growth traits of Kejobong goat and its growth analysis

    Dela Ayu Lestari, Takuro Oikawa, Sutopo Sutopo, Endang Purbowati, Asep Setiaji, Edy Kurnianto. Veterinary World, 13 (1), 2020. doi: 10.14202/vetworld.2020.127-133
  2. Comparison non-linear growth models to reflect body weight and body measurements of pre-weaning Kejobong goat

    D A Lestari, A Setiaji, S Sutopo. IOP Conference Series: Earth and Environmental Science, 1246 (1), 2023. doi: 10.1088/1755-1315/1246/1/012072
  3. Amino acid sequence based on Cytochrome b gene in Kejobong goat and its genetic relationships among several local goats in Asia

    Dela Ayu Lestari, Endang Purbowati, Sutopo Sutopo, Edy Kurnianto. Veterinary World, 11 (8), 2018. doi: 10.14202/vetworld.2018.1196-1202

Last update: 2024-04-19 06:00:13

  1. Effect of insulin-like growth factor 1 gene on growth traits of Kejobong goat and its growth analysis

    Dela Ayu Lestari, Takuro Oikawa, Sutopo Sutopo, Endang Purbowati, Asep Setiaji, Edy Kurnianto. Veterinary World, 13 (1), 2020. doi: 10.14202/vetworld.2020.127-133
  2. Phylogenetical relationships between Kejobong goat and other goats based on Mt-DNA D-loop sequence analysis

    Lestari D.. Tropical Animal Science Journal, 41 (2), 2018. doi: 10.5398/tasj.2018.41.2.85
  3. Amino acid sequence based on Cytochrome b gene in Kejobong goat and its genetic relationships among several local goats in Asia

    Dela Ayu Lestari, Endang Purbowati, Sutopo Sutopo, Edy Kurnianto. Veterinary World, 11 (8), 2018. doi: 10.14202/vetworld.2018.1196-1202