Nusantara Bioscience
Vol. 10 No. 4 (2018)

Short Communication: Genetic diversity of the IGF2 gene as a source of genetic marker for halal authentication

ANTI DAMAYANTI HAMDANI (1Doctoral Program of Biology, School of Life Sciences and Technology, Institut Teknologi Bandung. Jl. Ganesa 10 Bandung 40132, West Java, Indonesia.)
MADIHAH . (Department of Biology, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor, Sumedang 45363, West Java, Indonesia.)
RR. BHINTARTI SURYOHASTARI (Department of Biology, Faculty of Sciences and Technology, Universitas Islam Negeri Syarif Hidayatullah, Jakarta 15412, Jakarta, Indonesia.)
DEWI PETI VIRGIANTI (Program of Medical Laboratory Technique, Sekolah Tinggi Ilmu Kesehatan Bakti Tunas Husada. Tasikmalaya 46115, West Java Indonesia.)
RAHAYU FITRIAYANI WANGSA PUTRIE (Research Center for Biotechnology, Indonesian Institute of Sciences. Cibinong, Bogor 16911, West Java, Indonesia.)



Article Info

Publish Date
24 Sep 2018

Abstract

Hamdani AD, Madihah, Suryohastari RB, Virgianti DP, Putrie RFW. 2018. Genetic diversity of the IGF2 gene as a source of genetic marker for halal authentication. Nusantara Bioscience 10: 203-209. The main issue of halal authenticity is the availability of reliable and rapid analytical methods to identify animal species in raw and processed food. The two most popular procedures for identifying the source of the meat are protein-based and DNA-based methods, including mass spectroscopy (MS) using a peptide marker or PCR based DNA marker, respectively. This study aims to investigate the genetic diversity of insulin-like growth factor 2 (IGF2) gene, mainly from porcine (Sus scrofa) and bovine (Bos taurus) as a source of genetic marker for halal authentication by in-silico analysis using bioinformatic tools. Multiple sequence alignment and phylogenetic tree construction of IGF2 protein sequences from representative species of mammals, birds, and fishes showed the paraphyletic relationship between the IGF2 protein of S. scrofa and B. taurus. Protein structure analysis revealed differences in helical structures near the carboxyl end of the protein, while gene analysis showed different number of exon and motifs. By in-silico analysis, we have designed a peptide marker from amino acids at position of 93-107 (S. scrofa) and 93-112 (B. taurus) from peptide preptin region that resulted in different pattern of mass spectrum between the two species. We have also identified two DNA markers that can be detected by PCR using two primers sets designed from the IGF2 transcript sequences, to examine the presence of porcine in the sample. Thus, this study provides new genetic predictive markers, derived from the IGF2 gene, to identify the source of meat for halal authentication.

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Aims and Scope Nusantara Bioscience (Nusantara Biosci) encourages submission of manuscripts dealing with all aspects of biological sciences that emphasize issues germane to biological and nature ...