
Characterization of Single Nucleotide Polymorphism Marker in the Chinese Giant Salamander Andrias davidianus
Author(s) -
Quanhe Wang,
Lei Cheng,
Huanfang Tian,
Xiaoli Dong,
Hang Xiao,
Qiaomu Hu,
YuMei Chang
Publication year - 2021
Publication title -
agricutural science digest/agricultural science digest
Language(s) - English
Resource type - Journals
eISSN - 0976-0547
pISSN - 0253-150X
DOI - 10.18805/ag.d-200
Subject(s) - biology , genetics , locus (genetics) , genetic diversity , loss of heterozygosity , single nucleotide polymorphism , snp , allele , zoology , evolutionary biology , gene , genotype , population , demography , sociology
Background: Chinese giant salamander Andrias davidianus is called “baby fish” in China. Due to its palatability and nutritional value, it was widely cultured in China. The current study was to evaluate the genetic diversity of the farmed A. davidianus. Methods: 30 salamanders were collected from farm and DNA was extracted. Thirty contigs potentially containing SNPs were selected from the previously developed RAD-seq library. The primer was designed and PCR was performed, than the products was sequenced from different direction. At last the sequences were analyzed using the vector NTI 10.Result: 5824bp high-quality sequences embodied in 16 contigs were sequenced and eighty SNP loci were identified which each SNP locus exhibited bi-alleles. The effective allele number from 1.03 to 2.00 and the minor allele frequency was 0.017 to 0.500. The expected heterozygosity was from 0.0333 to 0.5091 and the observed heterozygosity was 0.0333 to 1.0000. Sixty-six of the 80 loci significantly deviated from the Hardy-Weinberg equilibrium (P less than 0.05). The results provide useful genomic resources to evaluate the genetic diversity of A. davidianus for conservation and aquaculture.