SSR fluorescent-labeled primers for paternity identification and population genetic analysis of the Great Salamander
A paternity test and salamander technology, applied in the field of genetics, can solve the problem of lack of microsatellite markers, and achieve the effects of high observation heterozygosity, strong specificity and high data accuracy
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Embodiment 1
[0023] Example 1: Construction and acquisition of 10 pairs of primers
[0024] 1. Screening of SSR loci based on the simplified genome.
[0025]Take a salamander tail tissue sample, use the TIANGEN kit (TIANGEN Biotech Co., Ltd., Beijing), and follow the kit procedure for DNA extraction. 100 μL of DNA samples were obtained, and Illumina HiSeq2500 (PE250) sequencing technology was used for library construction. The specific steps of library construction (Novogene Biotechnology Co., Ltd.) include: (1) sample detection; (2) library construction and library inspection. Qualified samples were randomly interrupted with a Covaris ultrasonic breaker, and then repaired at the end and added with A Tailing, adding sequencing adapters, purification, PCR amplification and other steps to complete the entire library preparation. After the library construction is completed, use Qubit 2.0 for preliminary quantification, dilute the library, and then use Agilent 2100 to detect the insert fragm...
Embodiment 2
[0042] Example 2: Using primers to identify individuals of the Great Salamander
Embodiment 3
[0047] Example 3: Using primers for paternity identification of the Great Salamander
[0048] The 10 pairs of primers provided in Example 1 were used to carry out paternity identification on 30 progeny Great Salamanders (the female parents are all FGYHF34, and the candidate male parents include MGYHF31, MGYHF32 and MGYHF33). For the specific experimental process, refer to the PCR amplification and genotyping in Example 1. The typing results were read to obtain the locus matrix of 34 salamanders, and the probabilities of exclusion (PE) and cumulative PE (cumulative PE, CPE) of each locus were calculated using CERVUS v3.9 software. Use the Simulation of Parentage Analysis module for 10,000 simulated identifications, and the ParentageAnalysis module for formal parentage identification.
[0049] The relationship between the number of loci used and the probability of non-parental exclusion was sequentially tested according to the order of polymorphism (the combination of test prim...
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