Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker

Objective To explore the feasibility of genetic marker detection of semen-specific coding region single nucleotide polymorphism (cSNP) based on SNaPshot technology in semen stains and mixed body fluid identification. Methods Genomic DNA (gDNA) and total RNA were extracted from 16 semen stains and 11...

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Main Author: Rui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI
Format: Article
Language:zho
Published: Editorial Office of Journal of Forensic Medicine 2023-10-01
Series:Fayixue Zazhi
Subjects:
Online Access:http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.510804.pdf
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author Rui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI
author_facet Rui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI
author_sort Rui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI
collection DOAJ
description Objective To explore the feasibility of genetic marker detection of semen-specific coding region single nucleotide polymorphism (cSNP) based on SNaPshot technology in semen stains and mixed body fluid identification. Methods Genomic DNA (gDNA) and total RNA were extracted from 16 semen stains and 11 mixtures composed of semen and venous blood, and the total RNA was reverse transcribed into complementary DNA (cDNA). The cSNP genetic markers were screened on the validated semen-specific mRNA coding genes. The cSNP multiplex detection system based on SNaPshot technology was established, and samples were genotyped by capillary electrophoresis (CE). Results A multiplex detection system containing 5 semen-specific cSNPs was successfully established. In 16 semen samples, except the cSNP located in the TGM4 gene showed allele loss in cDNA detection results, the gDNA and cDNA typing results of other cSNPs were highly consistent. When detecting semen-venous blood mixtures, the results of cSNP typing detected were consistent with the genotype of semen donor and were not interfered by the genotype of venous blood donor. Conclusion The method of semen-specific cSNPs detection by SNaPshot technology method can be applied to the genotyping of semen (stains) and provide information for determining the origin of semen in mixed body fluids (stains).
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spelling doaj.art-6cfbde6152534019bd1e567abc7743e42024-01-24T02:19:30ZzhoEditorial Office of Journal of Forensic MedicineFayixue Zazhi1004-56192023-10-0139546547010.12116/j.issn.1004-5619.2021.510804Application of SNaPshot Technology in Semen-Specific cSNP Genetic MarkerRui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI01.Shanghai Key Laboratory of Forensic Medicine, Key Laboratory of Forensic Science, Ministry of Justice, Shanghai Forensic Service Platform, Academy of Forensic Science, Shanghai 200063, China;2.Department of Forensic Medicine, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China;3.Department of Forensic Medicine, Inner Mongolia Medical University, Hohhot 010110, ChinaObjective To explore the feasibility of genetic marker detection of semen-specific coding region single nucleotide polymorphism (cSNP) based on SNaPshot technology in semen stains and mixed body fluid identification. Methods Genomic DNA (gDNA) and total RNA were extracted from 16 semen stains and 11 mixtures composed of semen and venous blood, and the total RNA was reverse transcribed into complementary DNA (cDNA). The cSNP genetic markers were screened on the validated semen-specific mRNA coding genes. The cSNP multiplex detection system based on SNaPshot technology was established, and samples were genotyped by capillary electrophoresis (CE). Results A multiplex detection system containing 5 semen-specific cSNPs was successfully established. In 16 semen samples, except the cSNP located in the TGM4 gene showed allele loss in cDNA detection results, the gDNA and cDNA typing results of other cSNPs were highly consistent. When detecting semen-venous blood mixtures, the results of cSNP typing detected were consistent with the genotype of semen donor and were not interfered by the genotype of venous blood donor. Conclusion The method of semen-specific cSNPs detection by SNaPshot technology method can be applied to the genotyping of semen (stains) and provide information for determining the origin of semen in mixed body fluids (stains).http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.510804.pdf|forensic genetics|body fluids identification|mixture analysis|coding region single nucleotide polymorphism|snapshot method|semen
spellingShingle Rui-yang TAO, Shou-yu WANG, Chun-yan YUAN, Ruo-cheng XIA, Cheng-tao LI
Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
Fayixue Zazhi
|forensic genetics|body fluids identification|mixture analysis|coding region single nucleotide polymorphism|snapshot method|semen
title Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
title_full Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
title_fullStr Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
title_full_unstemmed Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
title_short Application of SNaPshot Technology in Semen-Specific cSNP Genetic Marker
title_sort application of snapshot technology in semen specific csnp genetic marker
topic |forensic genetics|body fluids identification|mixture analysis|coding region single nucleotide polymorphism|snapshot method|semen
url http://www.fyxzz.cn/fileup/1004-5619/PDF/2021.510804.pdf
work_keys_str_mv AT ruiyangtaoshouyuwangchunyanyuanruochengxiachengtaoli applicationofsnapshottechnologyinsemenspecificcsnpgeneticmarker