1.Methods and Research Hotspots of Forensic Kinship Testing.
Journal of Forensic Medicine 2023;39(3):231-239
Kinship testing is widely needed in forensic science practice. This paper reviews the definitions of common concepts, and summarizes the basic principles, advantages and disadvantages, and application scope of kinship analysis methods, including identity by state (IBS) method, likelihood ratio (LR) method, method of moment (MoM), and identity by descent (IBD) segment method. This paper also discusses the research hotspots of challenging kinship testing, complex kinship testing, forensic genetic genealogy analysis, and non-human biological samples.
DNA Fingerprinting
;
Forensic Genetics/methods*
;
Forensic Sciences
;
Pedigree
;
Humans
2.Application of Microhaplotypes in Sibling Kinship Testing.
Xuan TANG ; Dan WEN ; Chu-Dong WANG ; Ru-Yi XU ; Hong-Tao JIA ; Jie-Nan LI ; Bai-Yi-la ZHALAGA
Journal of Forensic Medicine 2023;39(3):288-295
OBJECTIVES:
To investigate the efficacy of different numbers of microhaplotype (MH) loci and the introduction of different reference samples on the identification of full sibling, half sibling and differentiation between full sibling and half sibling kinships, and to explore the effect of changing mutation rate on sibling testing.
METHODS:
First, a family map involving three generations was established, and four full sibling identification models, five half sibling identification models and five models distinguishing full and half siblings were constructed for different reference samples introduced. Based on the results of the previous study, two sets of nonbinary SNP-MH containing 34 and 54 loci were selected. Based on the above MH loci, 100 000 pairs of full sibling vs. unrelated individuals, 100 000 pairs of half sibling vs. unrelated individuals and 100 000 pairs of full sibling vs. half sibling were simulated based on the corresponding sibling kinship testing models, and the efficacy of each sibling kinship testing model was analyzed by the likelihood ratio algorithm under different thresholds. The mutant rate of 54 MH loci was changed to analyze the effect of mutation rate on sibling identification.
RESULTS:
In the same relationship testing model, the systematic efficacy of sibling testing was positively correlated with the number of MH loci detected. With the same number of MH loci, the efficacy of full sibling testing was better than that of uncle or grandfather when the reference sample introduced was a full sibling of A, but there was no significant difference in the identification efficacy of the four reference samples introduced for full sibling and half sibling differentiation testing. In addition, the mutation rate had a slight effect on the efficacy of sibling kinship testing.
CONCLUSIONS
Increasing the number of MH loci and introducing reference samples of known relatives can increase the efficacy of full sibling testing, half sibling testing, and differentiation between full and half sibling kinships. The level of mutation rate in sibling testing by likelihood ratio method has a slight but insignificant effect on the efficacy.
Humans
;
Siblings
;
Polymorphism, Single Nucleotide
;
DNA Fingerprinting/methods*
3.Comparative of Forensic DNA Identification Using Cell Lysis Method and Magnetic Beads Method.
Jia-Jun SHI ; Dan WU ; Tie-Zhu LIU ; Si-Jing HAO ; Bi-Cheng MENG ; Shi-Lin LI ; Ya-Nan LIU
Journal of Forensic Medicine 2023;39(1):45-49
OBJECTIVES:
To compare the effects of cell lysis method and magnetic beads method in forensic DNA identification and to explore these two methods in forensic DNA identification.
METHODS:
The genome DNA of THP-1 cells in different quantities was extracted by the cell lysis method and magnetic beads method, and the DNA content was quantified by real-time quantitative PCR. The cell lysis method and magnetic beads method were used to type the STR of human blood with different dilution ratios.
RESULTS:
When the numbers of THP-1 cell were 100, 400 and 800, the DNA content extracted by cell lysis method were (1.219±0.334), (5.081±0.335), (9.332±0.318) ng, respectively; and the DNA content extracted by magnetic beads method were (1.020±0.281), (3.634±0.482), (7.896±0.759) ng, respectively. When the numbers of THP-1 cells were 400 and 800, the DNA content extracted by the cell lysis method was higher than that by the magnetic beads method. The sensitivity of cell lysis method and magnetic beads method was similar in STR typing of human blood at different dilution ratios. Complete STR typing could be obtained at 100, 300 and 500-fold dilutions of blood samples, but could not be detected at 700-fold dilution. STR typing of undiluted human blood could not be detected by cell lysis method.
CONCLUSIONS
The cell lysis method is easy to operate and can retain template DNA to the maximum extend. It is expected to be suitable for trace blood evidence tests.
Humans
;
Forensic Medicine
;
DNA/genetics*
;
Real-Time Polymerase Chain Reaction
;
Magnetic Phenomena
;
DNA Fingerprinting/methods*
;
Microsatellite Repeats
4.Establishment of Multiplex Amplification System of STR Loci in Felis Catus and Its Forensic Application.
Shi-Han XI ; Yi-Ling QU ; Ruo-Cheng XIA ; Lei XIONG ; Si-Yu CHAI ; Chun-Lan TONG ; Rui-Yang TAO ; Cheng-Tao LI
Journal of Forensic Medicine 2022;38(2):231-238
OBJECTIVES:
To construct a Felis catus STR loci multiplex amplification system and to evaluate its application value by testing the technical performance.
METHODS:
The published Felis catus STR loci data were reviewed and analyzed to select the STR loci and sex identification loci that could be used for Felis catus individual identification and genetic identification. The fluorescent labeling primers were designed to construct the multiplex amplification system. The system was validated for sensitivity, accuracy, balance, stability, species specificity, tissue identity and mixture analysis, and investigated the genetic polymorphisms in 145 unrelated Felis catus samples.
RESULTS:
Sixteen Felis catus autosomal STR loci and one sex determining region of Y (SRY) were successfully selected, and constructed a multiplex amplification system containing the above loci. The complete profile of all alleles could still be obtained when the amount of DNA template was as low as 0.25 ng. There was no specific amplification peak in other common animal samples. Population genetic surveys showed that total discrimination power (TDP) of the 16 STR loci was 1-3.57×10-20, the cumulative probability of exclusion (CPE) was 1-6.35×10-5 and the cumulative probability of matching was 3.61×10-20.
CONCLUSIONS
The Felis catus STR multiplex amplification system constructed in this study is highly sensitive, species-specific, and accurate in typing results, which can provide an effective solution for Felis catus species identification, individual identification and kinship identification in the field of forensic science.
Alleles
;
Animals
;
Cats/genetics*
;
Chromosomes, Human, Y
;
DNA Fingerprinting/methods*
;
DNA Primers
;
Humans
;
Microsatellite Repeats/genetics*
;
Polymerase Chain Reaction/methods*
;
Polymorphism, Genetic
5.Application Progress of Massively Parallel Sequencing Technology in STR Genetic Marker Detection.
Rui-Yang TAO ; Xin-Yu DONG ; An-Qi CHEN ; Ye-Hui LÜ ; Su-Hua ZHANG ; Cheng-Tao LI
Journal of Forensic Medicine 2022;38(2):267-279
In recent years, more and more forensic genetics laboratories have begun to apply massively parallel sequencing (MPS) technology, that is, next-generation sequencing (NGS) technology, to detect common forensic genetic markers, including short tandem repeat (STR), single nucleotide polymorphism (SNP), the control region or whole genome of mitochondrial DNA (mtDNA), as well as messenger RNA (mRNA), etc., for forensic practice, such as individual identification, kinship analysis, ancestry inference and body fluid identification. As the most widely used genetic marker in forensic genetics, STR is currently mainly detected by capillary electrophoresis (CE) platform. Compared with CE platform, MPS technology has the advantages of simultaneous detection of a large number of genetic markers, massively parallel detection of samples, the polymorphism of sequence detected by NGS makes STR have the advantages of higher resolution and system efficiency. However, MPS technology is expensive, there is no uniform standard so far, and there are problems such as how to integrate MPS-STR data with the existing CE-STR database. This review summarizes the current status of the application of MPS technology in the detection of STR genetic markers in forensic genetics, puts forward the main problems that need to be solved urgently, and prospects the application prospect of this technology in forensic genetics.
DNA Fingerprinting/methods*
;
Forensic Genetics/methods*
;
Genetic Markers
;
High-Throughput Nucleotide Sequencing/methods*
;
Microsatellite Repeats/genetics*
;
Polymorphism, Single Nucleotide
;
Sequence Analysis, DNA
;
Technology
6.Optimization and Developmental Validation of 38-plex InDel Panel for Ancestry Inference.
Qing-Guo WANG ; Lei ZHAO ; Tang-Song LI ; Wang FU ; He-Xin XIE ; Yuan MA ; Wen-Ping SUN ; Jun-Ping HAN
Journal of Forensic Medicine 2022;38(5):611-617
OBJECTIVES:
The previously established 38-plex InDel system was optimized and its performance was validated according to the Scientific Working Group on DNA Analysis Method (SWGDAM) application guidelines. The ancestry inference accuracy of individuals from East Asian, European, African and mixed populations was verified.
METHODS:
DNA standard sample 9947A was used as the template to establish the optimal amplification conditions by adjusting primer balance, Mg2+ final concentration and optimizing PCR thermal cycle parameters and amplification volume. The allelic dropout, nonspecific amplification and whether the origin of the inferred samples matched the known information were compared to evaluate the performance of this system.
RESULTS:
The optimal dosage of this system was 0.125-2 ng DNA template. The results of InDel typing were accurate, the amplification equilibrium was good, and the species specificity was good. This system showed certain tolerance to DNA samples including the inhibitor such as hemoglobin (≤80 μmol/L), indigo (≤40 mmol/L), calcium ion (≤1.0 mmol/L), and humic acid (≤90 ng/μL). The system enabled the direct amplification of DNA from saliva and blood on filter paper, and the results of ethnic inference were accurate. The system successfully detected the mixed DNA sample from two individuals. The test results of the system for common biological materials in practical cases were accurate.
CONCLUSIONS
The results of the 38-plex InDel system are accurate and reliable, and the performance of the system meets the requirement of the SWGDAM guidelines. This system can accurately differentiate the ancestry origins of individuals from African, European, East Asian, and Eurasian populations and can be implemented in forensic practice.
Humans
;
Polymorphism, Single Nucleotide
;
Genotype
;
Polymerase Chain Reaction
;
DNA/genetics*
;
DNA Fingerprinting/methods*
;
INDEL Mutation
;
Genetics, Population
;
Gene Frequency
7.Development and Forensic Application of EX20+30Y Kit.
Xu-Ming ZHOU ; Deng-Xing GAO ; Fa-Yuan LI
Journal of Forensic Medicine 2021;37(5):639-645
OBJECTIVES:
To develop a multiplex PCR amplification system (EX20+30Y for short) of 19 autosomes, 30 Y-STR loci plus the gender indicator, and evaluate its forensic application value.
METHODS:
With the six-color fluorescence labeling technology, a multiplex amplification system of 19 autosomal STR loci and 30 Y-STR loci plus the gender indicator was constructed. Blood samples from 210 unrelated individuals, 69 daily case samples and standard samples 9948 and 9947A were collected for loci detection and analysis. The EX20+30Y multiplex amplification system was evaluated by its sensitivity, mixed sample detection ability, species specificity, balance, direct amplification ability, sample applicability and anti-inhibition ability.
RESULTS:
Multiplex amplification of blood samples from 210 unrelated individuals by the detection system obtained accurate genotyping results. The detection sensitivity of standard samples was 0.125 ng and the species specificity was high. The 69 samples from daily cases were genotyped correctly. Moreover, standard sample 9948 could be accurately genotyped even if the samples contained a certain concentration of inhibitors.
CONCLUSIONS
The multiplex amplification system established in this study can conduct combined examination of 19 autosomes, 30 Y-STR loci plus the gender indicator with accurate genotyping and high sensitivity. It has a good forensic application prospect.
Chromosomes, Human, Y/genetics*
;
DNA Fingerprinting/methods*
;
Forensic Medicine/methods*
;
Humans
;
Microsatellite Repeats
;
Multiplex Polymerase Chain Reaction
;
Species Specificity
8.Forensic Application of ForenSeqTM DNA Signature Prep Kit in Zhengjiang She Ethnic Group.
Yi-Ling QU ; Yuan LIN ; Zi-Hao YANG ; Rui-Yang TAO ; Ruo-Cheng XIA ; Zheng-Jun CAO ; Rui-Xiang GAO ; Huan YU ; Zi-Wei WANG ; Qi YANG ; Xiao-Chun ZHANG ; Su-Hua ZHANG ; Cheng-Tao LI
Journal of Forensic Medicine 2021;37(6):817-824
OBJECTIVES:
To evaluate the ability of the ForenSeqTM DNA Signature Prep kit (ForenSeq kit) in analyzing the sequence information of STRs in Zhejiang She ethnic group and its forensic application efficacy.
METHODS:
A total of 50 Zhejiang She ethnic group samples were sequenced with the ForenSeq kit on the MiSeq FGx platform. The data was analyzed using ForenSeqTM universal analysis software to obtain the motif structure and flank regions of the 58 STRs, then compared with PCR-CE typing results to test the consistency. At last, the allele frequency and population genetic parameters were calculated.
RESULTS:
A total of 448 sequence polymorphic alleles were detected in 50 samples of Zhejiang She ethnic group. Compared with fragment length polymorphism detected by PCR-CE, 82 alleles were increased by MPS detection based on ForenSeq kit, and 7 SNPs variation were detected in the flanking regions of 6 loci. The 22 male individuals were genotyped, and total 19 haplotypes were detected in 24 Y chromosome STRs of these 22 males. The cumulative discrimination power of the 27 autosomal STRs was 1-8.87×10-30, the cumulative probability of exclusion of duo-testing was 0.999 999 962 640 657, the cumulative probability of exclusion of trios-testing was 0.999 999 999 999 633.
CONCLUSIONS
Based on MPS typing technology, using the ForenSeq kit greatly improves the detection efficiency. In addition, the 58 STRs have good genetic polymorphisms in Zhejiang She ethnic group, which are suitable for individual identification and paternity identification in forensic application.
DNA
;
DNA Fingerprinting/methods*
;
Ethnicity/genetics*
;
Gene Frequency
;
High-Throughput Nucleotide Sequencing/methods*
;
Humans
;
Male
;
Microsatellite Repeats
;
Polymorphism, Single Nucleotide
;
Sequence Analysis, DNA/methods*
9.Oral Metagenomic Analysis Techniques
Journal of Dental Hygiene Science 2019;19(2):86-95
The modern era of microbial genome analysis began in earnest in the 2000s with the generalization of metagenomics and gene sequencing techniques. Studying complex microbial community such as oral cavity and colon by a pure culture is considerably ineffective in terms of cost and time. Therefore, various techniques for genomic analysis have been developed to overcome the limitation of the culture method and to explore microbial communities existing in the natural environment at the gene level. Among these, DNA fingerprinting analysis and microarray chip have been used extensively; however, the most recent method of analysis is metagenomics. The study summarily examined the overview of metagenomics analysis techniques, as well as domestic and foreign studies on disease genomics and cluster analysis related to oral metagenome. The composition of oral bacteria also varies across different individuals, and it would become possible to analyze what change occurs in the human body depending on the activity of bacteria living in the oral cavity and what causality it has with diseases. Identification, isolation, metabolism, and presence of functional genes of microorganisms are being identified for correlation analysis based on oral microbial genome sequencing. For precise diagnosis and treatment of diseases based on microbiome, greater effort is needed for finding not only the causative microorganisms, but also indicators at gene level. Up to now, oral microbial studies have mostly involved metagenomics, but if metatranscriptomic, metaproteomic, and metabolomic approaches can be taken together for assessment of microbial genes and proteins that are expressed under specific conditions, then doing so can be more helpful for gaining comprehensive understanding.
Bacteria
;
Colon
;
Dental Caries
;
Diagnosis
;
DNA Fingerprinting
;
Generalization (Psychology)
;
Genes, Microbial
;
Genome, Microbial
;
Genomics
;
Human Body
;
Metabolism
;
Metabolomics
;
Metagenome
;
Metagenomics
;
Methods
;
Microbiota
;
Mouth
10.Evaluating the Efficiency of REPLI-g® Single Cell Kit for Trace DNA Amplification.
Qian Nan XU ; Qiong SHEN ; Jia Yi ZHANG ; Yi Lun ZHANG ; Li LI ; Xi Ling LIU ; Cheng Tao LI
Journal of Forensic Medicine 2019;35(2):210-215
Objective To evaluate the efficiency of REPLI-g® Single Cell Kit for sample DNA amplification, and explore its application value in forensic trace DNA amplification. Methods Three DNA extraction kits were selected to extract DNA from peripheral blood of 10 unrelated individuals. The DNA yield and purity of the three DNA extraction kits were compared. According to the results of comparison, one DNA sample was selected to concentrate and dilute, then used as the initial sample of whole genome amplification (WGA). REPLI-g® Single Cell Kit was used to amplify the initial sample at the whole genome level. The amplification yield and amplification times were calculated, and the distribution of DNA fragments was detected by agarose gel electrophoresis. Goldeneye® DNA ID System 20A Kit was used to perform the STR typing of the initial sample and DNA samples amplified at the whole genome level to evaluate the performance of REPLI-g® Single Cell Kit in trace DNA amplication in terms of purity and yield as well as the success rate of STR typing. Results After comparison, one DNA sample was selected from QIAsymphony® DNA Investigator® Kit extracts to concentrate and dilute as the initial sample of WGA. After amplifying the whole genome of a series of initial samples by REPLI-g® Single Cell Kit, the lowest average of amplification yield reached 8.77×103 ng, while the average of the corresponding amplification times reached 1.40×106. DNA fragments were large and concentrated. The STR typing success rate of WGA samples became lower with the decrease of initial samples used, but when the amount of samples was lower than 0.5 ng, the STR typing success rate of samples after DNA WGA was higher than that of samples without DNA WGA. Conclusion REPLI-g® Single Cell Kit can increase the yield of template DNA. Especially for trace DNA, the STR typing success rate can be improved to a certain extent.
DNA
;
DNA Fingerprinting
;
Humans
;
Microsatellite Repeats
;
Nucleic Acid Amplification Techniques/standards*
;
Sequence Analysis, DNA/methods*

Result Analysis
Print
Save
E-mail