Three novel human dystrophin gene STR loci and typing method thereof

A dystrophin and typing method technology, applied in the field of human dystrophin gene STR gene locus and its typing, can solve the problems of erroneous analysis results, no consistent results, low STR locus density, etc. To achieve the effect of easy operation, wide application prospects, simple instruments and equipment

Inactive Publication Date: 2012-03-28
XI AN JIAOTONG UNIV
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Problems solved by technology

However, the linkage analysis method is a probabilistic diagnosis, and the density of STR sites in this gene region is too low, which will lead to erroneous analysis results due to gene recombination
[0007] 2) For new STR loci, there are no standard typing kits and allelic cloning libraries in the world
[0008] 3) International studies on the association between known STR loci and Duchenne muscular dystrophy have not obtained consistent results, that is, no genetic loci that are stably associated with Duchenne muscular dystrophy have been found

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  • Three novel human dystrophin gene STR loci and typing method thereof
  • Three novel human dystrophin gene STR loci and typing method thereof
  • Three novel human dystrophin gene STR loci and typing method thereof

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Embodiment Construction

[0042] The present invention will be further described below in conjunction with specific examples.

[0043]Firstly, 15 candidate new STR sequences of the DMD gene were selected from NCBI, and the allele frequency distribution of the genetic structure of the DMD gene STR in the healthy population was studied by genotyping and DNA sequence determination, thus three new candidate STR sequences were screened out. Highly polymorphic loci in the Han population of my country. The three STR loci studied in the present invention are DXSDMD-in60, DXSDMD-in30, and DXSDMD-in2 respectively; their amplified fragments are respectively: 138-162bp, 152-168bp, and 110-150bp. All fragments of this gene locus are moderate in size and suitable for PCR amplification.

[0044] The three STR gene loci of the present invention have been preliminarily applied in the investigation of the genetic data of the Chinese ethnic group in the applicant's laboratory, and the DNA typing results of the healthy Ha...

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Abstract

The invention discloses three novel human dystrophin (DMD) gene STR gene loci and a typing method thereof, which is characterized in that the three DMD gene STR loci are respectively positioned in the 60th, the 30th and the second introns of the DMD gene and are respectively DXSDMD-in60, DXSDMD-in30 and DXSDMD-in2; and the locus fragments of the three gene STR loci have moderate sizes and are allsuitable for PCR amplification. The invention selects 15 novel candidate STR sequences of the DMD gene from NCBI, uses gene typing and DNA sequence analysis and definition, studies the allele frequency distribution of the genetic structure of DMD gene STR in health populations, and obtains the DNA typing results in the health populations of the Han nationality in Xi'an city. Proven by statisticaltreatment, the polymorphic information contents of the three STR loci in the studied populations are all larger than 0.60, and the three STR loci can be used in population genetics and medicolegal practice and provide a theoretical basis for the gene diagnose and molecular mechanism study of Duchenne muscular dystrophy disease.

Description

technical field [0001] The invention relates to a nucleic acid detection method, in particular to three novel human dystrophin (DMD) gene STR loci and a typing method thereof. Background technique [0002] Short tandem repeats (short tandem repeats, referred to as STR) are a type of microsatellite DNA sequence formed by tandem repeats with 2-7 base pairs as the core unit, and its fragments can be amplified by PCR technology. STR is mainly due to the change of the number of core repeating units to form the genetic polymorphism of the STR gene locus, and its alleles can be typed by techniques such as silver staining, fluorescent labeling and autoradiography. In the human genome, there is an STR gene locus every 6-10kb on average, which provides a rich source of high-information gene loci for forensic personal identification and paternity testing. [0003] STR has the following significant advantages in research and application: good repeatability, stable and reliable typing r...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C12Q1/68C12N15/11
Inventor 李生斌孙瑞芳李欣朱永生封佳丽刘耀
Owner XI AN JIAOTONG UNIV
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