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Fluorescence quantitative PCR reaction solution and fluorescence quantitative PCR method

A fluorescence quantification, reaction solution technology, applied in biochemical equipment and methods, microbial determination/inspection, DNA preparation, etc., can solve problems such as low amplification efficiency

Active Publication Date: 2014-01-01
BGI TECH SOLUTIONS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Therefore, in order to make fluorescent quantitative PCR more suitable for the quantification of long nucleotide fragments, it is necessary to solve the problem of low amplification efficiency.

Method used

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  • Fluorescence quantitative PCR reaction solution and fluorescence quantitative PCR method
  • Fluorescence quantitative PCR reaction solution and fluorescence quantitative PCR method
  • Fluorescence quantitative PCR reaction solution and fluorescence quantitative PCR method

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Experimental program
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preparation example Construction

[0040] Template preparation: Genomic DNA was extracted from the blood of a male yellow race, and a library was constructed according to "Preparing 2-5kb Samples for Mate Pair Library Sequencing Part#1005363Rev.B" (Part#1005363Rev.B), which contained different fragment sizes The concentration of the DNA was determined by Agilent 2100 Bioanalyzer, the concentration was 18.7nM, the average size of the deoxyribonucleic acid fragment was 557bp, and the size range of the deoxyribonucleic acid fragment was 391bp-637bp. The constructed DNA library was used as a standard, and the 1nM standard was diluted with deionized water to 5 concentrations: 0.1pM, 1pM, 10pM, 100pM and 1000pM, which were used as reaction templates. where 1nM=10 -9 mol / L, 1pM=10 -12 mol / L.

[0041] Hydrolysis probe sequence: 5'CCCTACACGACGCTCTTCCGATCT 3' (SEQ ID NO: 1), with a fluorescent group 5-FAM (5-carboxyfluorescein) at its 5' end, and a quencher group 6-TAMRA at its 3' end (6-carboxytetramethylrhodamine). ...

Embodiment 1

[0046] Fluorescent quantitative PCR comparison of embodiment 1 reaction system optimization and commercialized reaction system

[0047] 1. The optimized reaction system is:

[0048] 1) Optimized reaction system 1:

[0049] 10×PCR Buffer 2.5μL

[0050] 2.5mM dNTPs 2μL

[0051] 100mM MgSO 4 0.25 μL

[0052] 10mg / mL BSA 0.25μL

[0053] 10% Tween-20 0.25 μL

[0054] 100% DMSO 1.25 μL

[0055] 5M Betaine (betaine) 5μL

[0056] 10 μM Primer 1.1 0.75 μL

[0057] 10 μM Primer 2.1 0.75 μL

[0058] 10μM hydrolysis probe 0.625μL

[0059] 50×ROX reference dye 0.5μL

[0060] DNA polymerase 0.25 μL

[0061] Template 1 μL

[0062] Deionized water 9.625μL

[0063] Total 25μL

[0064] Five standard concentrations were involved in the reaction, and each standard concentration was repeated twice.

[0065] 2) Optimized reaction system 2:

[0066] 10×PCR Buffer 2.5μL

[0067] 2.5mM dNTPs 2μL

[0068] 100mM MgSO 4 0.25 μL ...

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Abstract

Disclosed are a fluorescence quantitative PCR reaction solution, kit, fluorescence quantitative PCR method and method for quantifying nucleic acid. The fluorescence quantitative PCR reaction solution comprises a PCR reaction enhancer selected from at least one of dimethyl sulfoxide, glycerine, bovine serum albumin, formamide, non-ionic detergent, polyethylene glycol, spermidine, ammonium sulfate and betaine.

Description

technical field [0001] The invention belongs to the field of molecular biology technology and experimental methods, in particular to a fluorescent quantitative PCR reaction solution and a fluorescent quantitative PCR method, in particular to a quantitative PCR reaction solution and method for long nucleotide fragments. Background technique [0002] Fluorescent quantitative PCR (Real-time quantitative PCR, also known as quantitative PCR, referred to as QPCR) technology refers to adding fluorescent groups to the PCR reaction system, using the accumulation of fluorescent signals to monitor the entire PCR process in real time, and finally using the standard curve to analyze the unknown template. methods for quantitative analysis. [0003] Fluorescent quantitative PCR can be divided into probe method and dye method according to different chemical principles. Among them, the Taqman fluorescence quantitative technology is based on the Taqman fluorescent probe. Taqman fluorescent ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C12N15/10
CPCC12Q1/686C12Q1/6851
Inventor 张庆辉陈敏峰黄业博陈城超孙勇张秀清杨焕明
Owner BGI TECH SOLUTIONS
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