Method for identifying wheat leaf rust single sorus by utilizing nested PCR (polymerase chain reaction)

A single spore and wheat leaf technology, applied in the field of identification, can solve the problems that grass-roots plant protection institutions cannot be fully configured and affect the success rate, and achieve the effects of wide application, simple operation, and reduced labor time

Inactive Publication Date: 2012-07-18
HENAN UNIV OF SCI & TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Mechanical and physical wall breaking often requires certain equipment and technical conditions to achieve the purpose of wall breaking, such as ultrasonic crushers, etc., which cannot be fully equipped by grassroots plant protection institutions in my country at present
Chemical dissolution and wall breaking require the addition of chemical substances to dissolve the spore wall in the early stage. Most of the added substances are ethyl acetate, etc. After the wall breaking is completed, the DNA in it needs to be recovered and purified to remove chemical substances that may affect the next PCR reaction. , and the degree of completion of the removal will greatly affect the success rate of the next step

Method used

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  • Method for identifying wheat leaf rust single sorus by utilizing nested PCR (polymerase chain reaction)
  • Method for identifying wheat leaf rust single sorus by utilizing nested PCR (polymerase chain reaction)
  • Method for identifying wheat leaf rust single sorus by utilizing nested PCR (polymerase chain reaction)

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Embodiment Construction

[0046] A method utilizing Nest PCR to identify single spore piles of wheat leaf rust, the method steps are:

[0047] Step 1, preparation of single spore heap DNA template

[0048] 1) Single spore heap acquisition: take a clean and sterile petri dish, place three layers of filter paper on the bottom of the petri dish, add sterile deionized water to moisten the filter paper, place the petri dish containing the filter paper under a UV lamp, Disinfect for 20 minutes and set aside;

[0049] 2) Draw 5 μL of sterile deionized water with a 20 μL pipette gun, pump out the deionized water to form a water ball on the tip of the pipette gun, and then dip a single spore pile on the infected wheat leaves with the water ball, and place Inject sterile deionized water containing monospore piles into sterile 0.5mL PCR tube Ⅰ, put the opening of 0.5mL PCR tube Ⅰ into the petri dish in step 1), and set aside;

[0050] 3) Place the 0.5mL PCR tube I containing the single spore pile at 25°C for 24...

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Abstract

The invention relates to a method for identifying a wheat leaf rust single sorus by utilizing nested PCR (polymerase chain reaction). The method comprises the following steps: designing and synthesizing a primer, extracting DNA (deoxyribonucleic acid) of the single sorus, performing amplification and separation on target genes, performing separation and identification on an amplified final product, then performing sequencing, comparing in a Genbank and determining the wheat leaf rust single sorus. The method for identifying the wheat leaf rust single sorus by utilizing the nested PCR is simple to operate and rapid and accurate in identification result, and can be applied into actual production.

Description

technical field [0001] The invention relates to an identification method, in particular to a method for identifying single spore piles of wheat leaf rust by nest PCR. Background technique [0002] Wheat rust, commonly known as "jaundice", is a type of fungal disease caused by rust fungi. During the growth and development period, the damaged wheat mainly manifests on the leaves or stalks, and bright yellow or reddish brown powder blister-like lesions appear. When observed under a microscope, it can be seen that there are many single-cell uredospores in the lesions, which are called uredospore piles. They are produced by mycelium that invades the wheat plant. In the whole life cycle of wheat rust, in addition to producing uredospores, it also produces other types of spores, the most can produce 5 kinds of spores, but the uredospores still cause serious damage. The uredospores attack and spread very quickly, and it only takes 8 to 12 days from invading new plants to producin...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12Q1/68C12Q1/04C12R1/645
Inventor 侯军林晓民李艳梅张建祥蔡超
Owner HENAN UNIV OF SCI & TECH
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