Method for identification of Camellia oleifera with high oil content

A technology for oil content and Camellia oleifera, which is applied in biochemical equipment and methods, microbial determination/inspection, DNA/RNA fragments, etc. Convenient and fast, save production costs, and improve the effect of selection efficiency

Active Publication Date: 2020-06-09
RES INST OF SUBTROPICAL FORESTRY CHINESE ACAD OF FORESTRY
View PDF3 Cites 0 Cited by
  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, these techniques all show certain drawbacks, and the obtained polymorphic marker loci are difficult to be used in Camellia oleifera assisted breeding
The main disadvantages include: 1. These markers are dominant markers, which cannot accurately reflect the genotype of the polymorphic site; 2. These marker techniques have high requirements for experimental operators and the environment, and the experimental results are unstable; 3. These markers The marker technology is to analyze the entire genome sequence, the workload is heavy, the polymorphic loci cannot be precisely located, and it is also difficult to screen the markers closely linked to the target trait; 4. The traditional quantitative trait loci (quantitative trait loci, QTL) mapping requires a genetically related mapping population, and the long-term biological characteristics of camellia oleifera make it time-consuming and difficult to create a large-scale hybrid mapping population of Camellia oleifera, which requires a large area of ​​forest land

Method used

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
View more

Image

Smart Image Click on the blue labels to locate them in the text.
Viewing Examples
Smart Image
  • Method for identification of Camellia oleifera with high oil content
  • Method for identification of Camellia oleifera with high oil content
  • Method for identification of Camellia oleifera with high oil content

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] Example 1 Construction and Character Determination of Camellia oleifera Seed Oil Content Segregation Population

[0044] In this example, common Camellia oleifera resources are used to collect natural populations of 500 germplasm resources in the nursery, and their origins cover most of the main Camellia oleifera producing areas in my country, including Zhejiang Province, Hunan Province, Jiangxi Province, Guangxi District, Fujian Province, and Guangdong Province. Province etc. After the fruit of 500 individuals is fully mature (5% of the fruit is cracked), the seeds are collected, and the oil content of the seeds is determined by Soxhlet extraction. The operation steps are as follows:

[0045] (1) Prepare a medium-speed filter paper bag, put it in an aluminum box, bake at 105°C to constant mass, and record the quality of the aluminum box and filter paper bag (W 1 ).

[0046] (2) Peel off the hard seed coat of an appropriate amount of Camellia oleifera seeds, bake at 1...

Embodiment 2

[0050] Embodiment 2 Cofad2-2 gene fragment amplification

[0051] 1. Total DNA extraction from leaves:

[0052] Use the TaKaRa MiniBEST Plant Genomic DNA Extraction Kit to extract the total DNA of leaves by using the cracking system of plant materials rich in polysaccharides, polyphenols and oils. The specific steps are as follows:

[0053] (1) First add 500 μl of Buffer HSⅡ into a 1.5ml centrifuge tube. Take 0.1g of fresh leaves and add liquid nitrogen to fully grind, quickly add the ground leaf powder into a centrifuge tube and mix well, then add 10μl of RNaseA (10mg / ml), shake and mix well, and incubate in a water bath at 56°C for 10 minutes ;

[0054] (2) Add 62.5 μl of Buffer KAC and mix well. Place on ice for 5 minutes and centrifuge at 12000 rpm for 5 minutes. Take the supernatant, add the same volume of Buffer GB as the supernatant, and mix well.

[0055] (3) Place the Spin Column on the collection tube, move the solution to the Spin Column (the solution is too mu...

Embodiment 3

[0079]Example 3 Screening of SNP sites related to oil content of camellia oleifera seeds

[0080] Population structure analysis and linkage disequilibrium analysis, the steps are as follows:

[0081] (1) Import the SNPs data of all samples into the Structure2.3.4 software, set K=2~9, run 5 times for each K value, burnin 5000 times, and repeat 50000 times. When both LnP(D) and α values ​​remain stable, and α Figure 4 ), K=4 in the present invention, and K (4) subgroup effect values ​​of each sample are determined (Table 1).

[0082] Table 1 The four subgroup effect values ​​of some individuals in the natural population

[0083]

[0084]

[0085]

[0086]

[0087] (2) Import the SNPs site data, K subgroup effect value data, phenotype data (see Example 1) and Kinship matrix data of all samples into the TASSEL5.0 software, and use the MLM method to analyze the relationship between SNPs and oil content traits Linkage disequilibrium, screening molecular markers signifi...

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
Login to View More

PUM

No PUM Login to View More

Abstract

The invention provides a method for identifying oil camellia with high oil content. According to the method, firstly, an SNP (single nucleotide polymorphism) molecular marker related with oil content of seeds of oil camellia is screened out and obtained through primer amplification of a nucleotide sequence shown in SEQ ID NO.1-2, an amplification product contains a site located at 778bp of an open reading frame of a Cofad2-2 gene, and the polymorphism of the site is C / A. The molecular marker is used for detecting the oil camellia, and if the genotype of the site is C / C, the to-be-identified oil camellia is regarded as the oil camellia whose seeds have high oil content or candidate oil camellia with high oil content; if the genotype of the site is C / A, the to-be-identified oil camellia is regarded as oil camellia with low oil content or candidate oil camellia with low oil content. The method can be used for detecting the oil content of the seeds of the oil camellia at the seedling stage, and the breeding selection efficiency of the oil camellia with high oil content is greatly improved.

Description

technical field [0001] The invention relates to the field of biotechnology, belongs to the technical field of Camellia oleifera molecular biology and genetic breeding, and specifically relates to a polymorphic site molecular marker for screening the oil content of Camellia oleifera seeds, and also relates to the use of the molecular marker in the breeding of Camellia oleifera seeds with high oil content Applications. Background technique [0002] Camellia oleifera (Camellia oleifera Abel.), belonging to the family Theaceae (Theaceae) Camellia L., is a unique woody oil tree species in my country and an important woody edible oil species in southern China. Camellia oleifera seed oil has high nutritional and health value, and its quality can be compared with olive oil. It is a kind of high-quality edible oil, and its unsaturated fatty acid content reaches more than 90%. 8%), and has anti-tumor, hypolipidemic and other effects. In the past ten years, under the guidance and sup...

Claims

the structure of the environmentally friendly knitted fabric provided by the present invention; figure 2 Flow chart of the yarn wrapping machine for environmentally friendly knitted fabrics and storage devices; image 3 Is the parameter map of the yarn covering machine
Login to View More

Application Information

Patent Timeline
no application Login to View More
Patent Type & AuthorityPatents(China)
IPC IPC(8): C12Q1/6895C12N15/11
CPCC12Q1/6895C12Q2600/13C12Q2600/156
Inventor林萍曹永庆王开良姚小华
OwnerRES INST OF SUBTROPICAL FORESTRY CHINESE ACAD OF FORESTRY