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Cloning and Application of a Predominantly Expressed Promoter in Peanut Seeds

A promoter and seed technology, applied in the fields of plant transgenic and molecular genetics, can solve the problems affecting the normal development of plants and energy waste

Inactive Publication Date: 2018-04-13
BIOTECH RES CENT SHANDONG ACADEMY OF AGRI SCI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, the overexpression of many genes with specific spatiotemporal expression often leads to energy waste, and the constitutive high expression of some exogenous genes also affects the normal development of plants.

Method used

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  • Cloning and Application of a Predominantly Expressed Promoter in Peanut Seeds
  • Cloning and Application of a Predominantly Expressed Promoter in Peanut Seeds
  • Cloning and Application of a Predominantly Expressed Promoter in Peanut Seeds

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Experimental program
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Effect test

Embodiment 1

[0023] Example 1 Cloning of Peanut AhLEC1B Gene Promoter

[0024] 1.1 Extraction of peanut genomic DNA

[0025] Use the method provided by the plant DNA extraction kit (product of Beijing Tiangen Biochemical Technology Co., Ltd.) to extract the DNA of young peanut leaves, and dissolve it in an appropriate amount of TE (pH8.0) buffer;

[0026] 1.2 Cloning of peanut AhLEC1B gene promoter

[0027] 2.5 μg of peanut genomic DNA was digested with DraI, EcoRV, PvuII, and StuI endonucleases, extracted and purified with phenol, and dissolved in 20 μl of TE (pH 7.5) buffer. Take 4 μl of digested complete DNA, connect to Adaptor according to the requirements of BD GenomeWalker Universal Kit (sequence: 5'GTAATACGACTCACTATAGGGCACGCGTGGTCGACGGCCCGGGCTGGT 3', as shown in Seq ID No:5), and construct 4 peanut genomic DNA libraries (LD, LE, LP , LS). According to the obtained genome sequence of the peanut AhLEC1B gene, two nested 3' end-specific primers LEC1BGSP2-1 (5'CCTTGTTCCCATGTAAAACCATG...

Embodiment 2

[0041] Construction and Transformation of Embodiment 2 Plant Expression Vector

[0042] 2.1 Fusion of peanut AhLEC1B gene promoter sequence and GUS reporter gene

[0043]Select pCAMBIA3301 as the plant expression vector, digest the cloning vector with the target fragment correctly sequenced, and recover the target fragment by electrophoresis and gel. At the same time, the expression vector was digested with restriction endonucleases HindⅢ and NcoI, and the vector fragment was recovered. The promoter fragment and the vector fragment were connected, and pCAMBIA3301-AhLEC1B promoter recombinant vectors containing promoters of different lengths were screened by plasmid restriction map identification. The specific process can refer to Figure 4 Shown:

[0044] 1. Use primers F1 and R1 and R2 with restriction sites to amplify the promoter segments of different lengths of the AhLEC1B gene, separate and recover the target fragments by gel electrophoresis, clone them into the pEASY-...

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Abstract

The present invention belongs to the field of biotechnology. The promoters of two peanut AhLEC1B genes are cloned from peanuts, the nucleotide sequences of which are shown in Seq ID No: 1 or Seq ID No: 2. The above two promoters are organized by GUS Chemical staining confirmed that the driver gene is mainly expressed in seeds, and the expression level in plant roots, stems, leaves, and flower organs is extremely low. Based on the above-mentioned functions of the promoter, the inventors constructed the GUS reporter gene driven by the promoter. The plant expression vector was transformed into Arabidopsis thaliana, which proved that the promoter can be used in the research of seed development and storage material accumulation and genetic improvement of genetic engineering.

Description

technical field [0001] The invention relates to the field of molecular genetics, in particular to the field of plant transgenic technology, in particular to the cloning and application of a new promoter capable of predominantly expressing in peanut seeds. Background technique [0002] Seeds play an important role in agricultural production and national economy. Statistics show that 80% of human food is directly taken from the seeds of plants. Rice, wheat and other seeds are rich in starch, which is the staple food for human survival; soybeans, peanuts, rapeseed, sesame and other seeds have high oil content and are edible. main source of oil. The amount and composition of stored substances in seeds directly affect the yield and quality of crops. Therefore, the root of improving the yield and quality of food crops and oil crops is to increase and improve the accumulation and composition of storage substances in their seeds. Although the excellent crop varieties cultivated b...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C12N15/11C12N15/82A01H5/10
Inventor 单雷唐桂英徐平丽柳展基
Owner BIOTECH RES CENT SHANDONG ACADEMY OF AGRI SCI
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