Gossypium barbadense transmembrane protein gene, primers, and application of Gossypium barbadense transmembrane protein gene
A transmembrane protein, island technology, applied in the application, genetic engineering, plant genetic improvement and other directions, can solve the problem of fewer family members, and achieve the effect of improving disease resistance and improving disease resistance traits
Active Publication Date: 2017-10-17
JIANGSU ACADEMY OF AGRICULTURAL SCIENCES
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However, there are few reports on the functions of family members, indicating that the research on it is still in i
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Abstract
The invention discloses Gossypium barbadense transmembrane protein gene, primers, and application of the Gossypium barbadense transmembrane protein gene; the gene is composed of 2315 bases; a transcription start point is started from the base 1 of 5' end, and a transcription end point resides at the base 2289; the gene is a brand-new gene capable of imparting verticillium wilt resistance to plants, disease-resistant gene resources can be enriched, and a new effective tool is provided for breeding of anti-verticillium wilt species of cotton; one pair of molecular markers provided herein are interlinked to the transmembrane protein gene GbTMEM214; by using the molecular markers, it is possible to increase the efficiency and speed of transfer of Gossypium barbadense GbTMEM214 gene to upland cotton, and to quicken the anti-disease breeding process of cotton.
Description
technical field [0001] The invention belongs to the field of biotechnology, and in particular relates to a sea-island cotton transmembrane protein gene, a primer and an application thereof. Background technique [0002] Cotton is one of the important economic crops, and cotton fiber is the main raw material of textile industry. With the reduction of arable land and the deterioration of the environment, cotton production is affected by a variety of biological and abiotic factors, especially the frequent occurrence of Fusarium wilt and Verticillium wilt has caused great losses to my country's cotton production. It is difficult to meet the needs of modern agriculture through traditional breeding methods, so improving existing varieties through genetic engineering will be the main method of breeding in the future. Previous studies have shown that the resistance mechanism of cotton Verticillium wilt involves a variety of signaling pathways and substances. The obtained research ...
Claims
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IPC IPC(8): C12N15/29C07K14/415C12N15/11C12N15/82A01H5/00
CPCC07K14/415C12N15/8282
Inventor 赵君肖松华刘剑光徐剑文
Owner JIANGSU ACADEMY OF AGRICULTURAL SCIENCES
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