Specific codominant molecular marker for brown planthopper resistant genes Bph15 of rice and application thereof
A technology of co-dominant markers and resistance to brown planthoppers, applied in the field of genetic engineering, can solve the problems of complex identification of insect resistance, low efficiency of insect-resistant gene transfer, and inability to identify individual plants, achieving the effect of clear location and easy detection
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Embodiment 1
[0053] Example 1 Development and verification of rice brown planthopper resistance gene Bph15 specific co-dominant molecular marker
[0054] 1. Development of a specific co-dominant molecular marker for rice brown planthopper resistance gene Bph15
[0055] Standard Nucleotide BLAST analysis was performed on the genome sequence of the fine-mapped segment where Bph15 was located in the NCBI database ( https: / / blast.ncbi.nlm.nih.gov / Blast.cgi? PROGRAM= blastn&PAGE_TYPE=BlastSearch&LINK_LOC=blasthome ), compare the genome sequence of the fine-mapping section where Bph15 is located with the genome sequence of other rice varieties, and list the specific insertion / deletion fragments in the genome sequence of the Bph15 fine-mapping section; further use the Primer 3 online software to design and develop 7 easy-to-detect codominant molecular markers ( http: / / primer3.ut.ee / ).
[0056] Using the CTAB method (Murray MG & Thompson, 1980 Rapid isolation of high-molecular-weight plant...
Embodiment 2
[0064] Example 2 Application of specific co-dominant molecular marker of rice brown planthopper resistance gene Bph15 in molecular marker-assisted selection breeding
[0065] In traditional brown planthopper resistance breeding, the parents of brown planthopper-resistant materials are selected for hybridization with cultivars. It is necessary to identify the traits of brown planthopper resistance in the hybrid offspring for selection, and in view of the special circumstances of the identification of brown planthopper resistance, it can only be reflected by the identification of offspring materials The resistance phenotype of the individual plants of the material of the previous generation to N. lugens. Therefore, traditional breeding for resistance to BPH is not only time-consuming, but also difficult and costly. However, the application of molecular markers linked to BPH-resistant genes can identify BPH-resistant single plants at the seedling stage and eliminate other plants,...
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