Preparation method of cotton grairga transcription factor specific recognition antibody
A technology for the preparation of transcription factors and antibodies, which is applied in the fields of bioinformatics and molecular genetics, can solve the problems of few successful applications of transcription factor antibodies, difficulties in antibodies, slow work progress, etc., and achieve the effect of authenticity and reliability of antibodies
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Embodiment 1
[0026] Embodiment 1: Obtaining of protein sequence of cotton GraiRGA transcription factor
[0027] Different transcription factors have certain conserved structures. According to the conservation of RGA transcription factors in plants, the RGA gene (XM_018628495.1) from radish was used to search the cotton genome by BLAST homology, and a highly homologous gene from Raymond cotton was obtained. The source gene sequence obtained the full-length nucleotide sequence of the gene, thereby obtaining the gene sequence and protein sequence of the cotton GraiRGA transcription factor.
[0028] The present invention uses the BLAST sequence alignment method to obtain the corresponding sequence information of the cotton GraiRGA protein according to the certain conservation of RGA transcription factors in plants.
[0029] It should be noted that the BLAST sequence alignment method used here is a prior art, and it is not a technical solution protected by the present invention, so the specific...
Embodiment 2
[0030] Example 2: Design and preparation of antigens
[0031] According to the obtained amino acid sequence of cotton GraiRGA protein, its protein structure was analyzed by bioinformatics software. Firstly, the transmembrane region was analyzed by using TMHMM software to exclude the sequence of the transmembrane region; Select the segment with a higher score as the antigen candidate region; combined with protein property analysis, analyze the parameters of the candidate antigen such as hydrophilicity, antigenicity, flexibility, and surface exposure, and select the antigen with good solubility and antigenicity, flexibility, and exposure. It is more ideal to combine the helical folding structure to finally determine the 1-318 amino acid sequence of the high segment, as the final antigen sequence.
[0032] The prokaryotic expression vector is constructed according to the determined antigen sequence, and the prokaryotic expression is carried out, and the corresponding antigenic pr...
Embodiment 3
[0033] Example 3: Preparation and evaluation of antibodies
[0034] (1) Immunize animals with the antigenic protein obtained above to prepare antiserum.
[0035] To immunize 2 New Zealand white rabbits, blood should be pre-collected first, and then complete Freund’s adjuvant + antigen on day 0, 600-800ug / rabbit for initial immunization, and incomplete Freund’s adjuvant + antigen on day 21, 400-500ug / monkey, for the first booster immunization, on the 35th day with incomplete Freund's adjuvant + antigen, 400-500ug / bird, for the second booster immunization, and serum testing on the 42nd day, the required The ELISA titer of the antiserum is 1:20000. If the titer meets the requirements, collect whole blood on the 49th day and separate the antiserum. If it does not meet the requirements, use incomplete Freund’s adjuvant + antigen on the 49th day, 200ug / bird, the third booster immunization was carried out, and the serum test was carried out on the 56th day. If the titer reached th...
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