2 resultados para Clone

em Bioline International


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Background: Wheat 1BL/1RS translocation lines are planted around the world for their disease resistance and high yield. Most of them are poor in bread making, which is partially caused by Ï-secalins that are encoded by the Ï-secalin gene family, which is located on the short arm of rye chromosome 1R (1RS). However, information on the structure and evolution of the Ï-secalin gene family is still limited. Results: We first generated a physicalmap of the Ï-secalin gene family covering 195 kb of the Sec-1 locus based on sequencing three bacterial artificial chromosome (BAC) clones of the 1BL/1RS translocation wheat cultivar Shimai 15. A BAC contig was constructed spanning 168 kb of the Sec-1 locus on 1RS. Twelve Ï-secalin genes were arranged in a head-to-tail fashion, separated by 8.2â21.6 kb spacers on the contig, whereas six other Ï-secalin genes were arranged head-to-tail, separated by 8.2â8.4 kb of spacers on clone BAC125. The 18 Ï-secalin genes can be classified into six types among which eight Ï-secalin genes were expressed during seed development. The Ï-secalin genes with the 1074-bp open reading frame (ORF) represented the main population. Except for two pseudogenes, the N-terminal of the Ï-secalin gene was conserved, whereas variations in the C-terminal led to a change in ORF length. The spacers can be sorted into two classes. Class-1 spacers contained conserved and non-conservative sequences. Conclusion: The Ï-secalin gene family consisted of at least 18 members in the 1BL/1RS translocation line cv. Shimai 15. Eight Ï-secalin genes were expressed during seed development. Eighteen members may originate from a progenitor with a 1,074-bp ORF. The spacers differed in length and sequence conservation.

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Purpose: To investigate the expression of Myt272-3 recombinant protein and also to predict a possible protein vaccine candidate against Mycobacterium tuberculosis . Methods: Myt272-3 protein was expressed in pET30a+-Myt272-3 clone. The purity of the protein was determined using Dynabeads® His-Tag Isolation & Pulldown. Protein sequence was analysed in silico using bioinformatics software for the prediction of allergenicity, antigenicity, MHC-I and MHC-II binding, and B-cell epitope binding. Results: The candidate protein was a non-allergen with 15.19 % positive predictive value. It was also predicted to be antigenic, with binding affinity to MHC-I and MHC-II, as well as B-cell epitope binding. Conclusion: The predicted results obtained in this study provide a guide for practical design of a new tuberculosis vaccine.