农杆菌素DNA克隆目的基因放大的主要设计技术

Riski Indradewi
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Hasil penelitian yang telah diperoleh berupa poduk PCR berukuran 870 bp dan hasil konfirmasi menggunakan enzim SalI menghasilkan dua pita yaitu berukuran 359 bp dan 510 bp. Berdasarkan hasil yang diperoleh dapat disimpulkan bahwa teknik desain primer tujuan amplifikasi gen untuk kloning dapat dilakukan yaitu dengan kombinasi antara software dan melakukan penyisipan situs restriksi secara manual. \nThis study aims to produce a primer design technique for amplification of the gene encoding enzyme towards the cloning of gene from Agrobacterium tumefaciens. The genes information were collected from literatures study to decide the target gene and primer design. Methods: Firstly, we used genome sequences of the Agrobacterium tumefasien which is available on the gene bank (NCBI) to design a pears of primers, using Genemics expression, for amplifying the gene target. We also added restriction sites into the primers sequence. 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引用次数: 0

摘要

该研究旨在产生一种初级设计技术,将酶编导基因放大,目的是克隆农杆菌杆菌基因组DNA。从本研究收集信息的方法是通过直接观察和对库进行研究来得出结论。研究过程从收集基因银行(NCBI)的农业细菌基因组序列图美糖开始,主要设计是使用Genamics expression和添加限制站点。通过过去PCR软件和基因增强增强与多酶链反应技术确认的底本。经放大的产品证实使用了酶限制剂。研究发现,poduk PCR的大小为870 bp,并确认使用SalI酶生产两种磁带,大小为359 bp和510 bp。根据所取得的结果,可以推断出克隆的原始设计目的是通过软件和人工限制站点的插入来实现。这些研究表明,生产一种初级设计技术,用于基因编码的酶,使基因从农杆菌中克隆出来。从识字研究中收集的根信息将决定基因和原始设计的目标。第一种方法:首先,我们将利用基因银行(NCBI)设计一种可以用来减轻其目标的农业杆菌序列。我们还附加了限制条款。当时,primers的具体设计是通过PCR在硅谷使用的基因序列as模板进行评估,并通过poly锁反射技术技术验证,使用从农化杆菌中分离出来的tumefals模板。基因的targent gene通过限制酶SalI得到证实。建议:从快速PCR扩频到silico,我们得到了一个870 bp的单身乐队,这意味着主要的设计是针对gene的目标。PCR产品对这些事件研究的结果呈相同大小,被压缩于SalI限制酶,还原出两个片段,其长度为359 bp和510 bp bp的长度。结论:吉尼斯的放大版是针对基因的目标,primers是成功设计的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Teknik Desain Primer untuk Amplifikasi Gen Tujuan Kloning dari DNA Agrobacterium tumefaciens
Penelitian ini bertujuan untuk menghasilkan teknik desain primer untuk amplifikasi gen penyandi enzim dengan tujuan kloning dari DNA genom Agrobacterium tumefaciens. Metode pengumpulan informasi dari penelitian ini dilakukan dengan cara observasi langsung dan melakukan studi pustaka untuk menarik kesimpulan. Prosedur penelitian dimulai dari mengoleksi sekuen DNA genom Agrobacterium tumefasien dari gene bank (NCBI), desain primer menggunakan Genamics expression dan penambahan situs restriksi. Primer yang telah diperoleh dikonfirmasi melalui perangkat lunak past PCR dan amplifikasi gen dengan teknik polymerase chain reaction. Produk hasil amplifikasi dikonfirmasi menggunakan enzim restriksi SalI. Hasil penelitian yang telah diperoleh berupa poduk PCR berukuran 870 bp dan hasil konfirmasi menggunakan enzim SalI menghasilkan dua pita yaitu berukuran 359 bp dan 510 bp. Berdasarkan hasil yang diperoleh dapat disimpulkan bahwa teknik desain primer tujuan amplifikasi gen untuk kloning dapat dilakukan yaitu dengan kombinasi antara software dan melakukan penyisipan situs restriksi secara manual. This study aims to produce a primer design technique for amplification of the gene encoding enzyme towards the cloning of gene from Agrobacterium tumefaciens. The genes information were collected from literatures study to decide the target gene and primer design. Methods: Firstly, we used genome sequences of the Agrobacterium tumefasien which is available on the gene bank (NCBI) to design a pears of primers, using Genemics expression, for amplifying the gene target. We also added restriction sites into the primers sequence. The specifity of primers designed then were evaluated by past PCR in silico software using the genome sequences as template and were confirmed by polymerase chain reaction amplification technique using the genome isolated from Agrobacterium tumefaciens as template. The targent gene was confirmed using the restriction enzyme SalI. Results: From Fast PCR amplification in silico, we obtained a single band with size of 870 bp, means that the primer designed were specific to the target gene. The PCR product has the same size with those of insilico study, and was digested with the SalI restriction enzyme, resulting two fragments with length of 359 bp and 510 bp, respectivelly. Conclusion: the amplificated genes was the target gene and the primers were successful designed.
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