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New primer combinations with comparable melting temperatures detecting highest numbers of nosZ sequences from sequence databases

机译:新的引物组合具有可比的解链温度,可从序列数据库中检测出最多数量的nosZ序列

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We explored existing primer sequences targeting nitrous oxide reductase (nosZ) gene in order to explore their capability to recognize variant nosZ sequences. Published nosZ sequences longer than 380 AA residues were obtained from Functional-Gene Database /Repository (http://flyingcloud.cme.msu.edu/ fungene/) and used for explorations with PrimerChart program. The numbers of sequences recovered using all possible forward and reverse primer combinations were determined and the stringency of primer siterecognition was further varied by allowing 1, 2, or 3 primer mismatches to DNA binding site. We identified novel primer combinations resulting in satisfactory amplicon length (> 500 bp) and increased sequence recognition capabilities at comparable forward and reverse primer melting temperatures. Overall, this study indicates that current state of the art molecular methods can be and should frequently be further refined by the use of targeted bioinformatic approaches.
机译:我们探索了针对一氧化二氮还原酶(nosZ)基因的现有引物序列,以探索其识别变异nosZ序列的能力。从功能基因数据库/存储库(http://flyingcloud.cme.msu.edu/fungene/)获得了超过380个AA残基的已发布nosZ序列,并用于PrimerChart程序的探索。确定使用所有可能的正向和反向引物组合回收的序列数,并通过允许1、2或3个引物错配至DNA结合位点来进一步改变引物位点识别的严格性。我们鉴定了新颖的引物组合,可在令人满意的正向和反向引物解链温度下产生令人满意的扩增子长度(> 500 bp)并提高了序列识别能力。总体而言,这项研究表明,可以通过使用靶向生物信息学方法来进一步完善当前的分子方法。

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