Modified “Allele-Specific qPCR” Method for SNP Genotyping Based on FRET

dc.contributor.authorRuslan Kalendar
dc.contributor.authorAkmaral Baidyussen
dc.contributor.authorDauren Serikbay
dc.contributor.authorLyudmila Zotova
dc.contributor.authorGulmira Khassanova
dc.contributor.authorMarzhan Kuzbakova
dc.contributor.authorSatyvaldy Jatayev
dc.contributor.authorYin‐Gang Hu
dc.contributor.authorCarly Schramm
dc.contributor.authorPeter Anderson
dc.contributor.authorColin L. D. Jenkins
dc.contributor.authorKathleen L. Soole
dc.contributor.authorYuri Shavrukov
dc.date.accessioned2025-08-22T10:14:31Z
dc.date.available2025-08-22T10:14:31Z
dc.date.issued2022-01-10
dc.description.abstractThe proposed method is a modified and improved version of the existing "Allele-specific q-PCR" (ASQ) method for genotyping of single nucleotide polymorphism (SNP) based on fluorescence resonance energy transfer (FRET). This method is similar to frequently used techniques like Amplifluor and Kompetitive allele specific PCR (KASP), as well as others employing common universal probes (UPs) for SNP analyses. In the proposed ASQ method, the fluorophores and quencher are located in separate complementary oligonucleotides. The ASQ method is based on the simultaneous presence in PCR of the following two components: an allele-specific mixture (allele-specific and common primers) and a template-independent detector mixture that contains two or more (up to four) universal probes (UP-1 to 4) and a single universal quencher oligonucleotide (Uni-Q). The SNP site is positioned preferably at a penultimate base in each allele-specific primer, which increases the reaction specificity and allele discrimination. The proposed ASQ method is advanced in providing a very clear and effective measurement of the fluorescence emitted, with very low signal background-noise, and simple procedures convenient for customized modifications and adjustments. Importantly, this ASQ method is estimated as two- to ten-fold cheaper than Amplifluor and KASP, and much cheaper than all those methods that rely on dual-labeled probes without universal components, like TaqMan and Molecular Beacons. Results for SNP genotyping in the barley genes HvSAP16 and HvSAP8, in which stress-associated proteins are controlled, are presented as proven and validated examples. This method is suitable for bi-allelic uniplex reactions but it can potentially be used for 3- or 4-allelic variants or different SNPs in a multiplex format in a range of applications including medical, forensic, or others involving SNP genotyping.en
dc.identifier.citationKalendar Ruslan, Baidyussen Akmaral, Serikbay Dauren, Zotova Lyudmila, Khassanova Gulmira, Kuzbakova Marzhan, Jatayev Satyvaldy, Hu Yin-Gang, Schramm Carly, Anderson Peter A., Jenkins Colin L. D., Soole Kathleen L., Shavrukov Yuri. (2022). Modified “Allele-Specific qPCR” Method for SNP Genotyping Based on FRET. Frontiers in Plant Science. https://doi.org/https://doi.org/10.3389/fpls.2021.747886en
dc.identifier.doi10.3389/fpls.2021.747886
dc.identifier.urihttps://doi.org/10.3389/fpls.2021.747886
dc.identifier.urihttps://nur.nu.edu.kz/handle/123456789/9882
dc.language.isoen
dc.publisherFrontiers Media SA
dc.relation.ispartofFrontiers in Plant Scienceen
dc.rightsOpen accessen
dc.sourceFrontiers in Plant Science, (2022)en
dc.subjectGenotypingen
dc.subjectSNP genotypingen
dc.subjectTaqManen
dc.subjectMolecular Inversion Probeen
dc.subjectAlleleen
dc.subjectOligonucleotideen
dc.subjectFörster resonance energy transferen
dc.subjectBiologyen
dc.subjectVariants of PCRen
dc.subjectGeneticsen
dc.subjectSingle-nucleotide polymorphismen
dc.subjectPrimer (cosmetics)en
dc.subjectGenotypeen
dc.subjectSNPen
dc.subjectMolecular beaconen
dc.subjectMolecular biologyen
dc.subjectPolymerase chain reactionen
dc.subjectComputational biologyen
dc.subjectGeneen
dc.subjectFluorescenceen
dc.subjectChemistryen
dc.subjectPhysicsen
dc.subjectOrganic chemistryen
dc.subjectQuantum mechanicsen
dc.subjecttype of access: open accessen
dc.titleModified “Allele-Specific qPCR” Method for SNP Genotyping Based on FRETen
dc.typearticleen

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