用于白及不同生长时期不同组织实时荧光定量PCR检测的内参基因

By using BsGAPDH and BsEIF as internal reference genes in different growth stages and tissues of Bletilla striata, specific amplification primers were designed to solve the accuracy problem of quantitative PCR detection of Bletilla striata, achieving stability and accuracy in gene expression analysis and supporting the study of pharmacodynamic components metabolism.

CN121852608BActive Publication Date: 2026-07-17YUNNAN AGRICULTURAL UNIVERSITY +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
YUNNAN AGRICULTURAL UNIVERSITY
Filing Date
2026-03-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The lack of stable internal reference genes applicable to different tissues and growth stages of Bletilla striata in existing technologies leads to insufficient accuracy and reliability of quantitative real-time PCR detection, affecting research on the metabolic patterns and quality formation mechanisms of pharmacodynamic components.

Method used

Using BsGAPDH and BsEIF as internal reference genes, specific amplification primers were designed for real-time quantitative PCR detection of Bletilla striata at different growth stages and/or in different tissues. Corresponding kits and detection methods are provided to ensure the stability and accuracy of gene expression analysis.

Benefits of technology

This improved the stability and accuracy of gene expression analysis in different tissues at different growth stages of Bletilla striata, providing reliable data support for the study of pharmacodynamic components metabolism and ensuring the reliability and consistency of the test results.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了用于白及不同生长时期不同组织实时荧光定量PCR检测的内参基因,属于植物分子生物学技术领域,所述内参基因为BsGAPDH和BsEIF,BsGAPDH的核苷酸序列如SEQ ID NO.1所述,BsEIF的核苷酸序列如SEQ ID NO.2所示,本发明以白及7个生长时期的3个不同组织为实验材料,通过荧光定量PCR分析,利用多种技术进行基因表达稳定性分析,获得表达稳定的内参基因BsGAPDH和BsEIF,两个基因在白及不同生长时期不同组织表达稳定,可以作为研究白及不同生长时期不同组织中基因表达的内参基因,可为白及中药效成分积累相关基因的功能研究奠定基础,具有较好的实用价值和科研应用价值。
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