College of Grassland Agriculture, Northwest A&F University, Yangling, 712100, Shaanxi Province, PR China.
College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, Shaanxi Province, PR China.
BMC Plant Biol. 2024 May 11;24(1):389. doi: 10.1186/s12870-024-04924-w.
Kobreisa littledalei, belonging to the Cyperaceae family is the first Kobresia species with a reference genome and the most dominant species in Qinghai-Tibet Plateau alpine meadows. It has several resistance genes which could be used to breed improved crop varieties. Reverse Transcription Quantitative Real-Time Polymerase Chain Reaction (RT-qPCR) is a popular and accurate gene expression analysis method. Its reliability depends on the expression levels of reference genes, which vary by species, tissues and environments. However, K.littledalei lacks a stable and normalized reference gene for RT-qPCR analysis.
The stability of 13 potential reference genes was tested and the stable reference genes were selected for RT-qPCR normalization for the expression analysis in the different tissues of K. littledalei under two abiotic stresses (salt and drought) and two hormonal treatments (abscisic acid (ABA) and gibberellin (GA)). Five algorithms were used to assess the stability of putative reference genes. The results showed a variation amongst the methods, and the same reference genes showed tissue expression differences under the same conditions. The stability of combining two reference genes was better than a single one. The expression levels of ACTIN were stable in leaves and stems under normal conditions, in leaves under drought stress and in roots under ABA treatment. The expression of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) expression was stable in the roots under the control conditions and salt stress and in stems exposed to drought stress. Expression levels of superoxide dismutase (SOD) were stable in stems of ABA-treated plants and in the roots under drought stress. Moreover, RPL6 expression was stable in the leaves and stems under salt stress and in the stems of the GA-treated plants. EF1-alpha expression was stable in leaves under ABA and GA treatments. The expression levels of 28 S were stable in the roots under GA treatment. In general, ACTIN and GAPDH could be employed as housekeeping genes for K. littledalei under different treatments.
This study identified the best RT-qPCR reference genes for different K. littledalei tissues under five experimental conditions. ACTIN and GAPDH genes can be employed as the ideal housekeeping genes for expression analysis under different conditions. This is the first study to investigate the stable reference genes for normalized gene expression analysis of K. littledalei under different conditions. The results could aid molecular biology and gene function research on Kobresia and other related species.
Kobreisa littledalei 属于莎草科,是第一个具有参考基因组的 Kobresia 物种,也是青藏高原高寒草甸中最占优势的物种。它有几个抗性基因,可以用来培育改良的作物品种。逆转录定量实时聚合酶链反应(RT-qPCR)是一种流行且准确的基因表达分析方法。其可靠性取决于参考基因的表达水平,而参考基因的表达水平因物种、组织和环境而异。然而,K.littledalei 缺乏用于 RT-qPCR 分析的稳定和标准化参考基因。
测试了 13 个潜在参考基因的稳定性,并选择了稳定的参考基因,用于在两种非生物胁迫(盐和干旱)和两种激素处理(脱落酸(ABA)和赤霉素(GA))下对 K. littledalei 的不同组织进行 RT-qPCR 归一化表达分析。使用了五种算法来评估候选参考基因的稳定性。结果表明,方法之间存在差异,并且相同的参考基因在相同条件下显示出组织表达差异。两个参考基因的组合稳定性优于单个参考基因。在正常条件下,ACTIN 在叶片和茎中稳定表达,在干旱胁迫下在叶片中表达,在 ABA 处理下在根中表达。GAPDH 在对照条件和盐胁迫下在根中稳定表达,在干旱胁迫下在茎中表达。SOD 的表达水平在 ABA 处理的植物茎中和干旱胁迫下的根中稳定。此外,RPL6 在盐胁迫下的叶片和茎中稳定表达,在 GA 处理的植物茎中表达。EF1-α在 ABA 和 GA 处理下在叶片中稳定表达。28S 在 GA 处理下的根中稳定表达。一般来说,在不同处理下,ACTIN 和 GAPDH 可以作为 K. littledalei 不同组织的管家基因。
本研究鉴定了 K. littledalei 在五种实验条件下不同组织的最佳 RT-qPCR 参考基因。ACTIN 和 GAPDH 基因可以作为不同条件下表达分析的理想管家基因。这是首次研究 K. littledalei 在不同条件下标准化基因表达分析的稳定参考基因。结果可以帮助 Kobresia 和其他相关物种的分子生物学和基因功能研究。