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Exploring Valid Reference Genes for Quantitative Real-Time PCR Analysis in Sesamia inferens (Lepidoptera: Noctuidae)

机译:探索有效参考基因以进行实时定量PCR分析的芝麻(鳞翅目:夜蛾科)

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摘要

The pink stem borer, Sesamia inferens, which is endemic in China and other parts of Asia, is a major pest of rice and causes significant yield loss in this host plant. Very few studies have addressed gene expression in S. inferens. Quantitative real-time PCR (qRT-PCR) is currently the most accurate and sensitive method for gene expression analysis. In qRT-PCR, data are normalized using reference genes, which help control for internal differences and reduce error between samples. In this study, seven candidate reference genes, 18S ribosomal RNA (18S rRNA), elongation factor 1 (EF1), glyceraldehyde-3-phosphate dehydrogenase (GAPDH), ribosomal protein S13 (RPS13), ribosomal protein S20 (RPS20), tubulin (TUB), and β-actin (ACTB) were evaluated for their suitability in normalizing gene expression under different experimental conditions. The results indicated that three genes (RPS13, RPS20, and EF1) were optimal for normalizing gene expression in different insect tissues (head, epidermis, fat body, foregut, midgut, hindgut, Malpighian tubules, haemocytes, and salivary glands). 18S rRNA, EF1, and GAPDH were best for normalizing expression with respect to developmental stages and sex (egg masses; first, second, third, fourth, fifth, and sixth instar larvae; male and female pupae; and one-day-old male and female adults). 18S rRNA, RPS20, and TUB were optimal for fifth instars exposed to different temperatures (−8, −6, −4, −2, 0, and 27°C). To validate this recommendation, the expression profile of a target gene heat shock protein 83 gene (hsp83) was investigated, and results showed the selection was necessary and effective. In conclusion, this study describes reference gene sets that can be used to accurately measure gene expression in S. inferens.
机译:桃红色stem虫(Sesamia inferens)在中国和亚洲其他地区流行,是稻米的主要害虫,在该寄主植物中造成明显的单产下降。很少有研究针对地狱链球菌中的基因表达。实时定量PCR(qRT-PCR)是目前用于基因表达分析的最准确,最灵敏的方法。在qRT-PCR中,使用参考基因​​对数据进行标准化,这有助于控制内部差异并减少样品之间的误差。在这项研究中,七个候选参考基因,18S核糖体RNA(18S rRNA),延伸因子1(EF1),甘油三磷酸脱氢酶(GAPDH),核糖体蛋白S13(RPS13),核糖体蛋白S20(RPS20),微管蛋白(在不同的实验条件下,评估了TUB和β-actin(ACTB)在标准化基因表达方面的适用性。结果表明,三个基因(RPS13,RPS20和EF1)最适合在不同昆虫组织(头部,表皮,脂肪体,前肠,中肠,后肠,马尔皮基小管,血细胞和唾液腺)中标准化基因表达。 18S rRNA,EF1和GAPDH最适合标准化发育阶段和性别的表达(蛋重;第一,第二,第三,第四,第五和第六龄幼虫;雄性和雌性up;以及一天大的雄性和女性成年人)。 18S rRNA, RPS20 TUB 最适合暴露于不同温度(−8,−6,−4,−2、0和27°C)的五龄幼虫。 。为了验证该建议,研究了靶基因热休克蛋白83基因( hsp83 )的表达谱,结果表明该选择是必要和有效的。总之,本研究描述了可用于准确测量 S中基因表达的参考基因集。推断

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