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在发育激素拮抗剂对胚胎后发育影响的节律性基因表达研究中,鉴定用于标准化RT-qPCR数据的特定内参基因。

Identification of specific reference gene for normalization of RT-qPCR data in rhythmic gene expression studies of the effect of developmental hormone antagonist in postembryonic development in .

作者信息

Dalai Minurani, Jagota Anita

机构信息

Neurobiology and Molecular Chronobiology Laboratory, Department of Animal Biology, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, India.

出版信息

Front Insect Sci. 2024 Jun 28;4:1362473. doi: 10.3389/finsc.2024.1362473. eCollection 2024.

Abstract

is a lepidopteran holometabolous insect with distinct developmental stages: egg, larvae, pupae, and adult. The lepidopteran insect undergoes major modifications in the central nervous system (CNS) so as to adapt to the lifestyle of these distinct stages with specific habitats and functions from voraciously feeding larval stages to flying reproductive adults via dormant pupal stages. Such transitions are linked to transcriptional, epigenetic, and translational complexities. Therefore, studying rhythmic gene expression in CNS of various developmental stages and the effects of antagonists on developmental hormones requires a very stable reference gene (RG). To facilitate rhythmic gene expression studies using reverse transcription quantitative polymerase chain reaction (RT-qPCR) in and the effect of developmental hormone juvenile hormone (JH) and 20-hydroxy ecdysone hormone (20 HE), antagonists Precocene 1 and testosterone, respectively, were used. Eight candidate RGs, namely, (TI3S4), (TI3S5), (RPs7), (TAF13), (TI4A), (RPL32), 1 (EF1), and (AK), were assessed in the CNS of . The postembryonic developmental (PED) stages used were the fifth late larval instar, early pupa, mid pupa, late pupa, and adult. The assessments were done at four different time points, Zeitgeber time (ZT) 0, 6, 12, and 18, to find stability towards 24-h rhythmic expression. RefFinder, geNorm, and Ct value analysis were performed. RefFinder and geNORM studies suggested stability order as TI3S4 > TI3S5 > RPs7, but Ct value evaluation showed stability order as TI3S5 > TI3S4 > RPs7. We therefore demonstrated that TI3S4, TI3S5, and RPs7 can be used as RG in various PED stages in CNS of (Strain: CB-hybrid, PM×CSR2) towards studies with effects of JH and 20 HE antagonists.

摘要

是一种完全变态的鳞翅目昆虫,具有明显的发育阶段:卵、幼虫、蛹和成虫。鳞翅目昆虫的中枢神经系统(CNS)会经历重大变化,以适应这些不同阶段的生活方式,从贪婪进食的幼虫阶段,经过休眠的蛹阶段,到飞行的繁殖成虫阶段,每个阶段都有特定的栖息地和功能。这种转变与转录、表观遗传和翻译的复杂性有关。因此,研究不同发育阶段中枢神经系统中的节律性基因表达以及拮抗剂对发育激素的影响,需要一个非常稳定的内参基因(RG)。为了便于在[昆虫名称未给出]中使用逆转录定量聚合酶链反应(RT-qPCR)研究节律性基因表达,并分别研究发育激素保幼激素(JH)和20-羟基蜕皮激素(20HE)以及拮抗剂早熟素1和睾酮的作用。评估了八个候选内参基因,即[基因名称未完整给出](TI3S4)、[基因名称未完整给出](TI3S5)、[基因名称未完整给出](RPs7)、[基因名称未完整给出](TAF13)、[基因名称未完整给出](TI4A)、[基因名称未完整给出](RPL32)、[基因名称未完整给出]1(EF1)和[基因名称未完整给出](AK)在[昆虫名称未给出]中枢神经系统中的情况。所使用的胚后发育(PED)阶段为五龄晚期幼虫、早蛹、中蛹、晚蛹和成虫。在四个不同的时间点,即授时时间(ZT)0、6、12和18进行评估,以确定对24小时节律性表达的稳定性。进行了RefFinder分析、geNorm分析和Ct值分析。RefFinder和geNORM研究表明稳定性顺序为TI3S4 > TI3S5 > RPs7,但Ct值评估显示稳定性顺序为TI3S5 > TI3S4 > RPs7。因此,我们证明了TI3S4、TI3S5和RPs7可作为[昆虫名称未给出](品系:CB杂交种,PM×CSR2)中枢神经系统不同PED阶段的内参基因,用于研究JH和20HE拮抗剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/396d/11239437/30faf8d708ea/finsc-04-1362473-g001.jpg

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