数字农科院2.0

Validation and Evaluation of Reference Genes for Quantitative Real-Time PCR Analysis in Mythimna loreyi (Lepidoptera: Noctuidae)

文献类型: 外文期刊

作者: Liuyang Wang;Chaoxia Yang;Qingyu Liu;Xiaofang Zhang;Xiangdong Mei;Tao Zhang;Jun Ning

作者机构:

关键词: gene stability;Mythimna loreyi;normalization;qRT-PCR;reference genes

期刊名称: Insects

ISSN: 2075-4450

年卷期: 2024 年 15 卷 3 期

页码:

收录情况: SCIE(2024版)

摘要: Quantitative real-time PCR (qRT-PCR) is a widely applied technique for accurately assessing the expression of target genes. In practice, the evaluation of gene expression requires appropriate reference genes. To screen reliable reference genes for evaluating gene expression via qRT-PCR in Mythimna loreyi, a notorious migratory pest across Asia, Africa, Europe, and Australia, we assessed the expression stability of 13 candidate reference genes in M. loreyi using the ΔCt method, BestKeeper, Normfinder, GeNorm, and the web-based comprehensive platform RefFinder. These reference genes include RPL10, RPL27, RPL32, RPS3, TATA−box, GAPDH, AK, Actin, EF, α−tubulin, SOD, 18S rRNA, and FTZ−F1, which is frequently employed in Lepidoptera insects. Our findings revealed that the performance of the candidate reference gene depended on experimental conditions. Specifically, RPL27 and RPL10 were the most suitable for evaluating expression changes across developmental stages, tissues, and adult ages. The optimal reference genes were recommended in specific experiment conditions, for instance, EF and RPS3 were recommended for mating status, AK and RPL10 were recommended for temperature treatments, RPL27 and FTZ−F1 were recommended for larva diet, and EF and RPL27 were recommended for adult diet treatments. Additionally, expression profiles of pheromone-binding protein 2 (MlorPBP2) and glutathione S-transferase (MlorGST1) were used to validate the reference genes. This study provides reference genes for the accurate normalization of qRT-PCR data, laying the groundwork for studying the expression of target genes in M. loreyi.

分类号:

  • 相关文献

[1]Reference Gene Selection for RT-qPCR Normalization in Toxoplasma gondii Exposed to Broxaldine. Yanhua Qiu,Yubin Bai,Weiwei Wang,Qing Wang,Shulin Chen,Jiyu Zhang. 2024

[2]Evaluation of Appropriate Reference Genes for Reverse Transcription-Quantitative PCR Studies in Different Tissues of a Desert Poplar via Comparision of Different Algorithms. Wang, Hou-Ling,Li, Lan,Yuan, Chao,Tian, Qianqian,Su, Yanyan,Li, Hui-Guang,Zhao, Lin,Yin, Weilun,Zhao, Rui,Xia, Xinli,Wang, Hou-Ling,Yin, Weilun,Tang, Sha. 2015

[3]Evaluation of Housekeeping Genes for Quantitative Real-Time PCR Analysis of Bradysia odoriphaga (Diptera: Sciaridae). Shi, Caihua,Yang, Yuting,Yang, Fengshan,Zhu, Xun,Wang, Shaoli,Wu, Qingjun,Zhang, Youjun,Du, Erxia. 2016

[4]Selection and evaluation of suitable reference genes for quantitative gene expression analysis during infection of Cucumis sativus with Pectobacterium brasiliense. Yuan, Lifang,Zhao, Yurong,Xie, Hua,Shi, Yanxia,Xie, Xuewen,Chai, Ali,Li, Lei,Li, Baoju. 2022

[5]Selection of reliable reference genes for quantitative real-time RT-PCR in alfalfa. Wang, Xuemin,Wang, Zan,Feng, Guangyan,Li, Jun,Gao, Hongwen,Fu, Yuanyuan,Ban, Liping.

[6]Reference Gene Selection and Evaluation for Gene Expression Studies Using qRT-PCR in the White-Backed Planthopper, Sogatella furcifera (Hemiptera: Delphacidae). Hou, Mao-lin,Liu, Yu-di.

[7]Identification and Evaluation of Reliable Reference Genes for Quantitative Real-Time PCR Analysis in Tea Plant (Camellia sinensis (L.) O. Kuntze). Hao, Xinyuan,Yang, Yajun,Xiao, Bin,Hao, Xinyuan,Horvath, David P.,Chao, Wun S.,Hao, Xinyuan,Yang, Yajun,Wang, Xinchao,Hao, Xinyuan,Yang, Yajun,Wang, Xinchao. 2014

[8]Reference gene selection for quantitative real-time PCR analysis of Hymenopellis radicata under abiotic stress. Cao L.,Zhang Q.,Miao R.,Zhao X.,Ni Y.,Li W.,Feng R.,Yang D.. 2024

[9]Reference gene selection for quantitative real-time PCR normalization in different cherry genotypes, developmental stages and organs. Ye, Xia,Zhang, Fangming,Tao, Yonghuan,Song, Shangwei,Fang, Jinbao.

[10]Selection of reliable reference genes for quantitative real-time PCR gene expression analysis in Jute (Corchorus capsularis) under stress treatments. Niu, Xiaoping,Qi, Jianmin,Zhang, Gaoyang,Xu, Jiantang,Tao, Aifen,Fang, Pingping,Zhang, Gaoyang,Su, Jianguang. 2015

[11]Population Projection and Development of the Mythimna loreyi (Lepidoptera: Noctuidae) as Affected by Temperature: Application of an Age-Stage, Two-Sex Life Table. Zhang, Lei,Sappington, Thomas W.,Cheng, Yunxia,Luo, Lizhi,Jiang, Xingfu,Qin, Jianyang,Liu, Yueqiu.

[12]Chromosome- level genomes of two armyworms, Mythimna separata and Mythimna loreyi, provide insights into the biosynthesis and reception of sex pheromones. Zhao, Hanbo,Liu, Hangwei,Liu, Yipeng,Wang, Chan,Ma, Baiwei,Zhang, Mengjun,Zhang, Yan,Liu, Yang,Yang, Bin,Wang, Sen,Jiang, Fan,Wang, Hengchao,Wang, Anqi,Xu, Dong,Wang, Guirong,Fan, Wei. 2023

[13]Development of a New Sex Attractant via the Peripheral Coding of Pheromones in Mythimna loreyi. Wang, Chan,Li, Yong-Hu,Wang, Lin,Yang, Bin,Wang, Gui-Rong. 2023

[14]Effects Of Moth Age And R.earing Temperature On The F light Performance Of The Loreyi Leafworm, Mythimna Loreyi (Lepidoptera: Noctuidae), In Tethered And Free Flight. Zhang, Lei,Cheng, Yunxia,Jiang, Xingfu,Sappington, Thomas W.,Liu, Yueqiu,Qin, Jianyang. 2018

[15]Population Projection And Development Of T.he Mythimna Loreyi (Lepidoptera: N octuidae) As Affected By Temperature: Application Of An Age-Stage, Two-Sex Life Table. Cheng, Yunxia,Zhang, Lei,Sappington, Thomas W.,Qin, Jianyang,Qin, Jianyang,Liu, Yueqiu,Jiang, Xingfu,Luo, Lizhi. 2017

[16]Characterization of the pheromone receptors in Mythimna loreyi reveals the differentiation of sex pheromone recognition in Mythimna species. Wang, Chan,Liu, Lei,Huang, Tian-Yu,Zhang, Yu,Liu, Yang,Wang, Gui-Rong. 2023

[17]Functional Characterization of a Fatty Acyl Reductase Identified from the Female Pheromone Gland of Mythimna loreyi (Lepidoptera: Noctuidae). Wang, Liuyang,Guo, Pei,Zhang, Xiaofang,Guo, Jianqing,Meng, Runjie,Ning, Jun,Zhang, Tao. 2025

[18]Flight capacity and wingbeat frequency of Mythimna loreyi (Lepidoptera: Noctuidae). He, Limei,Sun, Xiaoting,Tan, Yanni,Zhou, Yatao,Wu, Wenxian,Liu, Xu,Wu, Kongming. 2025

[19]Construction of a Normalized Full-Length cDNA Library of Sesame Developing Seed by DSN and SMART (TM). Ke Tao,Dong Cai-hua,Mao Han,Zhao Ying-zhong,Liu Hong-yan,Liu Sheng-yi,Ke Tao. 2011

[20]Validation of reference genes for real-time quantitative PCR normalization in soybean developmental and germinating seeds. Li, Qing,Fan, Cheng-Ming,Zhang, Xiao-Mei,Fu, Yong-Fu. 2012

作者其他论文 更多>>