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首页> 外文期刊>International journal of biological sciences >Transcriptome Characterization Analysis of Bactrocera minax and New Insights into Its Pupal Diapause Development with Gene Expression Analysis
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Transcriptome Characterization Analysis of Bactrocera minax and New Insights into Its Pupal Diapause Development with Gene Expression Analysis

机译:拟杆菌的转录组表征分析及其基因表达分析对Pu滞育的新认识

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摘要

Bactrocera minax is a major citrus pest distributed in China, Bhutan and India. The long pupal diapause duration of this fly is a major bottleneck for artificial rearing and underlying mechanisms remain unknown. Genetic information on B. minax transcriptome and gene expression profiles are needed to understand its pupal diapause. High-throughput RNA-seq technology was used to characterize the B. minax transcriptome and to identify differentially expressed genes during pupal diapause development. A total number of 52,519,948 reads were generated and assembled into 47,217 unigenes. 26,843 unigenes matched to proteins in the NCBI database using the BLAST search. Four digital gene expression (DGE) libraries were constructed for pupae at early diapause, late diapause, post-diapause and diapause terminated developmental status. 4,355 unigenes showing the differences expressed across four libraries revealed major shifts in cellular functions of cell proliferation, protein processing and export, metabolism and stress response in pupal diapause. When diapause was terminated by 20-hydroxyecdysone (20E), many genes involved in ribosome and metabolism were differentially expressed which may mediate diapause transition. The gene sets involved in protein and energy metabolisms varied throughout early-, late- and post-diapause. A total of 15 genes were selected to verify the DGE results through quantitative real-time PCR (qRT-PCR); qRT-PCR expression levels strongly correlated with the DGE data. The results provided the extensive sequence resources available for B. minax and increased our knowledge on its pupal diapause development and they shed new light on the possible mechanisms involved in pupal diapause in this species.
机译:稻实蝇(Bactrocera minax)是分布于中国,不丹和印度的一种主要柑橘害虫。这种蝇蝇p滞育期长,是人工饲养的主要瓶颈,其潜在机制尚不清楚。需要了解有关棉铃虫转录组和基因表达谱的遗传信息,以了解其di滞育。高通量RNA-seq技术用于表征棉铃虫转录组,并在p滞育过程中鉴定差异表达的基因。总共产生了52,519,948个读段,并将其组装成47,217个单基因。使用BLAST搜索,有26,843个单基因与NCBI数据库中的蛋白质匹配。在滞育初期,滞育后期,滞育后和滞育终止的发育状态下,为p构建了四个数字基因表达(DGE)文库。 4,355个单基因显示了在四个文库中表达的差异,揭示了di滞育中细胞增殖,蛋白质加工和输出,代谢和应激反应的细胞功能发生了重大变化。当滞育被20-羟基蜕皮激素(20E)终止时,涉及核糖体和代谢的许多基因被差异表达,这可能介导了滞育过渡。整个糖尿病的早期,晚期和后期,参与蛋白质和能量代谢的基因集都不同。总共选择了15个基因以通过定量实时PCR(qRT-PCR)验证DGE结果; qRT-PCR表达水平与DGE数据高度相关。结果提供了广泛的序列资源可用于美人双歧杆菌,并增加了我们对其its滞育的认识,并且为该物种中的di滞育的可能机制提供了新的思路。

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