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首页> 外文期刊>BMC Genomics >De novo assembly and characterization of central nervous system transcriptome reveals neurotransmitter signaling systems in the rice striped stem borer, Chilo suppressalis
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De novo assembly and characterization of central nervous system transcriptome reveals neurotransmitter signaling systems in the rice striped stem borer, Chilo suppressalis

机译:从头组装和中枢神经系统转录组的表征揭示了水稻条纹茎bore中的神经递质信号系统

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摘要

Neurotransmitter signaling systems play crucial roles in multiple physiological and behavioral processes in insects. Genome wide analyses of de novo transcriptome sequencing and gene specific expression profiling provide rich resources for studying neurotransmitter signaling pathways. The rice striped stem borer, Chilo suppressalis is a destructive rice pest in China and other Asian countries. The characterization of genes involved in neurotransmitter biosynthesis and transport could identify potential targets for disruption of the neurochemical communication and for crop protection. Here we report de novo sequencing of the C. suppressalis central nervous system transcriptome, identification and expression profiles of genes putatively involved in neurotransmitter biosynthesis, packaging, and recycling/degradation. A total of 54,411 unigenes were obtained from the transcriptome analysis. Among these unigenes, we have identified 32 unigenes (31 are full length genes), which encode 21 enzymes and 11 transporters putatively associated with biogenic aminergic signaling, acetylcholinergic signaling, glutamatergic signaling and GABAergic signaling. RT-PCR and qRT-PCR results indicated that 12 enzymes were highly expressed in the central nervous system and all the transporters were expressed at significantly high levels in the central nervous system. In addition, the transcript abundances of enzymes and transporters in the central nervous system were validated by qRT-PCR. The high expression levels of these genes suggest their important roles in the central nervous system. Our study identified genes potentially involved in neurotransmitter biosynthesis and transport in C. suppressalis and these genes could serve as targets to interfere with neurotransmitter production. This study presents an opportunity for the development of specific and environmentally safe insecticides for pest control.
机译:神经递质信号系统在昆虫的多种生理和行为过程中起着至关重要的作用。从头转录组测序的全基因组分析和基因特异性表达谱分析为研究神经递质信号通路提供了丰富的资源。在中国和其他亚洲国家,水稻条纹striped虫Chilo inhibitoralis是一种破坏性水稻害虫。参与神经递质生物合成和运输的基因的表征可以确定潜在的靶点,以破坏神经化学交流和保护作物。在这里,我们报告从头定点的中枢神经系统转录组测序,推定参与神经递质生物合成,包装和回收/降解的基因的鉴定和表达谱。通过转录组分析获得了总共54,411个单基因。在这些单基因中,我们已经鉴定出32个单基因(31个是全长基因),它们编码21种酶和11个转运蛋白,推定与生物胺能信号,乙酰胆碱能信号,谷氨酸能信号和GABA能信号相关。 RT-PCR和qRT-PCR结果表明,在中枢神经系统中高表达12种酶,在中枢神经系统中所有转运蛋白均以高水平表达。另外,通过qRT-PCR验证了中枢神经系统中酶和转运蛋白的转录本丰度。这些基因的高表达水平表明它们在中枢神经系统中的重要作用。我们的研究确定了潜在的基因可能参与了抑制隐球菌的神经递质的生物合成和运输,这些基因可以作为干扰神经递质产生的靶标。这项研究为开发特定和对环境安全的杀虫剂提供了机会,以控制害虫。

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