Hou Li, Jiang Feng, Yang Pengcheng, Wang Xianhui, Kang Le
State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing 100101, China.
Insect Biochem Mol Biol. 2015 Aug;63:63-71. doi: 10.1016/j.ibmb.2015.05.014. Epub 2015 May 30.
Neuropeptides serve as the most important regulatory signals in insects. Many neuropeptides and their precursors have been identified in terms of the contig sequences of whole genome information of the migratory locust (Locusta migratoria), which exhibits a typical phenotypic plasticity in morphology, behavior and physiology. However, functions of these locust neuropeptides are largely unknown. In this study, we first revised the 23 reported neuropeptide precursor genes and identified almost all the neuropeptide precursors and corresponding products in L. migratoria. We further revealed the significant expansion profiles (such as AKH) and alternative splicing of neuropeptide genes (Lom-ITP, Lom-OK and Lom-NPF1). Transcriptomic analysis indicated that several neuropeptides, such as Lom-ACP and Lom-OK, displayed development-specific expression patterns. qRT-PCR data confirmed that most neuropeptide precursors were strongly expressed in the central nervous system. Fifteen neuropeptide genes displayed different expression levels between solitarious and gregarious locusts. These findings provide valuable clues to understand neuropeptide evolution and their functional roles in basic biology and phase transition in locusts.
神经肽是昆虫中最重要的调节信号。根据飞蝗(Locusta migratoria)全基因组信息的重叠群序列,已鉴定出许多神经肽及其前体,飞蝗在形态、行为和生理方面表现出典型的表型可塑性。然而,这些蝗虫神经肽的功能大多未知。在本研究中,我们首先修订了23个已报道的神经肽前体基因,并鉴定出了飞蝗中几乎所有的神经肽前体及相应产物。我们进一步揭示了神经肽基因(如AKH)的显著扩增情况以及神经肽基因(Lom-ITP、Lom-OK和Lom-NPF1)的可变剪接。转录组分析表明,几种神经肽,如Lom-ACP和Lom-OK,呈现出发育特异性的表达模式。qRT-PCR数据证实,大多数神经肽前体在中枢神经系统中强烈表达。15个神经肽基因在散居型和群居型蝗虫之间表现出不同的表达水平。这些发现为理解神经肽的进化及其在蝗虫基础生物学和相变中的功能作用提供了有价值的线索。