Bao Haibo, Zhu Hui, Yu Peihan, Luo Guanghua, Zhang Ru, Yue Qian, Fang Jichao
Jiangsu Key Laboratory for Food and Safety-State Key Laboratory Cultivation Base of Ministry of Science and Technology, Institute of Plant Protection, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.
Int J Mol Sci. 2022 Oct 14;23(20):12322. doi: 10.3390/ijms232012322.
Survival and adaptation to seasonal changes are challenging for insects. Many temperate insects such as the rice stem borer () overcome the adverse situation by entering diapause, wherein development changes dynamically occur and metabolic activity is suppressed. The photoperiod and temperature act as major environmental stimuli of diapause. However, the physiological and molecular mechanisms that interpret the ecologically relevant environmental cues in ontogenetic development during diapause termination are poorly understood. Here, we used genome-wide high-throughput RNA-sequencing to examine the patterns of gene expression during diapause termination in . . Major shifts in biological processes and pathways including metabolism, environmental information transmission, and endocrine signalling were observed across diapause termination based on over-representation analysis, short time-series expression miner, and gene set enrichment analysis. Many new pathways were identified in diapause termination including circadian rhythm, MAPK signalling, Wnt signalling, and Ras signalling, together with previously reported pathways including ecdysteroid, juvenile hormone, and insulin/insulin-like signalling. Our results show that convergent biological processes and molecular pathways of diapause termination were shared across different insect species and provided a comprehensive roadmap to better understand diapause termination in .
对于昆虫来说,生存以及适应季节变化是一项挑战。许多温带昆虫,比如二化螟,通过进入滞育来克服不利环境,在滞育期间发育动态变化且代谢活动受到抑制。光周期和温度是滞育的主要环境刺激因素。然而,在滞育终止的个体发育过程中,解读具有生态相关性的环境线索的生理和分子机制却鲜为人知。在此,我们使用全基因组高通量RNA测序来研究二化螟滞育终止期间的基因表达模式。基于过度表达分析、短时间序列表达挖掘器和基因集富集分析,在整个滞育终止过程中观察到了包括代谢、环境信息传递和内分泌信号传导在内的生物过程和途径的重大转变。在滞育终止过程中鉴定出了许多新途径,包括昼夜节律、丝裂原活化蛋白激酶(MAPK)信号传导、Wnt信号传导和Ras信号传导,以及先前报道的途径,如蜕皮甾类、保幼激素和胰岛素/胰岛素样信号传导。我们的结果表明,不同昆虫物种在滞育终止过程中存在趋同的生物过程和分子途径,为更好地理解二化螟的滞育终止提供了一份全面的路线图。