Jia Shunze, Li Yinghui, Dai Xiangping, Li Xiaotong, Zhou Yanyan, Xu Yusong, Wang Huabing
College of Animal Sciences Zhejiang University Hangzhou China.
Ecol Evol. 2020 Aug 26;10(18):9682-9695. doi: 10.1002/ece3.6574. eCollection 2020 Sep.
Insects evolved adaptive plasticity to minimize the effects of the chemical defenses of their host plants. Nevertheless, the expressional response and adaptation of phytophagous specialists for long-term adaption and short-term response to host phytochemicals remains largely unexplored. The mulberry ()-silkworm () interaction is an old and well-known model of plant-insect interaction. In this study, we examined the long-term adaption and short-term response of the mulberry-specialist silkworm to two sugar-mimic alkaloids in mulberry: the commonly encountered 1-deoxynojirimycin (1-DNJ) and occasionally encountered 1,4-dideoxy-1,4-imino-D-arabinitol (D-AB1), respectively. Global transcriptional patterns revealed that the physiological responses induced by the selective expression of genes involved in manifold cellular processes, including detoxification networks, canonical digestion processes, target enzymes, and other fundamental physiological processes, were crucial for regulating metabolic homeostasis. Comparative network analysis of the effects of exposure to D-AB1 and 1-DNJ supported the contention that produced similar and specific trajectories of changed gene expression in response to different sugar-mimic alkaloids. D-AB1 elicited a substantial proportion of downregulated genes relating to carbohydrate metabolism, catabolic process, lipid metabolism, and glycan biosynthesis and metabolism. This study dramatically expands our knowledge of the physiological adaptations to dietary sugar-mimic alkaloid intake and uncovered both metabolic evolutionarily responses and unique adaptive mechanisms previously unknown in insects.
昆虫进化出适应性可塑性,以尽量减少宿主植物化学防御的影响。然而,植食性专食者对宿主植物化学物质的长期适应和短期反应的表达响应及适应性在很大程度上仍未得到探索。桑()-蚕()相互作用是一个古老且广为人知的植物-昆虫相互作用模型。在本研究中,我们分别研究了桑专食性蚕对桑中两种拟糖生物碱的长期适应和短期反应:常见的1-脱氧野尻霉素(1-DNJ)和偶尔出现的1,4-二脱氧-1,4-亚氨基-D-阿拉伯糖醇(D-AB1)。全局转录模式表明,由参与多种细胞过程的基因选择性表达所诱导的生理反应,包括解毒网络、经典消化过程、靶标酶和其他基本生理过程,对于调节代谢稳态至关重要。对暴露于D-AB1和1-DNJ的影响进行的比较网络分析支持了这样的观点,即蚕对不同拟糖生物碱产生了相似且特定的基因表达变化轨迹。D-AB1引发了相当比例与碳水化合物代谢、分解代谢过程、脂质代谢以及聚糖生物合成和代谢相关的基因下调。这项研究极大地扩展了我们对饮食中拟糖生物碱摄入的生理适应性的认识,并揭示了昆虫中以前未知的代谢进化反应和独特的适应性机制。