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Transcriptomic and Functional Analyses of Phenotypic Plasticity in a Higher Termite, Macrotermes barneyi Light

机译:在更高的白蚁,大白蚁光中表型可塑性的转录组学和功能分析

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摘要

Eusocial termites have a complex caste system, which leads to the division of labor. Previous studies offered some insight into the caste differentiation in lower termites; however, few studies were focusing on the molecular mechanisms of higher termites with sophisticated societies. Comparative transcriptomic analyses of five immature castes of a higher termite, Macrotermes barneyi Light, suggest that phenotypic plasticity is modulated by an array of transcriptional changes, including differentially expressed genes (e.g., caste-biased genes Vtg and TnC), co-expression networks (e.g., genes associated with nymph reproduction), and alternative splicing (e.g., events related to muscle development in presoldiers). Transcriptional (RT-PCR and RT-qPCR) and functional (in vivo RNAi) validation studies reveal multiple molecular mechanisms contributing to the phenotypic plasticity in eusocial termites. Molecular mechanisms governing the phenotypic plasticity in M. barneyi could be a rule rather than an exception in the evolution of sociality.
机译:亲社会的白蚁具有复杂的种姓制度,这导致了劳动分工。先前的研究为低等白蚁的种姓分化提供了一些见识。然而,很少有研究关注具有复杂社会的高等白蚁的分子机制。对较高白蚁的五个未成熟种姓Macrotermes barneyi Light的转录组学分析表明,表型可塑性受一系列转录变化的调控,包括差异表达的基因(例如种姓偏性基因Vtg和TnC),共表达网络(例如,与若虫繁殖相关的基因)和选择性剪接(例如,与前食者肌肉发育有关的事件)。转录(RT-PCR和RT-qPCR)和功能(体内RNAi)验证研究表明,多种分子机制有助于在真社会白蚁中产生表型可塑性。支配巴尼分枝杆菌表型可塑性的分子机制可能是社会进化的规则而不是例外。

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