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Dynamics of a host-parasitoid interaction clarified by modelling and DNA sequencing

机译:通过建模和DNA测序澄清宿主寄生虫相互作用的动态

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It has been hypothesised that the 2-year oscillations in abundance of Xestia moths are mediated by interactions with 1-year Ophion parasitoid wasps. We tested this hypothesis by modelling a 35-year time series of Xestia and Ophion from Northern Finland. Additionally, we used DNA barcoding to ascertain the species diversity of Ophion and targeted amplicon sequencing of their gut contents to confirm their larval hosts. Modelling of the time-series data strongly supported the hypothesised host-parasitoid dynamics and that periodic occurrence of Xestia moths is mediated by Ophion. DNA barcodes revealed that Ophion included five species rather than just one while targeted amplicon sequencing verified that Ophion does parasitise Xestia. At least one Ophion species employs 1-year Syngrapha interrogationis as an alternate host, but it did not detectably affect Xestia-Ophion dynamics. We also demonstrate the previously unrecognised complexity of this system due to cryptic parasitoid diversity.
机译:已经假设了2年的Xestia飞蛾的振荡是通过与1岁的Ophion寄生虫黄蜂的相互作用来介导的。 我们通过从芬兰北部建模35岁的Xestia和Ophion来测试这一假设。 此外,我们使用DNA条形码来确定其肠道内容的Ophion和靶向扩增子测序的物种多样性,以确认其幼虫宿主。 时间序列数据的建模强烈支持假设的宿主 - 寄生虫动态,并且通过Ophion介导的Xestia飞蛾的周期性发生。 DNA条形码揭示了,Ophion包括五种,而不是仅在靶向扩增子测序中核实,验证了促使Xestia。 至少一种关注物种使用1年句子询问剂作为替代宿主,但它没有可检测地影响Xestia-Ophion动态。 我们还展示了由于神秘的寄生体多样性导致该系统的先前未被识别的复杂性。

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