Department of Agricultural and Environmental Biology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1, Yayoi, Bunkyo-ku, Tokyo113-8657, Japan.
Parasitology. 2021 Jan;148(1):105-109. doi: 10.1017/S0031182020001924. Epub 2020 Oct 15.
Many parasites manipulate host behaviour to enhance their transmission. Baculoviruses induce enhanced locomotory activity (ELA) combined with subsequent climbing behaviour in lepidopteran larvae, which facilitates viral dispersal. However, the mechanisms underlying host manipulation system are largely unknown. Previously, larval locomotion during ELA was summarized as the distance travelled for a few minutes at several time points, which are unlikely to characterize ELA precisely, as ELA typically persists for several hours. In this study, we modified a recently developed method using time-lapse recording to characterize locomotion of Bombyx mori larvae infected with Bombyx mori nucleopolyhedrovirus (BmNPV) for 24 h at 3 s resolution. Our data showed that the locomotion of the mock-infected larvae was restricted to a small area, whereas the BmNPV-infected larvae exhibited a large locomotory area. These results indicate that BmNPV dysregulates the locomotory pattern of host larvae. Furthermore, both the mock- and BmNPV-infected larvae showed periodic cycles of movement and stationary behavior with a similar frequency, suggesting the physiological mechanisms that induce locomotion are unaffected by BmNPV infection. In contrast, the BmNPV-infected larvae exhibited fast and long-lasting locomotion compared with mock-infected larvae, which indicates that locomotory speed and duration are manipulated by BmNPV.
许多寄生虫操纵宿主行为以增强其传播。杆状病毒会诱导鳞翅目幼虫产生增强的运动活性(ELA),并伴随随后的攀爬行为,从而促进病毒的传播。然而,宿主操纵系统的机制在很大程度上尚不清楚。先前,ELA 期间的幼虫运动被总结为在几个时间点上几分钟内行进的距离,这不太可能准确地描述 ELA,因为 ELA 通常持续数小时。在这项研究中,我们修改了最近开发的一种方法,使用延时记录以 3 秒的分辨率来描述感染家蚕核多角体病毒(BmNPV)的家蚕幼虫的运动 24 小时。我们的数据表明,模拟感染的幼虫的运动仅限于小区域,而 BmNPV 感染的幼虫则表现出大的运动区域。这些结果表明 BmNPV 扰乱了宿主幼虫的运动模式。此外,模拟感染和 BmNPV 感染的幼虫都表现出具有相似频率的周期性运动和静止行为的周期,这表明诱导运动的生理机制不受 BmNPV 感染的影响。相比之下,BmNPV 感染的幼虫表现出比模拟感染的幼虫更快且持续时间更长的运动,这表明运动速度和持续时间被 BmNPV 操纵。