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Dynamics of Centrocestus armatus Transmission in Endemic River in Hyogo Prefecture Japan

机译:日本兵库县特有河流中的大果夜蛾传播动态

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摘要

Centrocestus armatus is an intestinal parasite belonging to the family Heterophyidae. We developed an apparatus for recovering cercariae and clarified the infection dynamics of this parasite. To clarify the circadian rhythm of cercarial shedding in the summer season, we filtrated 30 l of river water every 2 h for 24 h. Cercariae were first detected between 06:00 and 08:00 h, increased over time to reach peak at 16:00 h and decreased thereafter, thus showing a single-peak pattern. In a survey of seasonal change, approximately 200 cercariae were contained in 1 l of river water during the summer season, while none were found during the winter. This cercarial shedding pattern appeared to be related to sunrise/sunset and water/atmosphere temperature. Therefore, we examined whether cercarial shedding was affected by light or temperature changes under laboratory conditions, and confirmed that both light and temperature were important factors for cercarial shedding. Light was a stronger factor than water temperature. Cercarial shedding of C. armatus occurred in response to temperature and light. The change in the number of juvenile metacercariae detected in fish brain corresponded with monthly detection rates of cercariae; however, the incidence of new infections decreased in August. This suggests that Nipponocypris temminkii contains a defense mechanism against new infections that may have hindered the increase in parasite infectivity. These results clarified the smooth infection from the first to the second intermediate host of C. armatus in the endemic river. Throughout the study period, fecal samples were collected from 19 kites, 114 herons, and three unidentified species. However, our results using C. armatus showed a low value of 1% in herons and 5% in kites. The infection dynamics of final host to first intermediate host need to be further investigated.
机译:armatus Centrocestus armatus是属于异蝇科的一种肠道寄生虫。我们开发了一种用于回收尾c的设备,并阐明了该寄生虫的感染动态。为了弄清夏季子宫颈脱落的昼夜节律,我们每2小时过滤30升河水24小时。尾rc首先在06:00至08:00之间被检测到,随时间增加而在16:00 h达到峰值,然后减少,从而显示出单峰模式。在对季节变化的调查中,在夏季,每1升河水中含有大约200尾winter。子宫颈脱落的方式似乎与日出/日落和水/大气温度有关。因此,我们检查了实验室条件下小car脱落是否受光或温度变化的影响,并确认光和温度都是小both脱落的重要因素。光照比水温更重要。 armatus的car虫脱落是由于温度和光照引起的。鱼脑中发现的少年尾meta的数量变化与尾monthly的月检出率相对应。但是,八月份新感染的发生率有所下降。这表明Nipponocypris temminkii包含一种针对新感染的防御机制,这种新感染可能已经阻碍了寄生虫感染性的增加。这些结果表明,在地方性河道中,从第一类至第二类中间虫传播平稳。在整个研究期间,从19只风筝,114只苍鹭和3个未识别物种中收集了粪便样本。但是,我们使用虫梭状芽孢杆菌的结果显示苍鹭的低值仅为1%,风筝的值为5%。从最终宿主到第一中间宿主的感染动力学需要进一步研究。

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