Suppr超能文献

日本北海道入侵浣熊(北美浣熊)蜱虫感染的环境和宿主因素

Environmental and host factors underlying tick infestation in invasive raccoons (Procyon lotor) in Hokkaido, Japan.

作者信息

Ito Mebuki, Minamikawa Miku, Kovba Anastasiia, Numata Hideka, Itoh Tetsuji, Katada Yuki, Niwa Shiho, Taya Yurie, Shiraki Yuto, Pandey Gita Sadaula, Kelava Samuel, Nonaka Nariaki, Nakao Ryo, Omori Ryosuke, Ohari Yuma, Isoda Norikazu, Shimozuru Michito, Tsubota Toshio, Matsuno Keita, Sashika Mariko

机构信息

Laboratory of Wildlife Biology and Medicine, Faculty of Veterinary Medicine, Hokkaido University, Kita 18, Nishi 9, Kita-ku, Sapporo City 060-0818, Hokkaido, Japan; Division of Risk Analysis and Management, International Institute for Zoonosis Control, Hokkaido University, Kita 20, Nishi 10, Kita-ku, Sapporo City 001-0020, Hokkaido, Japan.

Laboratory of Wildlife Biology and Medicine, Faculty of Veterinary Medicine, Hokkaido University, Kita 18, Nishi 9, Kita-ku, Sapporo City 060-0818, Hokkaido, Japan; Present Address: Center for Ecological Research, Kyoto University, 41-2 Kanrin, Inuyama 484-8506 Aichi, Japan.

出版信息

Ticks Tick Borne Dis. 2024 Nov;15(6):102389. doi: 10.1016/j.ttbdis.2024.102389. Epub 2024 Aug 13.

Abstract

Revealing interactions between ticks and wild animals is vital for gaining insights into the dynamics of tick-borne pathogens in the natural environment. We aimed to elucidate the factors that determine tick infestation in wild animals by investigating ticks on invasive raccoons (Procyon lotor) in Hokkaido, Japan. We first examined the composition, intensity, and seasonal variation of ticks infesting raccoons in six study areas in Hokkaido from March 2022 to August 2023. In one study area, ticks infesting tanukis (raccoon dog, Nyctereutes procyonoides albus) were collected in May to July in both 2022 and 2023, and questing ticks were collected from the vegetation by flagging every other week in the same period. Next, we screened 17 environmental and host variables to determine factors that affect the number of ticks infesting raccoons using generalized linear (mixed) models. From 245 raccoons, we identified a total of 3,917 ticks belonging to eight species of two genera: the most prominent species were Ixodes ovatus (52.9 %), followed by Haemaphysalis megaspinosa (14.4 %), Ixodes tanuki (10.6 %), and Ixodes persulcatus (9.5 %). Ixodes ovatus was also predominant among questing ticks and ticks infesting tanukis. Although I. tanuki was frequently collected from raccoons and tanukis, it was rarely collected in the field. The variables that significantly affected the infestation on raccoons differed by genus, species and developmental stage of the tick. For instance, the infestation of adult I. ovatus was significantly affected by four variables: night-time temperature during nine days before capturing the raccoon, the size of forest area around the capture site, sex of the raccoon, and sampling season. The first two variables were also responsible for the infestation on raccoons of almost all species and stages of ticks. Our study revealed that the number and composition of ticks infesting raccoons can be affected not only by landscape of their habitats but also by weather conditions in several days before capturing.

摘要

揭示蜱虫与野生动物之间的相互作用对于深入了解自然环境中蜱传病原体的动态至关重要。我们旨在通过调查日本北海道入侵浣熊(北美浣熊,Procyon lotor)身上的蜱虫,阐明决定野生动物蜱虫感染的因素。我们首先在2022年3月至2023年8月期间,对北海道六个研究区域内感染浣熊的蜱虫的组成、感染强度和季节变化进行了研究。在一个研究区域,于2022年和2023年的5月至7月收集感染狸(浣熊犬,Nyctereutes procyonoides albus)的蜱虫,并在同一时期每隔一周通过拖旗法从植被中收集伺机侵袭的蜱虫。接下来,我们筛选了17个环境和宿主变量,使用广义线性(混合)模型来确定影响感染浣熊蜱虫数量的因素。从245只浣熊身上,我们共鉴定出3917只蜱虫,分属于两个属的八个物种:最主要的物种是卵形硬蜱(Ixodes ovatus,占52.9%),其次是巨刺血蜱(Haemaphysalis megaspinosa,占14.4%)、狸硬蜱(Ixodes tanuki,占10.6%)和全沟硬蜱(Ixodes persulcatus,占9.5%)。卵形硬蜱在伺机侵袭的蜱虫和感染狸的蜱虫中也占主导地位。虽然狸硬蜱经常从浣熊和狸身上采集到,但在野外很少采集到。显著影响浣熊感染情况的变量因蜱虫的属、物种和发育阶段而异。例如,成年卵形硬蜱的感染受到四个变量的显著影响:捕获浣熊前九天的夜间温度、捕获地点周围的森林面积大小、浣熊的性别以及采样季节。前两个变量也影响了几乎所有物种和发育阶段的蜱虫对浣熊的感染。我们的研究表明,感染浣熊的蜱虫数量和组成不仅会受到其栖息地景观的影响,还会受到捕获前几天天气状况的影响。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验