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海鸟宿主群体内软蜱及其相关感染因子的种群结构

Population structure of the soft tick and its associated infectious agents within a colony of its seabird host .

作者信息

Dupraz Marlene, Toty Céline, Devillers Elodie, Blanchon Thomas, Elguero Eric, Vittecoq Marion, Moutailler Sara, McCoy Karen D

机构信息

MIVEGEC UMR 5290 CNRS IRD UM, Centre IRD, 911 Avenue Agropolis, BP 64501, 34394 Montpellier, France.

UMR Bipar, Anses, INRA, ENVA, 14 Rue Pierre et Marie Curie, 94700 Maisons-Alfort, France.

出版信息

Int J Parasitol Parasites Wildl. 2017 May 26;6(2):122-130. doi: 10.1016/j.ijppaw.2017.05.001. eCollection 2017 Aug.

Abstract

The epidemiology of vector-borne zoonoses depends on the movement of both hosts and vectors, which can differ greatly in intensity across spatial scales. Because of their life history traits and small size, vector dispersal may be frequent, but limited in distance. However, little information is available on vector movement patterns at local spatial scales, and particularly for ticks, transmitting the greatest diversity of recognized infectious agents. To test the degree to which ticks can disperse and disseminate pathogens at local scales, we investigated the temporal dynamics and population structure of the soft tick within a colony of its seabird host, the Yellow-legged gull . Ticks were repeatedly sampled at a series of nests during the host breeding season. In half of the nests, ticks were collected (removal sampling), in the other half, ticks were counted and returned to the nest. A subsample of ticks was screened for known bacteria, viruses and parasites using a high throughput real-time PCR system to examine their distribution within the colony. The results indicate a temporal dynamic in the presence of tick life stages over the season, with the simultaneous appearance of juvenile ticks and hatched chicks, but no among-nest spatial structure in tick abundance. Removal sampling significantly reduced tick numbers, but only from the fourth visit onward. Seven bacterial isolates, one parasite species and one viral isolate were detected but no spatial structure in their presence within the colony was found. These results suggest weak isolation among nests and that tick dispersal is likely frequent enough to quickly recolonize locally-emptied patches and disseminate pathogens across the colony. Vector-mediated movements at local scales may therefore play a key role in pathogen emergence and needs to be considered in conjunction with host movements for predicting pathogen circulation and for establishing effective control strategies.

摘要

媒介传播人畜共患病的流行病学取决于宿主和媒介的移动,而这两者在不同空间尺度上的移动强度可能有很大差异。由于其生活史特征和体型较小,媒介的扩散可能很频繁,但距离有限。然而,关于媒介在局部空间尺度上的移动模式,尤其是传播已确认感染因子种类最多的蜱的移动模式,目前所知甚少。为了测试蜱在局部尺度上传播和扩散病原体的程度,我们研究了软蜱在其海鸟宿主黄腿鸥的一个群体内的时间动态和种群结构。在宿主繁殖季节,我们在一系列鸟巢中反复采集蜱样本。在一半的鸟巢中采集蜱(去除采样),在另一半鸟巢中对蜱进行计数并放回巢中。使用高通量实时PCR系统对蜱的一个子样本进行已知细菌、病毒和寄生虫的筛查,以检查它们在群体内的分布情况。结果表明,在整个季节中蜱的生命阶段存在时间动态,幼蜱和孵化出的雏鸟同时出现,但蜱的丰度在鸟巢间没有空间结构。去除采样显著减少了蜱的数量,但仅从第四次访问开始。检测到七种细菌分离株、一种寄生虫物种和一种病毒分离株,但在群体内它们的存在没有发现空间结构。这些结果表明鸟巢之间的隔离较弱,蜱的扩散可能足够频繁,能够迅速重新定殖局部空出的区域并在整个群体中传播病原体。因此,局部尺度上由媒介介导的移动可能在病原体出现中起关键作用,在预测病原体传播和制定有效控制策略时,需要结合宿主移动来考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbd0/5460746/5b1432fe1152/fx1.jpg

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