Suppr超能文献

无边界的蜱虫:寄生在墨西哥湾北部迁徙陆鸟身上的新热带未成熟蜱虫种类的微生物群落

Ticks without borders: Microbial communities of immature Neotropical tick species parasitizing migratory landbirds along northern Gulf of Mexico.

作者信息

Karim Shahid, Zenzal Theodore J, Beati Lorenza, Sen Raima, Adegoke Abdulsalam, Kumar Deepak, Downs Latoyia P, Keko Mario, Nussbaum Ashly, Becker Daniel J, Moore Frank R

机构信息

School of Biological, Environmental, and Earth Sciences, University of Southern Mississippi, Hattiesburg, MS 39406, USA.

United States Geological Survey, Wetland and Aquatic Research Center, Lafayette, LA 70506.

出版信息

bioRxiv. 2023 Oct 24:2023.10.22.563347. doi: 10.1101/2023.10.22.563347.

Abstract

The long-distance, seasonal migrations of birds make them an effective ecological bridge for the movement of ticks. The introduction of exotic tick species to new geographical regions can lead to the emergence of novel tick-borne pathogens or the re-emergence of previously eradicated ones. This study assessed the prevalence of exotic tick species parasitizing resident, short-distance, and long-distance songbirds during spring and autumn at stopover sites in the northern Gulf of Mexico using the mitochondrial 12S rDNA gene. Birds were captured for tick collection from six different sites from late August to early November in both 2018 and 2019. The highest number of ticks were collected in the 2019 season. Most ticks were collected off the Yellow-breasted Chat () and Common Yellowthroat (), and 54% of the total ticks collected were from Grand Chenier, LA. A high throughput 16S ribosomal RNA sequencing approach was followed to characterize the microbial communities and identify pathogenic microbes in all tick samples. Tick microbial communities, diversity, and community structure were determined using quantitative insight into microbial ecology (QIIME). The sparse correlations for compositional data (SparCC) approach was then used to construct microbial network maps and infer microbial correlations. A total of 421 individual ticks in the genera and were recorded from 28 songbird species, of which and was the most abundant tick genus and species, respectively. Microbial profiles showed that Proteobacteria was the most abundant phylum. The most abundant bacteria include the pathogenic and endosymbiont and . BLAST analysis and phylogenetic reconstruction of the sequences revealed the highest similarities to pathogenic spotted and non-spotted fever groups, including R. and . Permutation multivariate analysis of variance revealed that the relative abundance of and drives microbial patterns across the tick genera. We also observed a higher percentage of positive correlations in microbe-microbe interactions among members of the microbial communities. Network analysis suggested a negative correlation between a) and and, b) and . Lastly, mapping the distributions of bird species parasitized during spring migrations highlighted geographic hotspots where migratory songbirds could disperse ticks and their pathogens at stopover sites or upon arrival to their breeding grounds, the latter showing means dispersal distances from 421-5003 kilometers. These findings strongly highlight the potential role of migratory birds in the epidemiology of tick-borne pathogens.

摘要

鸟类的长途季节性迁徙使它们成为蜱虫传播的有效生态桥梁。将外来蜱种引入新的地理区域可能导致新的蜱传病原体出现,或使先前已根除的病原体重新出现。本研究利用线粒体12S rDNA基因评估了墨西哥湾北部中途停歇地春季和秋季寄生于留鸟、短途和长途鸣禽身上的外来蜱种的流行情况。在2018年和2019年的8月下旬至11月初,从六个不同地点捕获鸟类以采集蜱虫。2019年季节采集到的蜱虫数量最多。大多数蜱虫是从黄胸绿鹃和黄喉地莺身上采集到的,所采集的蜱虫总数中有54%来自路易斯安那州的格兰德谢尼尔。采用高通量16S核糖体RNA测序方法对所有蜱虫样本中的微生物群落进行特征分析并鉴定致病微生物。利用微生物生态学定量洞察(QIIME)确定蜱虫的微生物群落、多样性和群落结构。然后使用成分数据的稀疏相关性(SparCC)方法构建微生物网络图并推断微生物之间的相关性。从28种鸣禽中记录到了总共421只硬蜱属和血蜱属的个体蜱虫,其中硬蜱属是最丰富的蜱属,血红扇头蜱是最丰富的蜱种。微生物谱显示变形菌门是最丰富的菌门。最丰富的细菌包括致病性的立克次氏体和内共生菌嗜吞噬细胞无形体和伯氏考克斯氏体。对16S序列的BLAST分析和系统发育重建显示与致病性斑点热和非斑点热群的相似度最高,包括肩突硬蜱和血红扇头蜱。置换多元方差分析显示,立克次氏体和嗜吞噬细胞无形体的相对丰度驱动了不同蜱属之间的微生物模式。我们还观察到微生物群落成员之间的微生物 - 微生物相互作用中存在较高比例的正相关。网络分析表明:a)立克次氏体和嗜吞噬细胞无形体之间以及b)嗜吞噬细胞无形体和伯氏考克斯氏体之间存在负相关。最后,绘制春季迁徙期间被寄生鸟类物种的分布图,突出了地理热点区域,在这些区域,候鸟在中途停歇地或到达繁殖地时可能传播蜱虫及其病原体,后者显示平均传播距离为421 - 5003公里。这些发现有力地突出了候鸟在蜱传病原体流行病学中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd9e/10634713/83a5d017606b/nihpp-2023.10.22.563347v1-f0002.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验