Vector Biology Section, Laboratory of Malaria and Vector Research, National Institute of Allergy and Infectious Diseases, Bethesda, MD, USA.
Tick-Pathogen Transmission Unit, Laboratory of Bacteriology, National Institute of Allergy and Infectious Diseases, Hamilton, MT, USA.
Sci Rep. 2023 Jul 13;13(1):11360. doi: 10.1038/s41598-023-38207-5.
The hematophagy behavior has evolved independently several times within the Arthropoda phylum. Interestingly, the process of acquiring a blood meal in ticks is considerably distinct from that observed in other blood-feeding arthropods. Instead of taking seconds to minutes to complete a blood meal, an adult female Ixodes scapularis tick can remain attached to its host for numerous days. During this extended feeding period, the tick undergoes drastic morphological changes. It is well established that the tick midgut plays a pivotal role not only in blood meal digestion but also in pathogen acquisition and transmission. However, our understanding of the underlying molecular mechanisms involved in these events remains limited. To expedite tick research, we conducted a comprehensive longitudinal RNA-sequencing of the tick midgut before, during, and after feeding. By collecting ticks in different feeding stages (unfed, slow feeding, rapid feeding, and early post-detached), we obtained a comprehensive overview of the transcripts present in each stage and the dynamic transcriptional changes that occur between them. This provides valuable insights into tick physiology. Additionally, through unsupervised clustering, we identified transcripts with similar patterns and stage-specific sequences. These findings serve as a foundation for selecting targets in the development of anti-tick control strategies and facilitate a better understanding of how blood feeding and pathogen infection impact tick physiology.
吸血行为在节肢动物门内已经独立进化了多次。有趣的是,蜱虫获取血餐的过程与其他吸血节肢动物观察到的过程有很大的不同。与在几秒钟到几分钟内完成一次血餐相比,一只成年雌性肩突硬蜱可以在其宿主身上停留数天。在这个延长的进食期间,蜱虫经历了剧烈的形态变化。众所周知,蜱虫的中肠不仅在血液消化中起着关键作用,而且在病原体的获取和传播中也起着关键作用。然而,我们对这些事件中涉及的潜在分子机制的理解仍然有限。为了加速蜱虫研究,我们在吸血前、吸血中和吸血后对蜱虫的中肠进行了全面的纵向 RNA 测序。通过收集处于不同进食阶段(未进食、缓慢进食、快速进食和早期脱离)的蜱虫,我们获得了每个阶段存在的转录本的全面概述,以及它们之间发生的动态转录变化。这为蜱虫生理学提供了有价值的见解。此外,通过无监督聚类,我们确定了具有相似模式和阶段特异性序列的转录本。这些发现为选择抗蜱控制策略中的目标提供了基础,并有助于更好地理解血液摄取和病原体感染如何影响蜱虫生理学。