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寄生虫与宿主的双重RNA测序揭示了丝虫与蚊子相互作用过程中的基因表达动态。

Dual RNA-seq of parasite and host reveals gene expression dynamics during filarial worm-mosquito interactions.

作者信息

Choi Young-Jun, Aliota Matthew T, Mayhew George F, Erickson Sara M, Christensen Bruce M

机构信息

Department of Pathobiological Sciences, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.

出版信息

PLoS Negl Trop Dis. 2014 May 22;8(5):e2905. doi: 10.1371/journal.pntd.0002905. eCollection 2014 May.

Abstract

BACKGROUND

Parasite biology, by its very nature, cannot be understood without integrating it with that of the host, nor can the host response be adequately explained without considering the activity of the parasite. However, due to experimental limitations, molecular studies of parasite-host systems have been predominantly one-sided investigations focusing on either of the partners involved. Here, we conducted a dual RNA-seq time course analysis of filarial worm parasite and host mosquito to better understand the parasite processes underlying development in and interaction with the host tissue, from the establishment of infection to the development of infective-stage larva.

METHODOLOGY/PRINCIPAL FINDINGS: Using the Brugia malayi-Aedes aegypti system, we report parasite gene transcription dynamics, which exhibited a highly ordered developmental program consisting of a series of cyclical and state-transitioning temporal patterns. In addition, we contextualized these parasite data in relation to the concurrent dynamics of the host transcriptome. Comparative analyses using uninfected tissues and different host strains revealed the influence of parasite development on host gene transcription as well as the influence of the host environment on parasite gene transcription. We also critically evaluated the life-cycle transcriptome of B. malayi by comparing developmental stages in the mosquito relative to those in the mammalian host, providing insight into gene expression changes underpinning the mosquito-borne parasitic lifestyle of this heteroxenous parasite.

CONCLUSIONS/SIGNIFICANCE: The data presented herein provide the research community with information to design wet lab experiments and select candidates for future study to more fully dissect the whole set of molecular interactions of both organisms in this mosquito-filarial worm symbiotic relationship. Furthermore, characterization of the transcriptional program over the complete life cycle of the parasite, including stages within the mosquito, could help devise novel targets for control strategies.

摘要

背景

寄生虫生物学因其本质特性,若不与宿主生物学相结合便无法被理解;同样,若不考虑寄生虫的活动,宿主反应也无法得到充分解释。然而,由于实验限制,寄生虫 - 宿主系统的分子研究主要是单方面的调查,聚焦于所涉及的其中一方。在此,我们对丝虫寄生虫和宿主蚊子进行了双RNA测序时间进程分析,以更好地理解从感染确立到感染期幼虫发育过程中,寄生虫在宿主组织内发育及与宿主组织相互作用所涉及的过程。

方法/主要发现:利用马来布鲁线虫 - 埃及伊蚊系统,我们报告了寄生虫基因转录动态,其呈现出由一系列周期性和状态转换时间模式组成的高度有序的发育程序。此外,我们将这些寄生虫数据与宿主转录组的同步动态相关联。使用未感染组织和不同宿主菌株的比较分析揭示了寄生虫发育对宿主基因转录的影响以及宿主环境对寄生虫基因转录的影响。我们还通过比较蚊子体内与哺乳动物宿主体内的发育阶段,对马来布鲁线虫的生命周期转录组进行了批判性评估,从而深入了解支撑这种异宿主寄生虫蚊媒寄生生活方式的基因表达变化。

结论/意义:本文提供的数据为研究界提供了信息,以设计湿实验室实验并选择未来研究的候选对象,从而更全面地剖析这种蚊子 - 丝虫共生关系中两种生物的整套分子相互作用。此外,对寄生虫完整生命周期(包括蚊子体内阶段)转录程序的表征,有助于设计新的控制策略靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d844/4031193/0fd292adc039/pntd.0002905.g001.jpg

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