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蜱-宿主界面的现实定量视角:生物化学、基因组学、蛋白质组学和转录组学作为蜱唾液腺分泌物完整清单的衡量指标

Quantitative Visions of Reality at the Tick-Host Interface: Biochemistry, Genomics, Proteomics, and Transcriptomics as Measures of Complete Inventories of the Tick Sialoverse.

作者信息

Mans Ben J

机构信息

Epidemiology, Parasites and Vectors, Agricultural Research Council-Onderstepoort Veterinary Research, Pretoria, South Africa.

Department of Veterinary Tropical Diseases, University of Pretoria, Pretoria, South Africa.

出版信息

Front Cell Infect Microbiol. 2020 Sep 11;10:574405. doi: 10.3389/fcimb.2020.574405. eCollection 2020.

Abstract

Species have definitive genomes. Even so, the transcriptional and translational products of the genome are dynamic and subject to change over time. This is especially true for the proteins secreted by ticks at the tick-host feeding interface that represent a complex system known as the sialoverse. The sialoverse represent all of the proteins derived from tick salivary glands for all tick species that may be involved in tick-host interaction and the modulation of the host's defense mechanisms. The current study contemplates the advances made over time to understand and describe the complexity present in the sialoverse. Technological advances at given periods in time allowed detection of functions, genes, and proteins enabling a deeper insight into the complexity of the sialoverse and a concomitant expansion in complexity with as yet, no end in sight. The importance of systematic classification of the sialoverse is highlighted with the realization that our coverage of transcriptome and proteome space remains incomplete, but that complete descriptions may be possible in the future. Even so, analysis and integration of the sialoverse into a comprehensive understanding of tick-host interactions may require further technological advances given the high level of expected complexity that remains to be uncovered.

摘要

物种具有确定的基因组。即便如此,基因组的转录和翻译产物却是动态的,会随时间发生变化。对于蜱虫在蜱 - 宿主取食界面分泌的蛋白质而言尤其如此,这些蛋白质构成了一个被称为唾液蛋白组的复杂系统。唾液蛋白组代表了所有蜱虫物种唾液腺产生的、可能参与蜱 - 宿主相互作用以及调节宿主防御机制的所有蛋白质。当前的研究探讨了随着时间推移在理解和描述唾液蛋白组复杂性方面所取得的进展。特定时期的技术进步使得能够检测功能、基因和蛋白质,从而更深入地洞察唾液蛋白组的复杂性,并且这种复杂性还在不断扩展,目前仍看不到尽头。随着认识到我们对转录组和蛋白质组空间的覆盖仍然不完整,但未来有可能实现完整描述,唾液蛋白组系统分类的重要性凸显出来。即便如此,鉴于仍有待揭示的高度复杂性,要将唾液蛋白组进行分析和整合以全面理解蜱 - 宿主相互作用,可能还需要进一步的技术进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/109a/7517725/89f86293565b/fcimb-10-574405-g0001.jpg

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