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Sialome diversity of ticks revealed by RNAseq of single tick salivary glands

机译:tick的唾液腺RNAseq揭示了tick的唾液腺多样性

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摘要

Ticks salivate while feeding on their hosts. Saliva helps blood feeding through host anti-hemostatic and immunomodulatory components. Previous transcriptomic and proteomic studies revealed the complexity of tick saliva, comprising hundreds of polypeptides grouped in several multi-genic families such as lipocalins, Kunitz-domain containing peptides, metalloproteases, basic tail secreted proteins, and several other families uniquely found in ticks. These studies also revealed that the composition of saliva changes with time; expression of transcripts from the same family wax and wane as a function of feeding time. Here, we examined whether host immune factors could influence sialome switching by comparing sialomes of ticks fed naturally on a rabbit, to ticks artificially fed on defibrinated blood depleted of immune components. Previous studies were based on transcriptomes derived from pools of several individuals. To get an insight into the uniqueness of tick sialomes, we performed transcriptomic analyses of single salivary glands dissected from individual adult female I. ricinus ticks. Multivariate analysis identified 1,279 contigs differentially expressed as a function of time and/or feeding mode. Cluster analysis of these contigs revealed nine clusters of differentially expressed genes, four of which appeared consistently across several replicates, but five clusters were idiosyncratic, pointing to the uniqueness of sialomes in individual ticks. The disclosure of tick quantum sialomes reveals the unique salivary composition produced by individual ticks as they switch their sialomes throughout the blood meal, a possible mechanism of immune evasion.
机译:cks在觅食寄主时会流涎。唾液通过宿主抗止血和免疫调节成分帮助补血。先前的转录组学和蛋白质组学研究揭示了sal唾液的复杂性,包括数百个多肽,这些多肽被分组在几个多基因家族中,例如脂蛋白,含Kunitz域的肽,金属蛋白酶,基本的尾部分泌蛋白以及在tick中独特发现的其他几个家族。这些研究还表明,唾液的成分会随着时间而变化。同一家族蜡和function的转录本表达与进食时间的关系。在这里,我们通过比较自然饲养在兔子身上的tick的唾液腺与人工喂养在消耗了免疫成分的去纤维化血液中的tick,来检查宿主免疫因素是否会影响唾液腺的转换。先前的研究是基于从几个人的集合中获得的转录组。为了深入了解壁虱唾液腺的独特性,我们对从成年雌性蓖麻I.in壁虱中分离出的单个唾液腺进行了转录组学分析。多变量分析确定了1,279个重叠群,它们是时间和/或进食模式的函数。对这些重叠群的聚类分析揭示了九个差异表达基因的聚类,其中四个在多个重复样本中一致出现,但是五个聚类是特异的,表明唾液腺在各个壁虱中的独特性。 quantum虫量子唾液腺的揭示揭示了个体tick虫在整个血粉中切换其唾液腺时产生的独特唾液成分,这是免疫逃逸的可能机制。

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