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RNA 作为一种可行的克氏锥虫生存标志物,用于研究寄生虫与三锥猎蝽媒介 Rhodnius prolixus(半翅目,猎蝽科)的相互作用。

RNA as a feasible marker of Trypanosoma cruzi viability during the parasite interaction with the triatomine vector Rhodnius prolixus (Hemiptera, Triatominae).

机构信息

Real Time PCR Platform RPT09A, Laboratory of Molecular Virology, Oswaldo Cruz Institute, Oswaldo Cruz Foundation, Rio de Janeiro, Brazil.

Laboratory of Biochemistry and Physiology of Insects, Oswaldo Cruz Institute, Oswaldo Cruz Foundation, Rio de Janeiro, Brazil.

出版信息

PLoS Negl Trop Dis. 2022 Jul 7;16(7):e0010535. doi: 10.1371/journal.pntd.0010535. eCollection 2022 Jul.

Abstract

A recurring question concerning Trypanosoma cruzi DNA detection/quantification is related to the fact that DNA amplification, by itself, does not differentiate between viable or dead parasites. On the other hand, RNA can be considered a potential molecular marker of pathogens viability. Herein, we developed a quantitative real-time PCR with reverse Transcription (RT-qPCR) to quantify viable T. cruzi in artificially infected Rhodnius prolixus whilst evaluating differences between DNA and mRNA quantification along the insect midgut during 5, 9, 15 and 29 days after feeding. The RT-qPCR presented an improved performance with linearities ranging from 107 to 102 parasites equivalents and 3 to 0.0032 intestine unit equivalents, and efficiencies of 100.3% and 102.8% for both T. cruzi and triatomine targets, respectively. Comparing both RT-qPCR and qPCR, we confirmed that RNA is faster degraded, no longer being detected at day 1 after parasite lysis, while DNA detection was stable, with no decrease in parasite load over the days, even after parasite lysis. We also observed statistical differences between the quantification of the parasite load by DNA and by RNA on day 15 after feeding of experimentally infected R. prolixus. When assessing different portions of the digestive tract, by RT-qPCR, we could detect a statistically significant reduction in the parasite amount in the anterior midgut. Oppositely, there was a statistically significant increase of the parasite load in the hindgut. In conclusion, for this study parasite's viability in R. prolixus digestive tract were assessed targeting T. cruzi mRNA. In addition, differences between DNA and RNA detection observed herein, raise the possibility that RNA is a potential molecular viability marker, which could contribute to understanding the dynamics of the parasite infection in invertebrate hosts.

摘要

有关检测/定量克氏锥虫 DNA 的一个反复出现的问题与这样一个事实有关,即 DNA 扩增本身并不能区分活虫或死虫。另一方面,RNA 可以被认为是病原体存活的潜在分子标志物。在此,我们开发了一种带有反转录(RT-qPCR)的实时定量 PCR,以定量人工感染 Rhodnius prolixus 中的活 T. cruzi,并评估在感染后第 5、9、15 和 29 天期间,在昆虫中肠内 DNA 和 mRNA 定量之间的差异。RT-qPCR 的性能得到了改善,线性范围为 107 至 102 个寄生虫当量和 3 至 0.0032 个肠单位当量,T. cruzi 和三锥虫靶标的效率分别为 100.3%和 102.8%。比较 RT-qPCR 和 qPCR,我们证实 RNA 降解更快,在寄生虫裂解后 1 天不再被检测到,而 DNA 检测则稳定,即使在寄生虫裂解后,寄生虫载量也不会随着时间的推移而减少。我们还观察到在感染实验的 R. prolixus 后第 15 天,通过 DNA 和 RNA 定量检测寄生虫负荷时存在统计学差异。通过 RT-qPCR 评估消化道的不同部位时,我们可以检测到前中肠寄生虫数量的统计学显著减少。相反,后肠的寄生虫负荷则有统计学意义的增加。总之,在这项研究中,通过靶向 T. cruzi mRNA 来评估 R. prolixus 消化道内寄生虫的活力。此外,此处观察到的 DNA 和 RNA 检测之间的差异,提出了 RNA 可能是一种潜在的分子活力标志物的可能性,这可能有助于理解寄生虫在无脊椎动物宿主中的感染动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c79/9307183/c45ca6b7d144/pntd.0010535.g001.jpg

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