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A novel quantitative real-time PCR diagnostic assay for seal heartworm (Acanthocheilonema spirocauda) provides evidence for possible infection in the grey seal (Halichoerus grypus)

机译:一种新颖的定量实时PCR诊断海豹丝虫(Acanthocheilonema spirocauda)的方法为灰色海豹(Halichoerus grypus)的可能感染提供了证据

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摘要

The distinct evolutionary pressures faced by Pinnipeds have likely resulted in strong coevolutionary ties to their parasites (Leidenberger et al., 2007). This study focuses on the phocid seal filarial heartworm species Acanthocheilonema spirocauda. A. spirocauda is known to infect a variety of phocid seals, but does not appear to be restricted to a single host species (Measures et al., 1997; Leidenberger et al., 2007; Lehnert et al., 2015). However, to date, seal heartworm has never been reported in grey seals (Halichoerus grypus) (Measures et al., 1997; Leidenberger et al., 2007; Lehnert et al., 2015). The proposed vector for seal heartworm is Echinophthirius horridus, the seal louse. Seal lice are known to parasitize a wide array of phocid seal species, including the grey seal. With the advent of climate change, disease burden is expected to increase across terrestrial and marine mammals (Harvell et al., 2002). Accordingly, increased prevalence of seal heartworm has recently been reported in harbor seals (Phoca vitulina) (Lehnert et al., 2015). Thus, the need for improved, rapid, and cost-effective diagnostics is urgent. Here we present the first A. spirocauda-specific rapid diagnostic test (a quantitative real-time PCR assay), based on a highly repetitive genomic DNA repeat identified using whole genome sequencing and subsequent bioinformatic analysis. The presence of an insect vector provides the opportunity to develop a multifunctional diagnostic tool that can be used not only to detect the parasite directly from blood or tissue specimens, but also as a molecular xenomonitoring (XM) tool that can be used to assess the epidemiological profile of the parasite by screening the arthropod vector. Using this assay, we provide evidence for the first reported case of seal heartworm in a grey seal.
机译:Pinnipeds面临的独特的进化压力很可能导致了与寄生虫的紧密进化联系(Leidenberger等,2007)。这项研究侧重于phoicd密封丝状丝虫物种Acanthocheilonema spirocauda。已知螺旋藻可感染多种变种海豹,但似乎并不局限于单个寄主物种(Measures等,1997; Leidenberger等,2007; Lehnert等,2015)。但是,迄今为止,尚未见到灰海豹(Halichoerus grypus)中出现海豹丝虫的报道(Measures等,1997; Leidenberger等,2007; Lehnert等,2015)。拟定的海豹丝虫病媒介是海豹虱Echinophthirius horridus。公知海豹虱子寄生了包括灰色海豹在内的许多种类的phoicd海豹。随着气候变化的到来,预计陆地和海洋哺乳动物的疾病负担会增加(Harvell等,2002)。因此,最近有报道说海豹(Phoca vitulina)中海豹丝虫的患病率增加(Lehnert et al。,2015)。因此,迫切需要改进,快速和具有成本效益的诊断。在这里,我们基于使用全基因组测序和后续生物信息学分析鉴定出的高度重复的基因组DNA重复序列,首次提出了螺旋藻特异性快速诊断测试(定量实时PCR分析)。昆虫载体的存在提供了开发多功能诊断工具的机会,该工具不仅可以直接从血液或组织标本中检测出寄生虫,而且还可以用作可用于评估流行病学的分子异种监测(XM)工具通过筛选节肢动物的载体的寄生虫的轮廓。使用这种测定方法,我们为灰色海豹首次报道的海豹丝虫病例提供了证据。

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