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Evidence of a tick RNAi pathway by comparative genomics and reverse genetics screen of targets with known loss-of-function phenotypes in Drosophila

机译:通过对果蝇已知功能丧失表型的靶标进行比较基因组学和逆向遗传学筛选的壁虱RNAi途径的证据

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Background The Arthropods are a diverse group of organisms including Chelicerata (ticks, mites, spiders), Crustacea (crabs, shrimps), and Insecta (flies, mosquitoes, beetles, silkworm). The cattle tick, Rhipicephalus (Boophilus) microplus, is an economically significant ectoparasite of cattle affecting cattle industries world wide. With the availability of sequence reads from the first Chelicerate genome project (the Ixodes scapularis tick) and extensive R. microplus ESTs, we investigated evidence for putative RNAi proteins and studied RNA interference in tick cell cultures and adult female ticks targeting Drosophila homologues with known cell viability phenotype.Results We screened 13,643 R. microplus ESTs and I. scapularis genome reads to identify RNAi related proteins in ticks. Our analysis identified 31 RNAi proteins including a putative tick Dicer, RISC associated (Ago-2 and FMRp), RNA dependent RNA polymerase (EGO-1) and 23 homologues implicated in dsRNA uptake and processing. We selected 10 R. microplus ESTs with >80% similarity to D. melanogaster proteins associated with cell viability for RNAi functional screens in both BME26 R. microplus embryonic cells and female ticks in vivo. Only genes associated with proteasomes had an effect on cell viability in vitro. In vivo RNAi showed that 9 genes had significant effects either causing lethality or impairing egg laying.Conclusion We have identified key RNAi-related proteins in ticks and along with our loss-of-function studies support a functional RNAi pathway in R. microplus. Our preliminary studies indicate that tick RNAi pathways may differ from that of other Arthropods such as insects.
机译:背景节肢动物是由多种生物组成的,包括Chelicerata(tic,螨,蜘蛛),甲壳纲(蟹,虾)和Insecta(苍蝇,蚊子,甲虫,蚕)。牛tick Rhipicephalus(Boophilus)microplus是一种经济上重要的牛寄生虫,影响着全世界的牛业。利用第一个Chelicerate基因组计划(肩x小I)和广泛的R. microplus EST的序列读取的可用性,我们调查了推定RNAi蛋白的证据,并研究了tick细胞培养和靶向果蝇同源物且已知细胞的成年雌性RNA的RNA干扰。结果我们筛选了13,643个微小R. microplus ESTs和肩I鱼I. scapularis基因组读数,以鉴定tick中与RNAi相关的蛋白。我们的分析鉴定了31种RNAi蛋白,包括推定的Dicer Dicer,与RISC相关的Ago-2和FMRp,RNA依赖性RNA聚合酶(EGO-1)和23种与dsRNA摄取和加工有关的同源物。我们选择了10个与R. melanogaster蛋白具有> 80%相似性的R. microplus EST,这些蛋白与BME26 R. microplus胚胎细胞和雌性tick体内RNAi功能筛选的细胞活力有关。仅与蛋白酶体相关的基因在体外对细胞活力有影响。体内RNAi显示9个基因对导致致死率或产卵能力均具有显著作用。结论我们已经在壁虱中鉴定出了关键的RNAi相关蛋白,并且我们的功能丧失研究也支持了R. microplus中的功能性RNAi途径。我们的初步研究表明,壁虱RNAi途径可能与其他节肢动物(如昆虫)的途径不同。

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