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Expression profiling and cross-species RNA interference (RNAi) of desiccation-induced transcripts in the anhydrobiotic nematode Aphelenchus avenae

机译:脱水线虫Aphelenchus avenae中干燥诱导的转录本的表达谱和种间RNA干扰(RNAi)

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Background Some organisms can survive extreme desiccation by entering a state of suspended animation known as anhydrobiosis. The free-living mycophagous nematode Aphelenchus avenae can be induced to enter anhydrobiosis by pre-exposure to moderate reductions in relative humidity (RH) prior to extreme desiccation. This preconditioning phase is thought to allow modification of the transcriptome by activation of genes required for desiccation tolerance. Results To identify such genes, a panel of expressed sequence tags (ESTs) enriched for sequences upregulated in A. avenae during preconditioning was created. A subset of 30 genes with significant matches in databases, together with a number of apparently novel sequences, were chosen for further study. Several of the recognisable genes are associated with water stress, encoding, for example, two new hydrophilic proteins related to the late embryogenesis abundant (LEA) protein family. Expression studies confirmed EST panel members to be upregulated by evaporative water loss, and the majority of genes was also induced by osmotic stress and cold, but rather fewer by heat. We attempted to use RNA interference (RNAi) to demonstrate the importance of this gene set for anhydrobiosis, but found A. avenae to be recalcitrant with the techniques used. Instead, therefore, we developed a cross-species RNAi procedure using A. avenae sequences in another anhydrobiotic nematode, Panagrolaimus superbus, which is amenable to gene silencing. Of 20 A. avenae ESTs screened, a significant reduction in survival of desiccation in treated P. superbus populations was observed with two sequences, one of which was novel, while the other encoded a glutathione peroxidase. To confirm a role for glutathione peroxidases in anhydrobiosis, RNAi with cognate sequences from P. superbus was performed and was also shown to reduce desiccation tolerance in this species. Conclusions This study has identified and characterised the expression profiles of members of the anhydrobiotic gene set in A. avenae. It also demonstrates the potential of RNAi for the analysis of anhydrobiosis and provides the first genetic data to underline the importance of effective antioxidant systems in metazoan desiccation tolerance.
机译:背景技术某些生物可以通过进入被称为“脱水生物病”的悬浮动画状态而在极端干燥中幸存下来。通过在极端干燥之前将相对湿度(RH)预先降低适度降低,可以诱导自由生活的噬菌线虫Aphelenchus avenae进入脱水生物。认为该预适应阶段允许通过激活脱水耐受性所需的基因来修饰转录组。结果为了鉴定此类基因,创建了一组表达序列标签(EST),这些序列标签富含在预处理过程中在青蒿中上调的序列。选择了数据库中具有明显匹配的30个基因的子集,以及许多显然新颖的序列,以供进一步研究。一些可识别的基因与水分胁迫相关,例如,编码两个与晚期胚胎发生丰富(LEA)蛋白家族相关的新亲水蛋白。表达研究证实,EST小组成员会因蒸发失水而被上调,而且大多数基因也是由渗透胁迫和冷诱导的,而受热抑制的基因较少。我们尝试使用RNA干扰(RNAi)来证明该基因组对脱水生物的重要性,但发现燕麦曲霉对所用技术具有顽固性。因此,相反,我们开发了另一种非水生线虫Panagrolaimus superbus中使用A. avenae序列的跨物种RNAi程序,该程序可进行基因沉默。在筛选的20种燕麦农杆菌EST中,观察到两条序列的脱水现象在处理过的P. superbus种群中的存活率显着降低,其中一个序列是新的,而另一个编码谷胱甘肽过氧化物酶。为了证实谷胱甘肽过氧化物酶在脱水生物中的作用,进行了具有来自超级体育假单胞菌同源序列的RNAi,并且还显示了该物种降低了干燥耐性。结论这项研究已经鉴定并鉴定了A. avenae中的抗生基因集成员的表达谱。它还证明了RNAi在脱水生物分析中的潜力,并提供了第一个遗传数据,强调了有效的抗氧化剂系统在后生动物耐干燥性中的重要性。

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