首页> 外文期刊>Journal of Food & Industrial Microbiology >Specificity and performance evaluation of a novel RNA-FISH probe for the identification of Rhodotorula sp., in cultural heritage materials- P Brancoévora University
【24h】

Specificity and performance evaluation of a novel RNA-FISH probe for the identification of Rhodotorula sp., in cultural heritage materials- P Brancoévora University

机译:新型RNA鱼探针的特异性和性能评价,用于鉴定rhodotorula sp。,文化遗产材料 - Pbrancoévora大学

获取原文
           

摘要

Bio deterioration of cultural heritage (CH) materials (e.g., paper, marble, lime, mortar, parchment, metal, glass) was neglected for a long time since it was previously believed that it was only due to chemical and physical processes. However, over the last decades, it has been proven that the action of microorganisms is a critical factor in the deterioration process. Biodeteriogenic microorganisms cause serious aesthetical and structural damages in CH materials of inestimable value. Some of them can synthesize carotenoid compounds causing pink staining such as Rhodotorula sp., this yeast has been associated with the deteriorative effects observed in the évora Cathedral, Portugal. To distinguish Rhodotorula sp., from other microorganisms that produce the same type of alterations on CH materials, proper identification methods must be applied. RNAfluorescence and in situ hybridization (RNA-FISH) has the potential to specifically identify the target microorganism of interest in complex microbial communities (it is based on hybridization of fluorescently-labeled oligonucleotide probes targeting to specific regions of the ribosomal RNA). Thus, the aim of this study was to design a novel genus specific RNA-FISH probe against Rhodotorula sp., and to evaluate its specificity and performance both in silico and experimentally. This will contribute for facilitating Rhodotorula sp., identification in degraded CH materials by RNAFISH. A novel probe for Rhodotorula sp., (L-SRh160-a-A-19-ATTO 647N, Rh160-ATTO 647N) was designed using decipher program. Its specificity was analysed in silico by nucleotide BLAST and its performance in terms of characteristics of the probe e.g., GC content and temperature of hairpin structures by oligonucleotide properties calculator oligocalc and hybridization efficiency by math FISH program. The experimental performance and specificity were evaluated by constructing the fluorescence-signal-response / formamide concentration curve for the target and non-target yeast (Cryptococcus adeliensis) and by testing the probe against several other non-target CH biodeteriogenic microorganisms. To do this, a previously described RNA-FISH procedure was applied and the results were analysed by flow cytometry (FC) and by epifluorescence microscopy (EM). In silico analyses of Rh160-ATTO 647N indicated that this probe has a high coverage and specificity for the target genus (796 matches of the target organism in 1000 sequences and only one match for organisms from the same ecosystem of the target organism, Cryptococcus sp.,); fulfills the criteria for being an RNA-FISH probe e.g., 52.60% of GC content and temperature of hairpin structures below hybridization temperature and shows a high maximal theoretical hybridization efficiency with Rhodotorula sp., (99.92% with 0% of formamide). The experimental results were in agreement with these in silico analyses revealing that Rh160-ATTO 647 N probe has a high specificity and performance without formamide. Maximal strong and intense fluorescence signals were detected by FC for the target and absence of signal for all the non-target microorganisms tested. Therefore, this study contributes to an easy and fast identification of Rhodotorula sp., yeast involved in the CH bio deterioration process by RNA-FISH. This will be advantageous for CH safeguard.
机译:文化遗产(CH)材料的生物恶化(例如,纸,大理石,石灰,砂浆,羊皮纸,金属,玻璃)很长一段时间,因为它以前认为它仅是由于化学和物理过程。然而,在过去的几十年中,已经证明了微生物的作用是恶化过程中的一个关键因素。生物瘤性微生物在无数值的CH材料中引起严重的美学和结构损伤。其中一些可以合成类胡萝卜素化合物,导致粉红色染色,例如rhodotorula sp。,这种酵母与葡萄牙Évora大教堂观察到的劣化效果有关。区分rhodotorula sp。,来自其他微生物,在其他微生物中产生相同类型的CH材料改变,必须施加适当的识别方法。 Rnaflofloescence和原位杂交(RNA鱼)有可能特异性地鉴定对复杂的微生物群落中感兴趣的目标微生物(其基于靶向核糖体RNA的特定区域的荧光标记的寡核苷酸探针的杂交)。因此,本研究的目的是设计一种针对rhodotorula sp的特异性RNA鱼探针,并在硅和实验中评估其特异性和性能。这将有助于促进rhodotorula sp。,通过rnafish识别Digaded Ch Matersic。使用破译程序设计了一种用于rhodotorula SP的新型探针,(L-SRH160-A-A-19-ATTO 647N,RH160-ATTO 647N)。通过核苷酸爆炸和其在探针的特征方面分析其特异性,其特征在于探针的特征,通过寡核苷酸特性计算器Oligocalc和数学鱼类程序的杂交效率,GC含量和高温。通过构建靶和非靶酵母(Cryptococcus Adeliensis)的荧光信号 - 响应/甲​​酰胺浓度曲线来评估实验性能和特异性,并通过将探针对抗几种其他非靶线生物偶联微生物进行探讨来评估。为此,应用了先前描述的RNA鱼类程序,并通过流式细胞术(Fc)和通过离荧光显微镜(EM)分析结果。在RH160-ATTO 647N的硅分析中表明该探针对靶属的高覆盖率和特异性(在1000个序列中的目标生物796匹配,并且只有一个来自靶生物体的生物系统,Cryptococcus Sp的生物体匹配。 ,);满足作为RNA鱼探针的标准,例如,GC含量的52.60%和发夹结构的温度低于杂交温度,并用rhodotorula sp显示出高的最大理论杂交效率,(99.92%,甲酰胺的0%99.92%)。实验结果与这些在硅分析中吻合,揭示RH160-ATTO 647 N探针具有高特异性和性能而没有甲酰胺。通过Fc检测到最大强度强和强烈的荧光信号,用于靶标,并且对所有测试的所有非靶微生物的信号没有信号。因此,该研究有助于简单快速地识别rhodotorula sp。,酵母参与Ch生物劣化过程的RNA鱼。这将是CH维护的有利。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号