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基于内部转录间隔区(ITS)序列的多酸奶加工厂真菌分离株的特征分析-案例研究。

Internal transcribed spacer (ITS) sequence-based characterization of fungal isolates from multiple yogurt facilities-A case study.

机构信息

Milk Quality Improvement Program, Department of Food Science, Cornell University, Ithaca, NY 14853.

Milk Quality Improvement Program, Department of Food Science, Cornell University, Ithaca, NY 14853.

出版信息

J Dairy Sci. 2019 Apr;102(4):3646-3653. doi: 10.3168/jds.2018-15636. Epub 2019 Feb 22.

Abstract

Fungal spoilage remains a significant issue in dairy product quality, especially for cultured dairy products such as yogurt formulated without preservatives such as potassium sorbate. Fungal contamination can occur throughout the processing continuum, from the dairy farm environment to the finished product processing environment. As molecular characterization of fungal isolates is used more frequently, we obtained fungal isolates obtained in 2 yogurt processing facilities as part of routine fungal testing of raw materials (e.g., fruit preparations, added ingredients), in-process product samples, environmental samples (e.g., air plates, equipment surfaces such as valves, face plates, air nozzles), and finished product samples, to determine whether internal transcribed spacer (ITS) barcoding data would be helpful to support source tracking of fungal contamination issues. Internal transcribed spacer PCR amplification and sequencing allowed us to classify the 852 isolates from these 2 facilities into 200 unique ITS allelic types (AT), representing the phyla Ascomycota (743 isolates), Basidiomycota (97 isolates), and Mucoromycota (12 isolates). Thirty ITS AT were isolated from both facilities; 62 and 108 ITS AT were isolated from only facility A or only facility B, respectively. Nine ITS AT were each represented by more than 20 isolates; these AT comprised 53% of the 852 isolates. The considerable diversity of fungal isolates even within a single facility illustrates the challenge associated with controlling fungal contamination of dairy products. The ITS barcoding technique, however, did show promise for facilitating the source tracking of fungal contamination, particularly for ITS AT over-represented in a given facility. For example, we found evidence for equipment-specific reservoirs for 2 AT (14 and 219) in facility B. Our data suggest that despite its limited discriminatory power, ITS sequencing can provide initial information that can help trace fungal contamination along the processing continuum. However, development and implementation of discriminatory subtyping methods will be needed to further improve the ability to identify sources of fungal contamination in dairy facilities. Developing and implementing sampling plans that comprehensively capture yeast and mold diversity in a given processing facility remain a considerable challenge.

摘要

真菌腐败仍然是乳制品质量的一个重大问题,特别是对于没有添加山梨酸钾等防腐剂的培养乳制品,如酸奶。真菌污染可能发生在整个加工过程中,从奶牛场环境到成品加工环境。随着对真菌分离物的分子特征分析的应用越来越广泛,我们从 2 个酸奶加工设施中获得了真菌分离物,这些分离物是作为原材料(如水果制剂、添加成分)、过程中产品样品、环境样品(如空气平板、阀门、面板、空气喷嘴等设备表面)和成品样品的常规真菌检测的一部分获得的,以确定内部转录间隔区(ITS)条形码数据是否有助于支持真菌污染问题的来源追踪。内部转录间隔区 PCR 扩增和测序使我们能够将这 2 个设施的 852 个分离物分为 200 个独特的 ITS 等位基因类型(AT),代表子囊菌门(743 个分离物)、担子菌门(97 个分离物)和毛霉门(12 个分离物)。30 个 ITS AT 是从这 2 个设施中分离出来的;分别有 62 个和 108 个 ITS AT 仅从设施 A 或设施 B 中分离出来。9 个 ITS AT 每个都代表了 20 多个分离物;这些 AT 占 852 个分离物的 53%。即使在单个设施内,真菌分离物的多样性也说明了控制乳制品中真菌污染的挑战。然而,ITS 条形码技术确实显示出了促进真菌污染来源追踪的潜力,特别是对于在给定设施中过度表达的 ITS AT。例如,我们在设施 B 中发现了 2 个特定设备 AT(14 和 219)的储库证据。我们的数据表明,尽管 ITS 测序的鉴别力有限,但它可以提供初始信息,帮助跟踪加工过程中的真菌污染。然而,需要开发和实施具有鉴别力的亚型方法,以进一步提高识别乳制品设施中真菌污染来源的能力。开发和实施全面捕获给定处理设施中酵母和霉菌多样性的采样计划仍然是一个相当大的挑战。

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