Larini Ilaria, Ferrara Massimo, Troiano Eleonora, Gatto Veronica, Mulè Giuseppina, Vitulo Nicola, Capozzi Vittorio, Salvetti Elisa, Felis Giovanna E, Torriani Sandra
Department of Biotechnology, University of Verona, Strada Le Grazie 15, Ca' Vignal 2, 37134, Verona, VR, Italy.
Institute of Sciences of Food Production (ISPA), National Research Council (CNR), Via Amendola 122/O, 70126, Bari, Italy.
Appl Microbiol Biotechnol. 2025 May 29;109(1):128. doi: 10.1007/s00253-025-13515-0.
Metschnikowia pulcherrima includes strains of applied agro-food interest, particularly due to the antimicrobial activity against plant pathogens, contribution to the aroma of fermented beverages, and preliminary evidence related to probiotic activity. This biotechnological relevance sheds new light of interest on the biology of this yeast. To better understand and expand its biotechnological potential and applicability, the genomes of M. pulcherrima NRRL Y-7111, NRRL Y-48695, CBS 10357, and NRRL Y-48712 were sequenced, and de-novo assembled. Between 10,671 and 14,548 genes were predicted and the cooperative genomic analyses were integrated with experimental assessments relating to traits relevant for biotechnological application and safety. In silico and in vitro safety assessment revealed intermediate sensitivity for itraconazole; furthermore, variants of the genes related to pulcherrimin production and transport were found in all the genomes. Moreover, an arsenal of carbohydrate-active enzymes (CAZymes) was unravelled, and their predicted localization was investigated. This study expands the body of knowledge on M. pulcherrima, including traits relevant for defining its safety as a bioresource, which is a pivotal aspect for its possible inclusion in the European Food Safety Authority (EFSA) Qualified Presumption of Safety (QPS) list and its application in REgulated food/feed PROducts (REPRO) both in the European Union & aligned European countries. KEY POINTS: • A pipeline for genomic characterisation and safety assessment of unconventional yeasts, using M. pulcherrima as a model species was developed. • M. pulcherrima strains can be considered safe and safety data can be used to develop a body of knowledge to include M. pulcherrima in EFSA QPS list. • Analysis of the predicted localization of CAZymes allowed the detection of compounds as potential biological control agents.
美极梅奇酵母包含具有农用食品应用价值的菌株,特别是因其对植物病原体具有抗菌活性、对发酵饮料的香气有贡献以及与益生菌活性相关的初步证据。这种生物技术相关性为该酵母的生物学特性带来了新的研究亮点。为了更好地理解并拓展其生物技术潜力和适用性,对美极梅奇酵母NRRL Y - 7111、NRRL Y - 48695、CBS 10357和NRRL Y - 48712的基因组进行了测序和从头组装。预测出10671至14548个基因,并将协同基因组分析与有关生物技术应用和安全性相关性状的实验评估相结合。计算机模拟和体外安全性评估显示其对伊曲康唑具有中等敏感性;此外,在所有基因组中均发现了与嗜铁素产生和运输相关的基因变体。此外,还解析了一系列碳水化合物活性酶(CAZymes),并研究了它们的预测定位。本研究扩展了关于美极梅奇酵母的知识体系,包括与其作为生物资源的安全性相关的性状,这是其可能被纳入欧洲食品安全局(EFSA)合格安全推定(QPS)名单以及在欧盟和 aligned European countries的监管食品/饲料产品(REPRO)中应用的关键方面。关键点:• 开发了一种以美极梅奇酵母为模型物种的非常规酵母基因组表征和安全性评估流程。• 美极梅奇酵母菌株可被认为是安全的,并且安全数据可用于建立知识体系以将美极梅奇酵母纳入EFSA QPS名单。• 对CAZymes预测定位的分析有助于检测作为潜在生物防治剂的化合物。