首页> 外文期刊>World Journal of Microbiology & Biotechnology >Examination of novel Aureobasidium pullulans isolates dominating apple microflora and assessing their potential for apple juice spoilage
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Examination of novel Aureobasidium pullulans isolates dominating apple microflora and assessing their potential for apple juice spoilage

机译:考试新型化亚哌糊子藜普拉兰人分离占据苹果微生物的分离,并评估它们对苹果汁腐败的潜力

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There is very little up to date information regarding apple microflora so in the current study we decided to address that issue and assess whether dominant fungi which reside in fruit might spoil apple juice. Microorganisms were isolated from apples of Koksa Grska harvested in the middle of October in 2016 and 2017. Identification of isolates was based on the sequencing of ribosomal DNA. Some isolates were characteristic for a particular year but in both years apple microflora was dominated by Aureobasidium pullulans. Based on phylogenetic analysis it was stated that only one isolate (LW81) was closely related to strains which are already described in available databases. All other isolates collected in the current study differed significantly from sequences stored in databases, tending to form a common cluster. It was possible to predict secondary structure of ITS2 region only for the isolate LW81, while we managed to establish the length and location of 5.8S gene in Rfam database for all sequences. A. pullulans is known exopolysaccharide producer so obtained microorganisms were tested for their ability to synthesise those substances on Czapek-Dox agar. The strain which proved to be the most significant exopolysaccharide producer (isolate LW14) was inoculated in the sterilised apple juice at three different initial cell number (100, 1000 and 10,000 cfu/ml) and subjected to pasteurisation. In all cases pasteurisation eliminated fungal growth effectively, therefore A. pullulans strains should not pose any risk to the quality of pasteurised apple juices.
机译:关于Apple Microflora的迄今为止,在目前的研究中,我们决定解决该问题并评估居住在水果中的主要真菌是否可能破坏苹果汁。从2016年10月中旬收获的Koksa Grska的苹果中分离出微生物。分离株的鉴定是基于核糖体DNA的测序。一些分离物对特定年份的特征是特征,但两年中,苹果微生物的苹果群由金属咔盐钙蛋白占主导地位。基于系统发育分析,据称只有一种分离物(LW81)与现有数据库中已经描述的菌株密切相关。当前研究中收集的所有其他分离株从存储在数据库中的序列中显着不同,趋于形成共同的群集。可以仅预测ITS2区域的二次结构,仅用于隔离LW81,而我们设法在RFAM数据库中为所有序列建立5.8S基因的长度和位置。 A.普拉纳人是已知的外偶糖生产商,得到了获得的微生物,以便它们在Czapek-Dox琼脂上合成那些物质的能力。被证明是最重要的外偶糖生产商(分离LW14)的菌株在三种不同的初始细胞数(100,1000和10,000cfu / ml)中接种在灭菌的苹果汁中,并进行巴氏灭菌。在所有情况下,巴氏杀菌消除了真菌生长,因此A.普拉纳人应突然不受巴氏菌苹果汁的质量造成任何风险。

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