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探究从蜂蜜中分离得到的 spp. Sy-1 的基因组。

Exploring the genome of spp. Sy-1 isolated from honey.

机构信息

Department of Bioscience, Faculty of Science, Universiti Teknologi Malaysia, Skudai, Johor, Malaysia.

Enzyme Technology and Green Synthesis Group, Universiti Teknologi Malaysia, Skudai, Johor, Malaysia.

出版信息

PeerJ. 2022 Mar 23;10:e13053. doi: 10.7717/peerj.13053. eCollection 2022.

Abstract

BACKGROUND

Honey produced by is highly preferred among consumers due to its high-value as a functional food and beneficial lactic acid bacteria (LAB) reservoir. Fructophilic lactic acid bacteria (FLAB) are a group of LAB with unique growth characteristics and are regarded as promising producers of bioactive compounds. Hence, it is not surprising that LAB, especially FLAB, may be involved with the excellent bioactivity of honey. With the trending consumer preference for honey coupled with increasing awareness for healthy food, the genomic background of FLAB isolated from this honey must, therefore, be clearly understood. In this study, one FLAB strain designated as Sy-1 was isolated from freshly collected honey. Its FLAB behavior and genomic features were investigated to uncover functional genes that could add value to functional food.

METHODS

The fructophilic characteristics of strain Sy-1 were determined, and the genome was sequenced using Illumina iSeq100 and Oxford Nanopore. The average nucleotide identity and phylogenetic analyses based on 16S rRNA, 92 core genes, and whole-genome sequence were performed to unravel the phylogenetic position of strain Sy-1. NCBI Prokaryotic Genome Annotation Pipeline annotated the genome, while the EggNOG-mapper, BLASTKoala, and GHOSTKoala were used to add functional genes and pathways information.

RESULTS

Strain Sy-1 prefers D-fructose over D-glucose and actively metabolizes D-glucose in the presence of electron acceptors. Genomic annotation of strain Sy-1 revealed few genes involved in carbohydrate transport and metabolism, and partial deletion of gene, in line with the characteristic of FLAB. The 16S rRNA gene sequence of strain Sy-1 showed the highest similarity to unknown LAB species isolated from the gut of honeybees. The phylogenetic analyses discovered that strain Sy-1 belonged to the family and formed a separate branch closer to type strain from the genera of and The ANI analysis showed the similarity of the closest relative, Hlig3. The assembled genome of Sy-1 contains 3 contigs with 2.03 Mbp and a 41% GC content. A total of 1,785 genes were identified, including 1,685 protein-coding genes, 68 tRNA, and 15 rRNA. Interestingly, strain Sy-1 encoded complete genes for the biosynthesis of folate and riboflavin. High-performance liquid chromatography analysis further confirmed the high production of folic acid (1.346 mg/L) by Sy-1.

DISCUSSION

Based on phylogenetic and biochemical characteristics, strain Sy-1 should be classified as a novel genus in the family of and a new member of FLAB. The genome information coupled with experimental studies supported the ability of strain Sy-1 to produce high folic acid. Our collective findings support the suitable application of FLAB strain Sy-1 in the functional food and pharmaceutical industries.

摘要

背景

由于其作为功能性食品的高价值和有益的乳酸菌(LAB)储备, 生产的蜂蜜深受消费者喜爱。嗜果糖乳酸菌(FLAB)是一组具有独特生长特性的 LAB,被认为是生物活性化合物的有前途的生产者。因此,LAB,尤其是 FLAB,可能与 的优异生物活性有关,这并不奇怪。随着消费者对 蜂蜜的偏好趋势以及对健康食品意识的提高,因此必须清楚地了解从这种蜂蜜中分离出的 FLAB 的基因组背景。在这项研究中,从新鲜采集的 蜂蜜中分离出一株嗜果糖乳酸菌菌株命名为 Sy-1。研究了其嗜果糖特性,并使用 Illumina iSeq100 和 Oxford Nanopore 对其基因组进行了测序。基于 16S rRNA、92 个核心基因和全基因组序列的平均核苷酸同一性和系统发育分析,揭示了菌株 Sy-1 的系统发育位置。NCBI 原核基因组注释管道对基因组进行了注释,而 EggNOG-mapper、BLASTKoala 和 GHOSTKoala 用于添加功能基因和途径信息。

结果

菌株 Sy-1 优先代谢 D-果糖而不是 D-葡萄糖,并在存在电子受体时积极代谢 D-葡萄糖。菌株 Sy-1 的基因组注释显示,参与碳水化合物运输和代谢的基因很少,并且与 FLAB 的特征一致,存在 基因的部分缺失。菌株 Sy-1 的 16S rRNA 基因序列与从蜜蜂肠道中分离出的未知 LAB 物种具有最高的相似性。系统发育分析发现,菌株 Sy-1 属于 科,形成了一个单独的分支,与 属和 属的模式菌株更接近。ANI 分析表明,最接近的亲缘关系是 Hlig3。Sy-1 的组装基因组包含 3 个 2.03 Mbp 的 contigs 和 41%的 GC 含量。共鉴定出 1785 个基因,包括 1685 个蛋白编码基因、68 个 tRNA 和 15 个 rRNA。有趣的是,菌株 Sy-1 编码了叶酸和核黄素生物合成的完整基因。高效液相色谱分析进一步证实了 Sy-1 高产叶酸(1.346mg/L)。

讨论

基于系统发育和生化特性,菌株 Sy-1 应归类为 科的一个新属,也是嗜果糖乳酸菌(FLAB)的新成员。基因组信息结合实验研究支持菌株 Sy-1 生产高叶酸的能力。我们的综合研究结果支持在功能食品和制药行业中应用 FLAB 菌株 Sy-1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6440/8957270/37587ed01187/peerj-10-13053-g001.jpg

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