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A molecular phylogenetic framework for Bacillus subtilis using genome sequences and its application to Bacillus subtilis subspecies stecoris strain D7XPN1, an isolate from a commercial food-waste degrading bioreactor

机译:利用基因组序列的枯草芽孢杆菌的分子系统发育框架及其在枯草芽孢杆菌亚种Stecoris菌株D7XPN1中的应用

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摘要

A thermophilic, heterotrophic and facultatively anaerobic bacterium designated strain D7XPN1 was isolated from Baku BakuKing™, a commercial food-waste degrading bioreactor (composter). The strain grew optimally at 45 °C (growth range between 24 and 50 °C) and pH 7 (growth pH range between pH 5 and 9) in Luria Broth supplemented with 0.3 % glucose. Strain D7XPN1 tolerated up to 7 % NaCl and showed amylolytic and xylanolytic activities. 16S rRNA gene analysis placed strain D7XPN1 in the cluster represented by Bacillus subtilis and the genome analysis of the 4.1 Mb genome sequence determined using RAST (Rapid Annotation using Subsystem Technology) indicated a total of 5116 genomic features were present of which 2320 features could be grouped into several subsystem categories. Of these, 615 features were related to carbohydrate metabolism which included a range of enzymes with potential in the biodegradation of food wastes, a property consistent with the ecological habitat of the isolate. ANIb (Average Nucleotide Identity based on BLAST) analysis with 49 Bacillus subtilis genomes indicated that it was distantly related to the three currently taxonomically validated B. subtilis subspecies namely B. subtilis subsp. subtilis (95.6 %), B. subtilis subsp. spizizenii (93 %) and B. subtilis subsp. inaquosorum (92 %) and based on our current knowledge warranted that it be included as a separate cluster together with strain JS which it was closely related (98.69 %). The close relationship of strains D7XPN1 and JS is also supported from our results from electronic DNA–DNA Hybridization (e-DDH) studies. Furthermore, our additional in-depth phylogenomic analyses using three different datasets unequivocally supported the creation of a fourth B. subtilis subspecies to include strains D7XPN1 and JS for which we propose strain D7XPN1T (=KCTC 33554T, JCM 30051T) as the type strain, and designate it as B. subtilis subsp. stecoris.
机译:从商业化的食品垃圾降解生物反应器(堆肥器)Baku BakuKing™中分离出了命名为D7XPN1的嗜热,异养和兼性厌氧细菌。在补充有0.3%葡萄糖的Luria Broth中,菌株在45°C(生长范围在24至50°C之间)和pH 7(生长pH范围在pH 5至9)之间最佳生长。菌株D7XPN1耐受高达7%的NaCl,并显示出淀粉分解和木聚糖分解活性。 16S rRNA基因分析将菌株D7XPN1置于枯草芽孢杆菌代表的簇中,并且使用RAST(使用子系统技术进行快速注释)确定的4.1 Mb基因组序列的基因组分析表明,总共存在5116个基因组特征,其中2320个特征可以分组分为几个子系统类别。其中的615个特征与碳水化合物的代谢有关,其中包括一系列对食物垃圾进行生物降解具有潜力的酶,这一特性与分离菌的生态环境一致。用49个枯草芽孢杆菌基因组进行的ANIb(基于BLAST的平均核苷酸同一性)分析表明,它与目前通过分类学验证的三个枯草芽孢杆菌亚种B.subtilis subsp密切相关。枯草芽孢杆菌(95.6%),B.subtilis subsp。 spizizenii(93%)和枯草芽孢杆菌亚种。 inaquosorum(92%)并根据我们目前的知识保证,应将其与紧密相关的JS菌株作为单独的类包含在内(98.69%)。我们的电子DNA-DNA杂交(e-DDH)研究结果也支持D7XPN1和JS菌株的密切关系。此外,我们使用三个不同的数据集进行了进一步的深入系统生物学分析,明确支持创建第四个枯草芽孢杆菌亚种,以包括菌株D7XPN1和JS,我们建议将菌株D7XPN1T(= KCTC 33554T,JCM 30051T)作为类型菌株,以及将其指定为枯草芽孢杆菌亚种。 Stecoris。

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  • 作者

    Adelskov Joseph; Patel Bharat;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 English
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