Biochemical,从巴西土壤中分离出的大量有氧内孢子形成细菌的生理和分子特征

IF 0.7 Q4 BIODIVERSITY CONSERVATION
Paulo Henrique Rosa Martins, L. Rabinovitch, Juliana Capela de Orem, Waldeyr M. C. Silva, Felipe de Araujo Mesquita, Maria Inês André de Magalhães, Danilo de Andrade Cavalcante, A. M. Vivoni, Edmar Justo de Oliveira, Vera Cristina Pessoa de Lima, J. Brito, M. T. De-Souza
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引用次数: 0

摘要

好氧内孔形成菌(AEFB)由芽孢杆菌属和相关属组成,长期以来一直被认为是土壤细菌群落的重要组成部分。AEFB的广泛多样性使得适当的分类和概括成为一项具有挑战性的任务。我们之前从巴西土壤中分离出312株AEFB菌株,我们将其命名为SDF(Solo do Distrito Federal)菌株。为了更好地了解SDF的多样性并探索其生物技术潜力,我们在这项工作中进行了30项测试,研究了这312种环境菌株的生化和生理特征。其中,16S rRNA基因序列将238个SDF菌株分离为芽孢杆菌科的4个属和Paenibacillaceae的2个属。芽孢杆菌属最为普遍,其次是Paenibacillus属。我们使用热图中表示的基于Pearson相关性的聚类总结了选定SDF菌株之间的表型测试关系。在实践中,生物化学和生理图谱通常比分子数据更不具有歧视性,并且可能由于性状的丧失而不稳定。尽管这些测试反应在物种内并非普遍呈阳性或阴性,但它们可能定义生物型,并成为有效的菌株标记,从而提高未知样本鉴定的准确性。它还可以帮助选择样本中最具代表性的表型。与其他表型和基因型数据一起,本结果对于在多相方法范围内对SDF菌株进行稳健分类具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biochemical, physiological, and molecular characterisation of a large collection of aerobic endospore-forming bacteria isolated from Brazilian soils
The aerobic endospore-forming bacteria (AEFB) comprise species of Bacillus and related genera and have long been regarded as prominent constituents of the soil bacterial community. The wide diversity of AEFB renders appropriate categorisation and generalisations a challenging task. We previously isolated 312 AEFB strains from Brazilian soils that we designated SDF (Solo do Distrito Federal) strains. To better understand the SDF diversity and explore their biotechnological potential, we addressed the biochemical and physiological profiles of these 312 environmental strains by performing 30 tests in this work. Of these, the 16S rRNA gene sequences segregated 238 SDF strains into four genera in the family Bacillaceae and two in the Paenibacillaceae. Bacillus spp. were the most prevalent, followed by species of Paenibacillus. We summarised the phenotypic test relationships among selected SDF strains using a Pearson correlation-based clustering represented in heatmaps. In practice, biochemical and physiological profiles are often less discriminatory than molecular data and may be unstable because of the loss of traits. Although these test reactions are not universally positive or negative within species, they may define biotypes and be efficient strain markers, enhancing the accuracy of unknown sample identification. It can also help select the most representative phenotypes of samples. Along with the other phenotypic and genotypic data, the present results are of great importance for the robust classification of the SDF strains within the scope of the polyphasic approach.
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来源期刊
Neotropical Biology and Conservation
Neotropical Biology and Conservation Environmental Science-Nature and Landscape Conservation
CiteScore
1.70
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24 weeks
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