Food Security and Safety Niche, Faculty of Natural and Agricultural Sciences, North-West University, Private Mail Bag X2046, Mmabatho 2735, South Africa.
Genes (Basel). 2019 Aug 23;10(9):637. doi: 10.3390/genes10090637.
Profiling the metabolic processes performed by bacteria is vital both for understanding and for manipulating ecosystems for industrial or research purposes. In this study we aim to assess the bacterial functional diversity in termite mound soils with the assumption that significant differences will be observed in the functional diversity of bacteria between the termite mound soils and their surrounding soils and that each environment has a distinguishing metabolic profile. Here, metagenomic DNA extracted from termite mound soils and their corresponding surrounding soils, which are 10 m apart, were sequenced using a shotgun sequencing approach. Our results revealed that the relative abundances of 16 functional categories differed significantly between both habitats. The α diversity analysis indicated no significant difference in bacterial functional categories within the habitats while the β diversity showed that the bacterial functional categories varied significantly between the termite mound soils and the surrounding soil samples. The variations in soil physical and chemical properties existing between the two environments were held accountable for the differences in bacterial functional structure. With the high relative abundance of functional categories with unknown function reported in this study, this could signify the likelihood of getting novel genes from termite mound soils, which are needed for research and commercial applications.
分析细菌执行的代谢过程对于理解和操纵生态系统以用于工业或研究目的至关重要。在这项研究中,我们旨在评估白蚁丘土壤中的细菌功能多样性,假设在白蚁丘土壤和周围土壤之间的细菌功能多样性以及每个环境的代谢特征方面将观察到显著差异。在这里,使用鸟枪法测序方法对来自白蚁丘土壤及其相距 10 米的相应周围土壤的宏基因组 DNA 进行了测序。我们的结果表明,这两个生境中的 16 种功能类别的相对丰度存在显著差异。α多样性分析表明,生境内部的细菌功能类别没有显著差异,而β多样性表明,白蚁丘土壤和周围土壤样本之间的细菌功能类别存在显著差异。两个环境之间存在的土壤物理和化学性质的变化导致了细菌功能结构的差异。本研究中报告的具有未知功能的功能类别相对丰度较高,这可能表明从白蚁丘土壤中获得研究和商业应用所需的新基因的可能性。