基于16S rRNA基因的刚果共和国布拉柴维尔土壤细菌多样性宏基因组分析

Irène Marie Cécile Mboukou Kimbatsa, Itsouhou Ngô, Armel Ibala Zamba, Faly Armel Soloka Mabika, Thantique Moutali Lingouangou, Joseph Goma-Tchimbakala, Etienne Nguimbi
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摘要

土壤中含有各种各样的微生物,其中就有细菌。本研究旨在探索刚果共和国布拉柴维尔土壤样品中的细菌多样性。提取环境DNA。保持illumina MiSeq测序,并计算多样性指数。Illumina MiSeq测序显示21门,其中4门丰富:变形菌门、酸杆菌门、放线菌门和拟杆菌门。土壤微生物群落系统发育多样,但群落结构稳定。其中根瘤菌门、杆菌门、放线菌门和酸杆菌门的相对丰度分别为17个纲,α -变形菌门、杆菌门和12个放线菌门共40个科,其中根瘤菌门丰度最高,杆菌门次之,黄杆菌科最少。在列出的28个属中,缓生根瘤菌在Mw3和Mw4中最占优势。列出的25个物种中,最丰富的是慢生根瘤菌、芽孢杆菌、放线菌和候选革杆菌酸杆菌。Mw3和Mw4的香农指数相等,Mw4的H 'max大于Mw3的H 'max。Mw4的Simpson指数等于Mw3的Simpson指数,Mw4的Pielou指数(J)小于Mw3的R,但非常接近。这一研究打开了对碲细菌在几个生活领域的认识和开发的有趣的视角。
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16S rRNA Gene-Based Metagenomic Analysis of Soil Bacterial Diversity in Brazzaville, Republic of the Congo
Soil contains a great diversity of microorganisms, among which are bacteria. This study aimed to explore bacterial diversity in soil samples in Brazzaville in the Republic of the Congo. Environmental DNA was extracted. The illumina MiSeq sequencing was held and the diversity indices have been computed. Illumina MiSeq sequencing revealed 21 Phyla, four of which were abundant: Proteobacteria, Acidobacteria, Actinobacteria and Bacteroidetes. Soil microbial communities in the studied samples were phylogenetically diverse but with a stable community structure. 17 classes are represented with relative abundances of Rihzobiales, Bacillales, Actinomycetales and Acidobacteriales. 40 families, the Alphaproteobacteria, the Bacilli and the 12 Actinobacteria. 83 orders among which the Rhizobiales are the most abundant followed by Bacillales and the least abundant followed by the Flavobacteriaceae. Of the 28 genera listed, the Bradyrhizobium is the most dominant in Mw3 and Mw4. 25 listed species, Bradyrhizobium, Bacillus, Actinoplanes, and Candidatu coribacter Acidobacterium are the most abundant species. The Shannon indices of Mw3 and Mw4 are equal, the H’max of Mw4 is greater than the H’max of Mw3. The Simpson index of Mw4 is equal to the Simpson index of Mw3, and the Pielou index (J) of Mw4 is less than the R of Mw3, but very close. This study opens interesting perspectives on the knowledge and exploitation of telluric bacteria in several areas of life.
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