Che Bingjie, Yang Weicheng, He Qinqin, Jiang Yu, Zhang Bingchen, Chen Hangdan
School of Life Sciences, Guizhou Normal University, Guiyang, China.
Guizhou Chishui Alsophila National Nature Reserve Administration Bureau, Chishui, China.
Front Microbiol. 2024 Oct 3;15:1445255. doi: 10.3389/fmicb.2024.1445255. eCollection 2024.
The rhizosphere is considered a highly complex and dynamic ecosystem. Rhizosphere soil microorganisms influence the growth and development of plants by mediating the transformation and absorption of nutrients. In order to explore the microbial community composition and diversity of growing in different habitats. Rhizosphere samples were collected from four different habitats within the Chishui National Nature Reserve in Guizhou Province, China. According to the high-throughput sequencing results of 16 s rDNA and ITS, Proteobacteria and Ascomycota were the most abundant bacterial and fungal phyla in the rhizosphere soil of all four habitats. The alpha diversity analysis indicated that two particular habitats, Buddha Rock and Botanical Garden, harbored the highest microbial richness and diversity. LEfSe analysis revealed that Buddha Rock contained the highest relative abundance of Bacteroidetes compared to the other three study areas. Meanwhile, Tiantang Gou contained the highest relative abundance of Basidiomycota. Bacterial community composition and diversity were greatly influenced by soil pH, while fungal community composition and diversity were greatly influenced by available phosphorus, organic carbon, sucrase, and urease. The results of this study provide a scientific basis for the habitat restoration of , and the improvement of the structure of the rhizosphere soil microbial community. Laying a theoretical foundation for the next screening of inter-root functional flora.
根际被认为是一个高度复杂和动态的生态系统。根际土壤微生物通过介导养分的转化和吸收来影响植物的生长发育。为了探究生长在不同生境中的微生物群落组成和多样性,从中国贵州省赤水国家级自然保护区内的四个不同生境采集了根际样本。根据16 s rDNA和ITS的高通量测序结果,变形菌门和子囊菌门是所有四个生境根际土壤中最丰富的细菌和真菌门类。α多样性分析表明,两个特定生境,即佛岩和植物园,拥有最高的微生物丰富度和多样性。线性判别分析效应大小(LEfSe)分析显示,与其他三个研究区域相比,佛岩中拟杆菌门的相对丰度最高。同时,天堂沟中担子菌门的相对丰度最高。细菌群落组成和多样性受土壤pH值的影响很大,而真菌群落组成和多样性受有效磷、有机碳、蔗糖酶和脲酶的影响很大。本研究结果为[具体植物名称]的生境恢复以及根际土壤微生物群落结构的改善提供了科学依据。为下一步筛选根际功能菌群奠定了理论基础。