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与……根腐病相关的根际土壤微生物群落的结构与功能

Structure and function of rhizosphere soil microbial communities associated with root rot of .

作者信息

Liu Chunju, Li Heng, Dong Jiahong, He Xiahong, Zhang Lei, Qiu Bin

机构信息

School of Chinese Materia Medica, Yunnan University of Chinese Medicine, Kunming, Yunnan, China.

College of Plant Protection, Yunnan Agricultural University, Kunming, Yunnan, China.

出版信息

Front Microbiol. 2024 Jul 18;15:1424633. doi: 10.3389/fmicb.2024.1424633. eCollection 2024.

Abstract

The microbial communities in rhizosphere soil play important roles in plant health and crop productivity. However, the microbial community structure of rhizosphere soil still remains unclear. In this study, the composition, diversity and function of the microbial communities in the rhizosphere soil of healthy and diseased plants were compared using Illumina MiSeq high-throughput sequencing. The Sobs (richness) and Shannon (diversity) indices of the soil microbial communities were higher in the rhizospheres of 2- and 3-year-old susceptible plants than in those of the healthy plants. With the increase in planting time, the numbers of fungi tended to decrease, while those of the bacteria tended to increase. Fungal diversity could be used as a biological indicator to measure the health of . The microbial composition and differential analyses revealed that the rhizosphere soil infested with fungi had a higher relative abundance at the phylum level in Ascomycota and Basidiomycota, while the bacteria had a higher relative abundance of Chloroflexi and a lower relative abundance of Actinobacteriota. At the genus level, the rhizosphere soil infested with fungi had relatively more abundant and and relatively less abundant and . The bacterial genus was the most abundant, while was less abundant. In addition, the abundance of in the fungal community varied ( = 0.001). It tended to increase in parallel with the planting years. Therefore, it was hypothesized that the change in the community composition of may be the primary reason for the occurrence of root rot in , and the change in the abundance of OTU1450 may be an indication of the occurrence of root rot in this species. The community function and prediction analyses showed that the pathogenic fungi increased with the increase in planting years. In general, soil fungi can be roughly divided into three types, including pathotrophs, symbiotrophs, and saprotrophs. An analysis of the differences in the prediction of different rhizosphere functions showed that D and L were significantly different in the COG enrichment pathway of the rhizosphere bacteria ( < 0.05). The soil physical and chemical properties, including the pH, AK, total potassium (TK), and catalase (S_CAT), had the most significant effect on the soil fungal community, and most of the soil physical and chemical properties significantly correlated with the bacterial community. This study demonstrated that the occurrence of root rot had an important effect on the diversity, structure and composition of microbial communities. In addition, the results will provide a theoretical basis to prevent and control root rot in .

摘要

根际土壤中的微生物群落对植物健康和作物生产力起着重要作用。然而,根际土壤的微生物群落结构仍不清楚。在本研究中,利用Illumina MiSeq高通量测序比较了健康和患病植物根际土壤中微生物群落的组成、多样性和功能。2年生和3年生感病植物根际土壤微生物群落的Sobs(丰富度)和Shannon(多样性)指数高于健康植物根际。随着种植时间的增加,真菌数量趋于减少,而细菌数量趋于增加。真菌多样性可用作衡量……健康状况的生物学指标。微生物组成和差异分析表明,受真菌侵染的根际土壤在门水平上子囊菌门和担子菌门的相对丰度较高,而细菌中绿弯菌门的相对丰度较高,放线菌门的相对丰度较低。在属水平上,受真菌侵染的根际土壤中……和……相对较多,而……和……相对较少。细菌属……最为丰富,而……较少。此外,真菌群落中……的丰度存在差异(P = 0.001)。它倾向于与种植年份平行增加。因此,推测……群落组成的变化可能是……根腐病发生的主要原因,而OTU1450丰度的变化可能是该物种根腐病发生的一个指标。群落功能和预测分析表明,致病真菌随着种植年份的增加而增加。一般来说,土壤真菌大致可分为三种类型,包括寄生菌、共生菌和腐生菌。对不同根际功能预测差异的分析表明,D和L在……根际细菌的COG富集途径中存在显著差异(P < 0.05)。土壤理化性质,包括pH、有效钾(AK)、全钾(TK)和过氧化氢酶(S_CAT),对土壤真菌群落的影响最为显著,且大多数土壤理化性质与细菌群落显著相关。本研究表明,根腐病的发生对微生物群落的多样性、结构和组成有重要影响。此外,研究结果将为防治……根腐病提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2923/11291326/d632742089d4/fmicb-15-1424633-g001.jpg

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