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解析与健康和萎蔫根际土壤相关的微生物多样性。

Deciphering the microbial diversity associated with healthy and wilted rhizosphere soil.

作者信息

Jia Manman, Sun Xin, Chen Man, Liu Shuang, Zhou Jinxing, Peng Xiawei

机构信息

College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.

Jianshui Research Station, School of Soil and Water Conservation, Beijing Forestry University, Beijing, China.

出版信息

Front Microbiol. 2022 Aug 17;13:967601. doi: 10.3389/fmicb.2022.967601. eCollection 2022.

Abstract

Plant health is closely related to the soil, where microorganisms play a critical and unique role. For instance, is an emerging woody oil crop in China with attractive development and utilization prospects. However, black root rot causes wilting of the aboveground plant parts, which significantly affected its seed yield and quality. Studies found that soil microorganisms are critical in maintaining plant health, but how changes in the soil microbial communities affect the healthy and diseased oil peony is unclear. Therefore, our present study used high throughput sequencing and BIOLOG to analyze the rhizosphere soil microbial communities of healthy and diseased oil peonies. Our results revealed that the physical and chemical properties of the soil of the diseased plants had changed, with the ability to metabolize the carbon source being enhanced. Moreover, our research highlighted that the oil peony-infecting fungal pathogenic genus (, , and ) was closely associated with oil peony yield reduction and disease aggravation. Further network analysis demonstrated that the bacterial and fungal networks of the diseased plants were more complex than those of the healthy plants. Finally, the inter-kingdom network among the diseased plants further indicated that the lesions destroyed the network and increased the intraspecific correlation between the fungal groups.

摘要

植物健康与土壤密切相关,微生物在土壤中发挥着关键且独特的作用。例如,[此处原文缺失具体植物名称]是中国一种新兴的木本油料作物,具有诱人的开发利用前景。然而,黑根腐病会导致地上部分植物枯萎,这严重影响了其种子产量和质量。研究发现土壤微生物对维持植物健康至关重要,但土壤微生物群落的变化如何影响健康和患病的油牡丹尚不清楚。因此,我们目前的研究使用高通量测序和BIOLOG来分析健康和患病油牡丹的根际土壤微生物群落。我们的结果表明,患病植株土壤的理化性质发生了变化,碳源代谢能力增强。此外,我们的研究强调,感染油牡丹的真菌致病属([此处原文缺失具体属名]、[此处原文缺失具体属名]和[此处原文缺失具体属名])与油牡丹产量降低和病情加重密切相关。进一步的网络分析表明,患病植株的细菌和真菌网络比健康植株的更为复杂。最后,患病植株之间的跨界网络进一步表明,病害破坏了网络并增加了真菌群体之间的种内相关性。

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