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连续单作西番莲处理下根际土壤酶活性和微生物群落的变化

Changes in enzyme activity and microbial community of rhizosphere soil under continuously monocultured Passiflora edulis treatment.

作者信息

Lin Weiwei, Chen Zhihan, Li Zhaowei, Lin Wenxiong

机构信息

College of Food Engineering, Zhangzhou Institute of Technology, Zhangzhou, Fujian, China.

College of Agriculture, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.

出版信息

PLoS One. 2025 Jul 16;20(7):e0328363. doi: 10.1371/journal.pone.0328363. eCollection 2025.

Abstract

In response to the severe continuous cropping obstacles encountered during the cultivation of passion fruit, which leads to significant declines in yield and quality, as well as rampant pests and diseases, it is particularly important to explore strategies for mitigating these obstacles. The present study used the rhizosphere soil samples from one-year-old (FY, first-year cropping) and two-year-old (SY, second-year cropping) "Golden Passion Fruit" plants, along with soil from uncropped land (CK) as a control and the techniques such as high-throughput sequencing, qRT-PCR, and HPLC-MS to analyze the main physicochemical properties, phenolic acid content, and microbial community changes in the rhizosphere soil of passion fruit under different continuous cropping durations, the results indicated that the contents of total nitrogen, total phosphorus, available nitrogen, available phosphorus, available potassium, and organic matter in FY soil were significantly higher than those in SY soil, and the pH value of the FY soil was also significantly higher than that of SY soil. Additionally, compared with FY soil, the activities of polyphenol oxidase, peroxidase, urease, and invertase in SY soil were significantly reduced by 18.0%, 43.6%, 19.8%, and 45.5%, respectively. HPLC analysis revealed that the concentrations of syringic acid, vanillin, benzoic acid, and ferulic acid in the SY soil were significantly increased by 18.0%, 21.9%, 24.4%, and 21.1%, respectively, compared to those in the FY soil. qRT-PCR analysis showed that as the duration of continuous cropping increased, the total number of bacteria in the rhizosphere soil of passion fruit decreased by 9.37%, while the total number of fungi increased by 57.8%. High-throughput sequencing results demonstrated that at the genus level, the relative abundances of Acidothermus, Acidibacter, Bacillus, and Acidobacterium were significantly increased by38.0%, 56.3%, 34.3%, 77.3%. whereas the relative abundances of Rhizomicrobium, Nitrospira, Burkholderia, Sphingomonas, Gemmatimonas, Streptomyces, and Nocardioides were significantly lower 45.2%,59.3%,50.6%,89.1%,74.5%,82.7% in the SY soil, relative to those in the FY soil. In summary, as the duration of continuous cropping increases, the soil fertility, enzyme activity, pH value, and beneficial microbial content in the rhizosphere of passion fruit decrease significantly, while the contents of phenolic acids and pathogenic microorganisms increase significantly. The findings of this study provide a theoretical basis for further elucidating the formation mechanism and mitigation strategies of continuous cropping obstacles in passion fruit.

摘要

针对百香果种植过程中遇到的严重连作障碍,导致产量和品质大幅下降,病虫害猖獗,探索缓解这些障碍的策略尤为重要。本研究以一年生(FY,第一年种植)和两年生(SY,第二年种植)“黄金百香果”植株的根际土壤样本,以及未种植土地的土壤(CK)作为对照,采用高通量测序、qRT-PCR和HPLC-MS等技术,分析不同连作年限下百香果根际土壤的主要理化性质、酚酸含量和微生物群落变化。结果表明,FY土壤中的全氮、全磷、有效氮、有效磷、有效钾和有机质含量显著高于SY土壤,且FY土壤的pH值也显著高于SY土壤。此外,与FY土壤相比,SY土壤中多酚氧化酶、过氧化物酶、脲酶和转化酶的活性分别显著降低了18.0%、43.6%、19.8%和45.5%。HPLC分析显示,与FY土壤相比,SY土壤中丁香酸、香草醛、苯甲酸和阿魏酸的浓度分别显著增加了18.0%、21.9%、24.4%和21.1%。qRT-PCR分析表明,随着连作年限的增加,百香果根际土壤中细菌总数减少了9.37%,而真菌总数增加了57.8%。高通量测序结果表明,在属水平上,嗜酸热菌属、嗜酸杆菌属、芽孢杆菌属和嗜酸菌属的相对丰度分别显著增加了38.0%、56.3%、34.3%、77.3%;而相对于FY土壤,SY土壤中根瘤菌属、硝化螺旋菌属、伯克霍尔德菌属、鞘氨醇单胞菌属、芽单胞菌属、链霉菌属和诺卡氏菌属的相对丰度分别显著降低了45.2%、59.3%、50.6%、89.1%、74.5%、82.7%。综上所述,随着连作年限的增加,百香果根际土壤肥力、酶活性、pH值和有益微生物含量显著降低,而酚酸和致病微生物含量显著增加。本研究结果为进一步阐明百香果连作障碍的形成机制和缓解策略提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e04/12266385/e8a84aeddcb7/pone.0328363.g002.jpg

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