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来自地中海温室的原生细菌与土壤健康和抑制性相关。

Native bacteria from a Mediterranean greenhouse associated to soil health and suppressiveness.

作者信息

Marín-Guirao Jose Ignacio, de Cara-García Miguel

机构信息

Andalusian Institute of Agricultural and Fisheries Research Training (IFAPA) La Mojonera, Almería, Spain.

出版信息

Front Microbiol. 2025 Jun 27;16:1484219. doi: 10.3389/fmicb.2025.1484219. eCollection 2025.

Abstract

This study, conducted over two consecutive seasons in an organic-certified Mediterranean tomato greenhouse, aimed to assess the dynamics of soil bacterial composition at pre-planting phase following the incorporation of fresh sheep manure and subsequent solarisation (biosolarisation), as well as at the end of the crop cycle. Gene sequencing using 16S rRNA, and plate culture methods were applied. Additionally, dual culture tests were performed to evaluate the antagonistic activity of 95 soil-isolated bacteria against five soilborne pathogenic fungi and five beneficial fungi sourced from commercial products. Culturable and thermophilic bacterial populations shifted over time, but showed no clear trend. However, alpha diversity was lower at pre-planting phase and increased by the end of the cropping seasons. Significant shifts in beta diversity were also observed across sampling times. Firmicutes showed higher relative abundance at pre-planting phase, while Proteobacteria were consistently more abundant at the end of the cropping season. The genera and were identified as biomarkers, with associated with the pre-planting phase and with the end of the cropping seasons (LDA score > 4.5). Among the 52 ecological pathways detected via FAPROTAX database, nitrogen-related functions showed higher presence at the end of the cropping seasons. Isolates with antagonistic activity were detected at all sampling times. The 37.9% of the isolates showed antagonism, 31.6% against phytopathogenic fungi, 20.0% against beneficial fungi, and 12.6% against both. and were the pathogens to which the highest number of isolates showed antagonism, while and were among the beneficial ones. Among the native antagonistic bacteria, spp. was the dominant genus followed by . This information highlights how the functional diversity of native bacteria communities from biosolarised soils, may impact the performance of introduced biocontrol microorganisms, as well as the development of natural soil suppressiveness.

摘要

本研究在一个经过有机认证的地中海番茄温室中连续两个季节进行,旨在评估在种植前阶段加入新鲜羊粪并随后进行太阳能处理(生物太阳能处理)后以及作物周期结束时土壤细菌组成的动态变化。采用了基于16S rRNA的基因测序和平板培养方法。此外,还进行了双重培养试验,以评估从土壤中分离出的95种细菌对5种土传致病真菌和5种来自商业产品的有益真菌的拮抗活性。可培养细菌和嗜热细菌种群随时间发生变化,但没有明显趋势。然而,种植前阶段的α多样性较低,到作物季节结束时有所增加。在不同采样时间也观察到β多样性的显著变化。厚壁菌门在种植前阶段相对丰度较高,而变形菌门在作物季节结束时一直更为丰富。 属和 属被鉴定为生物标志物, 属与种植前阶段相关, 属与作物季节结束时相关(线性判别分析得分>4.5)。通过FAPROTAX数据库检测到的52条生态途径中,与氮相关的功能在作物季节结束时出现频率更高。在所有采样时间都检测到了具有拮抗活性的分离株。37.9%的分离株表现出拮抗作用,其中31.6%针对植物致病真菌,20.0%针对有益真菌,12.6%对两者都有拮抗作用。 属和 属是分离株表现出拮抗作用最多的病原菌,而 属和 属是有益真菌中的两种。在本地拮抗细菌中, 属是优势属,其次是 属。这些信息突出了生物太阳能处理土壤中本地细菌群落的功能多样性如何可能影响引入的生物防治微生物的性能以及天然土壤抑制性的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e3/12246977/03a7693f7f92/fmicb-16-1484219-g001.jpg

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