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从微生物组到生物刺激剂:挖掘番茄根内生菌的潜力

From microbiome to biostimulants: unlocking the potential of tomato root endophytes.

作者信息

Fagnano Francesco Maria, Ventorino Valeria, Pasolli Edoardo, Romano Ida, Ambrosino Patrizia, Pepe Olimpia

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Naples, Italy.

Task Force on Microbiome Studies, University of Naples Federico II, Naples, Italy.

出版信息

BMC Plant Biol. 2025 Apr 4;25(1):427. doi: 10.1186/s12870-025-06447-4.

Abstract

BACKGROUND

Microbe-based biostimulants offer a sustainable and promising alternative to synthetic inputs, potentially reducing or replacing conventional inputs in crop management. Studying the native microbiota, particularly endophytic microbes, helps in selecting those that are naturally adapted to persist and to enhance plant growth under specific environmental conditions. This study aims to define the endophytic microbiota adapted to tomato crops by selecting discriminant amplicon sequence variant (ASVs) that are enriched during key plant growth stages and found in the core microbiota.

RESULTS

This study presents a large-scale analysis of tomato root endophytic prokaryotic microbiota using 16 S sequencing across the most common and widespread conditions used for tomato cultivation, offering comprehensive insight into its structure and dynamics. The results revealed a predominance of the Actinobacteriota and Proteobacteria phyla; less abundant groups included Bacteroidota, Verrucomicrobiota, Patescibacteria, and Firmicutes. Core microbiota analysis and discriminant ASV identification across different plant growth stages enabled the selection of the most abundant and persistent taxa adapted to the tomato endorhizosphere. Streptomyces, Shinella, Devosia, and Pseudoxanthomonas, as well as the lesser known genera Variovorax, Pseudarthrobacter, and Lechevalieria, represented the key genera identified, suggesting long-term host‒microbe associations.

CONCLUSIONS

The description of the representative framework of the tomato-associated microbiota and the identification of its most important components provide a basis for developing tailored microbial formulations that can increase crop resilience and reduce dependence on synthetic agricultural inputs, aimed at developing more sustainable environmental management strategies.

摘要

背景

基于微生物的生物刺激剂为合成投入物提供了一种可持续且有前景的替代品,有可能减少或取代作物管理中的传统投入物。研究本地微生物群,特别是内生微生物,有助于选择那些自然适应在特定环境条件下持续存在并促进植物生长的微生物。本研究旨在通过选择在关键植物生长阶段富集且存在于核心微生物群中的判别性扩增子序列变体(ASV)来确定适应番茄作物的内生微生物群。

结果

本研究使用16S测序对番茄根内生原核微生物群进行了大规模分析,涵盖了番茄种植中最常见和广泛使用的条件,全面深入地了解了其结构和动态。结果显示放线菌门和变形菌门占主导;丰度较低的类群包括拟杆菌门、疣微菌门、Patescibacteria和厚壁菌门。通过对不同植物生长阶段的核心微生物群分析和判别性ASV鉴定,能够选择出适应番茄根际环境的最丰富和持久的分类群。链霉菌属、新鞘氨醇菌属、德沃斯氏菌属和假黄单胞菌属,以及鲜为人知的贪噬菌属、假节杆菌属和勒氏菌属,是鉴定出的关键属,表明存在长期的宿主 - 微生物关联。

结论

对番茄相关微生物群代表性框架的描述及其最重要组成部分的鉴定,为开发定制化微生物制剂提供了基础,这些制剂可以提高作物恢复力并减少对合成农业投入物的依赖,旨在制定更可持续的环境管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed66/11969699/f2ca9ee41ef6/12870_2025_6447_Fig1_HTML.jpg

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