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在传统耕作系统中,接种本地根瘤菌可提高番茄产量和养分吸收,同时减轻重金属积累。

Native Rhizobial Inoculation Improves Tomato Yield and Nutrient Uptake While Mitigating Heavy Metal Accumulation in a Conventional Farming System.

作者信息

Manzano-Gómez Luis Alberto, Rincón-Molina Clara Ivette, Martínez-Romero Esperanza, Stopol-Martínez Simón Samuel, Santos-Santiago Amado, Villalobos-Maldonado Juan José, Ruíz-Valdiviezo Víctor Manuel, Rincón-Rosales Reiner

机构信息

Laboratorio de Ecología Genómica y Agricultura Regenerativa, Tecnológico Nacional de Mexico, Instituto Tecnológico de Tuxtla Gutiérrez, Tuxtla Gutiérrez 29050, Chiapas, Mexico.

Departamento de Investigación y Desarrollo, 3R Biotec, Tuxtla Gutiérrez 29000, Chiapas, Mexico.

出版信息

Microorganisms. 2025 Aug 15;13(8):1904. doi: 10.3390/microorganisms13081904.

Abstract

Enhancing crop productivity through biological strategies is critical for agriculture, particularly under conventional farming systems heavily reliant on chemical inputs. Plant probiotic bacteria offer promising alternatives by promoting plant growth and yield. This is the first field study to assess the effects of biofertilization with native rhizobial strains sp. ACO-34A, ITTG-R7, and ITTG-S70 on (tomato) cultivated under conventional farming conditions. Key parameters assessed include plant performance (plant height, plant stem width, plant dry weight, and chlorophyll content), fruit yield (fruits per plant, fruit height, fruit width, fruit weight, and estimated fruit volume), and macronutrient and micronutrient contents in plant tissue. Additionally, rhizospere bacterial communities were characterized through 16S rRNA amplicon sequencing to evaluate alpha and beta diversity. Inoculation with ITTG-R7 significantly improved plant height, stem width, and plant dry weight, while ITTG-S70 enhanced stem width and chlorophyll content. ACO-34A inoculation notably increased fruit number, size, and yield parameters. Moreover, inoculated plants exhibited reduced Fe and Cu accumulation compared to non-inoculated controls. Metagenomic analyses indicated that rhizobial inoculation did not significantly disrupt the native rhizosphere bacterial community. These findings highlight the potential of rhizobial strains as effective plant probiotics that enhance tomato productivity while preserving microbial community structure, supporting the integration of microbial biofertilizers into conventional farming systems.

摘要

通过生物策略提高作物生产力对农业至关重要,尤其是在严重依赖化学投入的传统耕作系统下。植物益生菌通过促进植物生长和提高产量提供了有前景的替代方案。这是第一项评估在传统耕作条件下用本地根瘤菌菌株ACO - 34A、ITTG - R7和ITTG - S70对番茄进行生物施肥效果的田间研究。评估的关键参数包括植物性能(株高、茎粗、植物干重和叶绿素含量)、果实产量(单株果实数、果实高度、果实宽度、果实重量和估计果实体积)以及植物组织中的大量营养素和微量营养素含量。此外,通过16S rRNA扩增子测序对根际细菌群落进行表征,以评估α和β多样性。接种ITTG - R7显著提高了株高、茎粗和植物干重,而ITTG - S70提高了茎粗和叶绿素含量。接种ACO - 34A显著增加了果实数量、大小和产量参数。此外,与未接种对照相比,接种植物的铁和铜积累减少。宏基因组分析表明,根瘤菌接种并未显著破坏本地根际细菌群落。这些发现突出了根瘤菌菌株作为有效的植物益生菌的潜力,它们在保持微生物群落结构的同时提高番茄生产力,支持将微生物生物肥料整合到传统耕作系统中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1479/12388614/07da581cb0e1/microorganisms-13-01904-g001.jpg

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