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基于文化组学的细菌合成群落提高营养植物抗砷和重金属能力

A Culturomics-Based Bacterial Synthetic Community for Improving Resilience towards Arsenic and Heavy Metals in the Nutraceutical Plant .

机构信息

Departamento de Microbiología y Parasitología, Facultad de Farmacia, Universidad de Sevilla, c/ Profesor García González, 2, 41012 Sevilla, Spain.

Departamento de Biología Vegetal y Ecología, Facultad de Biología, Universidad de Sevilla, Avda. Reina Mercedes, s/n, 41012 Sevilla, Spain.

出版信息

Int J Mol Sci. 2023 Apr 10;24(8):7003. doi: 10.3390/ijms24087003.

Abstract

Plant-growth-promoting bacteria (PGPB) help plants thrive in polluted environments and increase crops yield using fewer inputs. Therefore, the design of tailored biofertilizers is of the utmost importance. The purpose of this work was to test two different bacterial synthetic communities (SynComs) from the microbiome of , a moderate halophyte with cosmetic, pharmaceutical, and nutraceutical applications. The SynComs were composed of specific metal-resistant plant-growth-promoting rhizobacteria and endophytes. In addition, the possibility of modulating the accumulation of nutraceutical substances by the synergetic effect of metal stress and inoculation with selected bacteria was tested. One of the SynComs was isolated on standard tryptone soy agar (TSA), whereas the other was isolated following a culturomics approach. For that, a culture medium based on biomass, called Mesem Agar (MA), was elaborated. Bacteria of three compartments (rhizosphere soil, root endophytes, and shoot endophytes) were isolated on standard TSA and MA media, stablishing two independent collections. All bacteria were tested for PGP properties, secreted enzymatic activities, and resistance towards As, Cd, Cu, and Zn. The three best bacteria from each collection were selected in order to produce two different consortiums (denominated TSA- and MA-SynComs, respectively), whose effect on plant growth and physiology, metal accumulation, and metabolomics was evaluated. Both SynComs, particularly MA, improved plant growth and physiological parameters under stress by a mixture of As, Cd, Cu, and Zn. Regarding metal accumulation, the concentrations of all metals/metalloids in plant tissues were below the threshold for plant metal toxicity, indicating that this plant is able to thrive in polluted soils when assisted by metal/metalloid-resistant SynComs and could be safely used for pharmaceutical purposes. Initial metabolomics analyses depict changes in plant metabolome upon exposure to metal stress and inoculation, suggesting the possibility of modulating the concentration of high-value metabolites. In addition, the usefulness of both SynComs was tested in a crop plant, namely (alfalfa). The results demonstrate the effectiveness of these biofertilizers in alfalfa, improving plant growth, physiology, and metal accumulation.

摘要

植物促生菌(PGPB)有助于植物在污染环境中茁壮成长,并通过减少投入来提高作物产量。因此,定制生物肥料的设计至关重要。本工作的目的是测试来自中度盐生植物 的微生物组中的两种不同细菌合成群落(SynComs),该植物具有美容、制药和营养保健品应用。SynComs 由特定的耐金属植物促生根际细菌和内生菌组成。此外,还测试了通过金属胁迫和接种选定细菌的协同作用来调节营养保健品物质积累的可能性。其中一个 SynCom 是在标准胰蛋白酶大豆琼脂(TSA)上分离的,而另一个是在培养组学方法下分离的。为此,基于生物质开发了一种称为 Mesem 琼脂(MA)的培养基。在标准 TSA 和 MA 培养基上分离了三个区室(根际土壤、根内生菌和茎内生菌)的细菌,建立了两个独立的集合。所有细菌均进行了 PGP 特性、分泌酶活性以及对 As、Cd、Cu 和 Zn 的抗性测试。从每个集合中选择了三种最好的细菌,以生产两种不同的联合体(分别命名为 TSA-和 MA-SynComs),评估它们对植物生长和生理、金属积累和代谢组学的影响。两个 SynComs,特别是 MA,通过 As、Cd、Cu 和 Zn 的混合物改善了胁迫下植物的生长和生理参数。关于金属积累,植物组织中所有金属/类金属的浓度均低于植物金属毒性的阈值,表明当植物受到耐金属/类金属 SynComs 的辅助时,它能够在污染土壤中茁壮成长,并且可以安全地用于制药目的。初步代谢组学分析描绘了暴露于金属胁迫和接种后植物代谢组的变化,表明有可能调节高价值代谢物的浓度。此外,还在作物植物 (紫花苜蓿)中测试了这两种 SynComs 的有效性。结果表明,这些生物肥料在紫花苜蓿中的有效性,可提高植物的生长、生理和金属积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8758/10138511/a866e61cba9a/ijms-24-07003-g001.jpg

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