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与丛枝菌根真菌孢子相关的细菌提高了用于红树莓生物接种的真菌接种物的有效性。

Bacteria Associated with Spores of Arbuscular Mycorrhizal Fungi Improve the Effectiveness of Fungal Inocula for Red Raspberry Biotization.

作者信息

Ważny Rafał, Jędrzejczyk Roman J, Rozpądek Piotr, Domka Agnieszka, Tokarz Krzysztof M, Janicka Martyna, Turnau Katarzyna

机构信息

Małopolska Centre of Biotechnology, Jagiellonian University in Kraków, Gronostajowa 7a, 30-387, Kraków, Poland.

W. Szafer Institute of Botany Polish Academy of Sciences, Lubicz 46, 31-512, Kraków, Poland.

出版信息

Microb Ecol. 2024 Mar 11;87(1):50. doi: 10.1007/s00248-024-02364-5.

Abstract

Intensive crop production leads to the disruption of the symbiosis between plants and their associated microorganisms, resulting in suboptimal plant productivity and lower yield quality. Therefore, it is necessary to improve existing methods and explore modern, environmentally friendly approaches to crop production. One of these methods is biotization, which involves the inoculation of plants with appropriately selected symbiotic microorganisms which play a beneficial role in plant adaptation to the environment. In this study, we tested the possibility of using a multi-microorganismal inoculum composed of arbuscular mycorrhizal fungi (AMF) and AMF spore-associated bacteria for biotization of the red raspberry. Bacteria were isolated from the spores of AMF, and their plant growth-promoting properties were tested. AMF inocula were supplemented with selected bacterial strains to investigate their effect on the growth and vitality of the raspberry. The investigations were carried out in the laboratory and on a semi-industrial scale in a polytunnel where commercial production of seedlings is carried out. In the semi-industrial experiment, we tested the growth parameters of plants and physiological response of the plant to temporary water shortage. We isolated over fifty strains of bacteria associated with spores of AMF. Only part of them showed plant growth-promoting properties, and six of these (belonging to the Paenibacillus genus) were used for the inoculum. AMF inoculation and co-inoculation of AMF and bacteria isolated from AMF spores improved plant growth and vitality in both experimental setups. Plant dry weight was improved by 70%, and selected chlorophyll fluorescence parameters (the contribution of light to primary photochemistry and fraction of reaction centre chlorophyll per chlorophyll of the antennae) were increased. The inoculum improved carbon assimilation, photosynthetic rate, stomatal conductance and transpiration after temporary water shortage. Raspberry biotization with AMF and bacteria associated with spores has potential applications in horticulture where ecological methods based on plant microorganism interaction are in demand.

摘要

集约化作物生产导致植物与其相关微生物之间的共生关系被破坏,从而导致植物生产力未达最佳水平且产量质量降低。因此,有必要改进现有方法并探索现代、环保的作物生产方式。其中一种方法是生物接种,即给植物接种经过适当选择的共生微生物,这些微生物在植物适应环境方面发挥有益作用。在本研究中,我们测试了使用由丛枝菌根真菌(AMF)和与AMF孢子相关的细菌组成的多微生物接种物对红树莓进行生物接种的可能性。从AMF孢子中分离出细菌,并测试了它们促进植物生长的特性。向AMF接种物中添加选定的细菌菌株,以研究其对树莓生长和活力的影响。研究在实验室和一个进行苗木商业化生产的塑料大棚中以半工业规模进行。在半工业实验中,我们测试了植物的生长参数以及植物对暂时缺水的生理反应。我们分离出五十多种与AMF孢子相关的细菌菌株。其中只有一部分表现出促进植物生长的特性,其中六种(属于芽孢杆菌属)被用于接种物。在两个实验设置中,AMF接种以及AMF与从AMF孢子中分离出的细菌共同接种均改善了植物的生长和活力。植物干重提高了70%,选定的叶绿素荧光参数(光对初级光化学的贡献以及天线叶绿素中反应中心叶绿素的比例)增加。接种物在暂时缺水后改善了碳同化、光合速率、气孔导度和蒸腾作用。用AMF和与孢子相关的细菌对树莓进行生物接种在园艺领域具有潜在应用价值,因为园艺领域需要基于植物与微生物相互作用的生态方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fa2/10927900/0aebe8b71aa1/248_2024_2364_Fig1_HTML.jpg

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