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解淀粉芽孢杆菌菌株 Ag75 作为一种新的多功能生物防治制剂,可促进玉米和大豆作物的生物防治、磷酸盐溶解和生长。

Bacillus velezensis strain Ag75 as a new multifunctional agent for biocontrol, phosphate solubilization and growth promotion in maize and soybean crops.

机构信息

Microbiology Department, Universidade Estadual de Londrina (UEL), Londrina, 86051-900, Brazil.

Agronomy Department, Universidade Estadual de Londrina (UEL), Londrina, 86051-900, Brazil.

出版信息

Sci Rep. 2022 Sep 10;12(1):15284. doi: 10.1038/s41598-022-19515-8.

Abstract

Soybean and maize are some of the main drivers of Brazilian agribusiness. However, biotic and abiotic factors are of great concern, causing huge grain yield and quality losses. Phosphorus (P) deficiency is important among the abiotic factors because most Brazilian soils have a highly P-fixing nature. Thus, large amounts of phosphate fertilizers are regularly applied to overcome the rapid precipitation of P. Searching for alternatives to improve the use of P by crops is essential to reduce the demand for P input. The use of multifunctional rhizobacteria can be considered one of these alternatives. In this sense, the objective of the present work was to select and validate bacterial strains with triple action (plant growth promoter, phosphate solubilizer, and biocontrol agent) in maize and soybean, aiming to develop a multifunctional microbial inoculant for Brazilian agriculture. Bacterial strains with high indole acetic acid (IAA) production, phosphate solubilization, and antifungal activity against soil pathogenic fungi (Rhizoctonia solani, Macrophomina phaseolina, and Fusarium solani) were selected from the maize rhizosphere. Then, they were evaluated as growth promoters in maize under greenhouse conditions. Based on this study, strain 03 (Ag75) was selected due to its high potential for increasing biomass (root and shoot) and shoot P content in maize. This strain was identified through genomic sequencing as Bacillus velezensis. In field experiments, the inoculation of this bacterium increased maize and soybean yields by 17.8 and 26.5%, respectively, compared to the control (25 kg PO). In addition, the inoculation results did not differ from the control with 84 kg PO, indicating that it is possible to reduce the application of phosphate in these crops. Thus, the Ag75 strain has great potential for developing a multifunctional microbial inoculant that combines the ability to solubilize phosphate, promote plant growth, and be a biocontrol agent for several phytopathogenic fungi.

摘要

大豆和玉米是巴西农业的主要推动力之一。然而,生物和非生物因素是人们非常关注的问题,导致大量粮食减产和质量下降。在非生物因素中,磷(P)缺乏是一个重要因素,因为大多数巴西土壤具有很强的固定磷的性质。因此,为了克服磷的快速沉淀,经常需要施用大量的磷酸盐肥料。寻找替代方法来提高作物对 P 的利用效率对于减少对 P 投入的需求至关重要。多功能根际细菌的使用可以被认为是这些替代方法之一。从这个意义上说,本工作的目的是在玉米和大豆中选择和验证具有三重作用(植物生长促进剂、磷酸盐溶解剂和生物防治剂)的细菌菌株,旨在为巴西农业开发多功能微生物接种剂。从玉米根际中选择了吲哚乙酸(IAA)产量高、解磷能力强、对土壤病原菌(腐霉属、旋孢腔菌属和茄腐镰刀菌)具有抗真菌活性的细菌菌株。然后,在温室条件下评价它们对玉米的生长促进作用。基于这项研究,由于其在增加玉米生物量(根和茎)和茎部 P 含量方面的高潜力,选择了菌株 03(Ag75)。该菌株通过基因组测序被鉴定为贝莱斯芽孢杆菌。在田间试验中,与对照(25kg PO)相比,该细菌的接种分别使玉米和大豆的产量增加了 17.8%和 26.5%。此外,接种结果与 84kg PO 的对照没有差异,这表明有可能减少这些作物中磷酸盐的应用。因此,Ag75 菌株具有很大的潜力,可以开发一种多功能微生物接种剂,它结合了溶解磷酸盐、促进植物生长和防治多种植物病原菌的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08a8/9464197/94685eb0c2af/41598_2022_19515_Fig1_HTML.jpg

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