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植物促生根际细菌对土壤微生物群落和草莓品质的多学科评估

Multidisciplinary evaluation of plant growth promoting rhizobacteria on soil microbiome and strawberry quality.

作者信息

Nam Jun Haeng, Thibodeau Alyssa, Qian Yanping L, Qian Michael C, Park Si Hong

机构信息

Department of Food Science and Technology, Oregon State University, 3051 SW Campus Way, Corvallis, OR, 97331, USA.

出版信息

AMB Express. 2023 Feb 16;13(1):18. doi: 10.1186/s13568-023-01524-z.

Abstract

The natural soil environment is considered one of the most diverse habitats containing numerous bacteria, fungi, and larger organisms such as nematodes, insects, or rodents. Rhizosphere bacteria play vital roles in plant nutrition and the growth promotion of their host plant. The aim of this study was to evaluate the effects of three plant growth-promoting rhizobacteria (PGPR), Bacillus subtilis, Bacillus amyloliquefaciens, and Pseudomonas monteilii for their potential role as a biofertilizer. The effect of the PGPR was examined at a commercial strawberry farm in Dayton, Oregon. The PGPR were applied to the soil of the strawberry (Fragaria × ananassa cultivar Hood) plants in two different concentrations of PGPR, T1 (0.24% PGPR) and T2 (0.48% PGPR), and C (no PGPR). A total of 450 samples from August 2020 to May 2021 were collected, and microbiome sequencing based on the V4 region of the 16S rRNA gene was conducted. The strawberry quality was measured by sensory evaluation, total acidity (TA), total soluble solids (TSS), color (lightness and chroma), and volatile compounds. Application of the PGPR significantly increased the populations of Bacillus and Pseudomonas and promoted the growth of nitrogen-fixing bacteria. The TSS and color evaluation showed that the PGPR presumptively behaved as a ripening enhancer. The PGPR contributed to the production of fruit-related volatile compounds, while the sensory evaluation did not show significant differences among the three groups. The major finding of this study suggests that the consortium of the three PGPR have a potential role as a biofertilizer by supporting the growth of other microorganisms (nitrogen-fixing bacteria) as part of a synergetic effect and strawberry quality such as sweetness and volatile compounds.

摘要

自然土壤环境被认为是最多样化的栖息地之一,包含众多细菌、真菌以及线虫、昆虫或啮齿动物等较大生物。根际细菌在植物营养及其宿主植物的生长促进中发挥着至关重要的作用。本研究的目的是评估三种植物促生根际细菌(PGPR),即枯草芽孢杆菌、解淀粉芽孢杆菌和蒙特利假单胞菌作为生物肥料的潜在作用。在俄勒冈州代顿市的一个商业草莓农场对PGPR的效果进行了研究。将PGPR以两种不同浓度施用于草莓(凤梨草莓品种胡德)植株的土壤中,T1(0.24% PGPR)和T2(0.48% PGPR),以及对照C(不施用PGPR)。从2020年8月至2021年5月共采集了450个样本,并基于16S rRNA基因的V4区域进行了微生物组测序。通过感官评价、总酸度(TA)、总可溶性固形物(TSS)、颜色(明度和色度)以及挥发性化合物来测定草莓品质。施用PGPR显著增加了芽孢杆菌属和假单胞菌属的数量,并促进了固氮细菌的生长。TSS和颜色评价表明,PGPR可能起到了催熟增强剂的作用。PGPR有助于果实相关挥发性化合物的产生,而感官评价在三组之间未显示出显著差异。本研究的主要发现表明,这三种PGPR的组合通过支持其他微生物(固氮细菌)的生长,作为协同效应的一部分,对草莓品质如甜度和挥发性化合物具有潜在的生物肥料作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4245/9935790/b32fea1ebe44/13568_2023_1524_Fig1_HTML.jpg

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