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微生物接种改善了(L.)Merr. 的生长、营养和生理状况。

Microbial Inoculation Improves Growth, Nutritional and Physiological Aspects of (L.) Merr.

作者信息

Reis Mateus Neri Oliveira, Vitorino Luciana Cristina, Lourenço Lucas Loram, Bessa Layara Alexandre

机构信息

Laboratory of Agricultural Microbiology, Instituto Federal Goiano, Campus Rio Verde, Highway Sul Goiana, Km 01, Rio Verde 75901-970, GO, Brazil.

Laboratory of Metabolism and Genetics of Biodiversity, Instituto Federal Goiano, Campus Rio Verde, Rio Verde 75901-970, GO, Brazil.

出版信息

Microorganisms. 2022 Jul 10;10(7):1386. doi: 10.3390/microorganisms10071386.

Abstract

Considering a scenario where there is a low availability and increasing costs of fertilizers in the global agricultural market, as well as a finitude of important natural resources, such as phosphorus (P), this study tested the effect of the inoculation of rhizospheric or endophytic microorganisms isolated from and on the growth promotion of (L.) Merr. The tests were conducted in a controlled greenhouse system, and the effects of biofertilization were evaluated using the following parameters: dry biomass, nutritional content, and photochemical and photosynthetic performance of plants. Seed biopriming was performed with four bacterial and four fungal isolates, and the results were compared to those of seeds treated with the commercial product Biomaphos. Overall, microbial inoculation had a positive effect on biomass accumulation in , especially in strains PA12 (), SC5 (), and SC15 (). The non-inoculated control plants accumulated less nutrients, both in the whole plant and aerial part, and had reduced chlorophyll index and low photosynthetic rate () and photochemical efficiency. Strains PA12 (), SC5 (), and 328EF ( sp.) stood out in the optimization of nutrient concentration, transpiration rate, and stomatal conductance. Plants inoculated with the bacterial strains PA12 () and SC5 () and with the fungal strains 328EF ( sp.) and SC15 () showed the closest pattern to that observed in plants treated with Biomaphos, with the same trend of direction of the means associated with chlorophyll index, (), dry mass, and concentration of important nutrients such as N, P, and Mg. We recommend the use of these isolates in field tests to validate these strains for the production of biological inoculants as part of the portfolio of bioinputs available for .

摘要

考虑到全球农业市场中肥料供应不足且成本不断增加,以及磷(P)等重要自然资源有限的情况,本研究测试了从[具体来源1]和[具体来源2]分离的根际或内生微生物接种对[植物名称](L.)Merr.生长促进的影响。试验在可控温室系统中进行,使用以下参数评估生物施肥的效果:植物的干生物量、营养成分以及光化学和光合性能。用四种细菌分离株和四种真菌分离株对种子进行生物引发处理,并将结果与用商业产品Biomaphos处理的种子的结果进行比较。总体而言,微生物接种对[植物名称]的生物量积累有积极影响,特别是在菌株PA12([具体信息1])、SC5([具体信息2])和SC15([具体信息3])中。未接种的对照植物在整株植物和地上部分积累的养分较少,叶绿素指数降低,光合速率([具体数值])和光化学效率较低。菌株PA12([具体信息1])、SC5([具体信息2])和328EF([真菌名称]属)在营养浓度、蒸腾速率和气孔导度的优化方面表现突出。接种细菌菌株PA12([具体信息1])和SC5([具体信息2])以及真菌菌株328EF([真菌名称]属)和SC15([具体信息3])的植物表现出与用Biomaphos处理的植物最接近的模式,与叶绿素指数、([具体数值])、干质量以及氮、磷和镁等重要养分浓度相关的均值方向趋势相同。我们建议在田间试验中使用这些分离株,以验证这些菌株作为[植物名称]可用生物投入品组合的一部分用于生产生物接种剂的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae8b/9316164/f00c36e03105/microorganisms-10-01386-g001.jpg

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