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含新型促植物生长菌株TL13的低成本且生态可持续生物刺激素的研发与应用

Development and Application of Low-Cost and Eco-Sustainable Bio-Stimulant Containing a New Plant Growth-Promoting Strain TL13.

作者信息

Romano Ida, Ventorino Valeria, Ambrosino Patrizia, Testa Antonino, Chouyia Fatima Ezzahra, Pepe Olimpia

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Naples, Italy.

Agriges S.r.l. - Nutrizione Speciale per L'Agricoltura Biologica e Integrata, San Salvatore Telesino, Italy.

出版信息

Front Microbiol. 2020 Aug 18;11:2044. doi: 10.3389/fmicb.2020.02044. eCollection 2020.

Abstract

The use of beneficial microbes as inoculants able to improve fitness, growth and health of plants also in stress conditions is an attractive low-cost and eco-friendly alternative strategy to harmful chemical inputs. Thirteen potential plant growth-promoting bacteria were isolated from the rhizosphere of wheat plants cultivated under drought stress and nitrogen deficiency. Among these, the two isolates TL8 and TL13 showed multiple plant growth promotion activities as production of indole-3-acetic acid (IAA), siderophores, ammonia, and 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase production, the ability to solubilize phosphate as well as exerted antimicrobial activity against plant pathogens as spp. and spp. The two selected strains were identified as by sequencing of 16S rRNA gene. They resulted also tolerant to abiotic stress and were able to efficiently colonize plant roots as observed assay under fluorescence microscope. Based on the best PGP properties, the strain TL13 was selected to develop a new microbial based formulate. A sustainable and environmentally friendly process for inoculant production was developed using agro-industrial by-products for microbial growth. Moreover, the application of TL13- based formulates in pot experiment improved growth performance of maize plants.

摘要

使用有益微生物作为接种剂,即使在胁迫条件下也能够改善植物的适应性、生长和健康状况,这是一种有吸引力的低成本且环保的替代策略,可替代有害的化学投入物。从在干旱胁迫和氮缺乏条件下种植的小麦植物根际中分离出13种潜在的植物促生细菌。其中,两个分离株TL8和TL13表现出多种植物促生活性,如吲哚-3-乙酸(IAA)、铁载体、氨和1-氨基环丙烷-1-羧酸(ACC)脱氨酶的产生,溶解磷酸盐的能力以及对植物病原体如 spp. 和 spp. 的抗菌活性。通过16S rRNA基因测序将这两个选定的菌株鉴定为 。如在荧光显微镜下观察 试验所示,它们还对非生物胁迫具有耐受性,并且能够有效地定殖于植物根部。基于最佳的植物促生特性,选择菌株TL13来开发一种新的基于微生物的制剂。利用农业工业副产品促进微生物生长,开发了一种可持续且环保的接种剂生产工艺。此外,在盆栽试验中施用基于TL13的制剂提高了玉米植株的生长性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6173/7461993/e8df714041c1/fmicb-11-02044-g001.jpg

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