Influence of leaf extracts and total flavonoids of Rhus tripartita (Ucria) Grande on phytobeneficial bacteria associated with its rhizosphere

A. Benaissa
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Abstract

The article deals with the antimicrobial effect of Rhus tripartita (Ucria) Grande leaf extracts and total flavonoids against twelve antagonists Plant Growth Promoting Rhizobacteria of its rhizosphere, characterized in a previous study. The aim of this study is to demonstrate that leaves through their decomposition in the soil, may affect the distribution of bacterial communities in the rhizosphere. Leaves extracts were performed with distilled water, alcohol, methanol, hexane and chloroform as solvent and diluted in concentrations of 0.001, 0.01 and 0.1 mg/mL. The extraction of total flavonoids was carried out from leaves’ methanolic extract. The antimicrobial effect of the extracts was evaluated by the agar diffusion method and the determination of the minimum inhibitory concentration was carried out on a liquid medium. Alcohol, chloroform and methanol extracts were found to be the most effective on tested strains. The maximum zone inhibition was 18 mm, and the minimum zone inhibition was 7 mm. Rt 1: Bacillus licheniformis appears to be the most sensitive to all extracts. In contrast, Rt 7: Bacillus megaterium, seems to be the less sensitive strain. On the other hand, total flavonoids had a significant effect on 25% of the strains tested, mainly Bacillus genus. With a broad antimicrobial spectrum, the Rhus tripartita leaf extracts can be considered as a control agent for the distribution of the bacterial community in the rhizosphere. Therefore, our work showed that the plant could influence the bacterial diversity of its rhizosphere through its leaves.
大梁叶提取物和总黄酮对其根际相关有益菌的影响
本文研究了大黄叶提取物和总黄酮对其根际12种拮抗植物促生根杆菌的抑菌作用。本研究的目的是证明叶片通过其在土壤中的分解,可能影响根际细菌群落的分布。提取液以蒸馏水、酒精、甲醇、己烷和氯仿为溶剂,以0.001、0.01和0.1 mg/mL的浓度稀释。从叶甲醇提取物中提取总黄酮。采用琼脂扩散法评价提取物的抑菌效果,并在液体培养基上测定最低抑菌浓度。发现酒精、氯仿和甲醇提取物对试验菌株最有效。最大区域抑制度为18 mm,最小区域抑制度为7 mm。Rt 1:地衣芽孢杆菌似乎对所有提取物最敏感。相比之下,Rt 7:巨型芽孢杆菌,似乎是不太敏感的菌株。另一方面,总黄酮对25%的菌株有显著影响,主要是芽孢杆菌属。由于具有广泛的抗菌谱,因此可以认为是根际细菌群落分布的控制剂。因此,我们的工作表明,植物可以通过其叶片影响其根际细菌多样性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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