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Exploring the Potentials of Lysinibacillus sphaericus ZA9 for Plant Growth Promotion and Biocontrol Activities against Phytopathogenic Fungi

机译:探索球形乳杆菌 ZA9对植物致病真菌的促进植物生长和生物防治活性的潜力

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There is an ongoing hunt for biologically active compounds that can combat phytopathogenic fungi and improve plant growth without causing any hazards to the environment. Consequently the present study aims at deciphering the plant growth promotion and antifungal capability of Lysinibacillus sphaericus ZA9. The bacterium was previously isolated and identified in our laboratory from maize rhizosphere using 16S rRNA gene sequencing. The test bacterium L. sphaericus ZA9 was found to produce high quantity of IAA (697 μg/ mL); siderophores (195.79 μg/ mL), HCN and hydrolytic enzyme as compared to the reference strain Bacillus sphaericus Z2-7. The bacterium was also capable of solubilizing silicates (Si), phosphates (P), and potassium (K). The bacterium enhanced the seedling vigor and germination of seeds pretreated with it and promoted the shoot length of both cucumber and tomato seeds in greenhouse experiment. L. sphaericus ZA9 and its cell free culture supernatant showed varied antagonistic behavior against Alternaria alternata, Curvularia lunata, Aspergillus sp., Sclerotinia sp., Bipolaris spicifera, Trichophyton sp. Fermentation broth culture of L. sphaericus ZA9 was then used to isolate antifungal metabolites by silica column chromatography. Identification and determination of antifungal compounds was carried out by Thin-layer chromatography (TLC) followed by NMR spectroscopy. Two compounds were isolated and identified as 2-pentyl-4-quinolinecarboxylic acid (C_(15)H_(17)NO_(2)) which is a quinoline alkaloid and 1- methylcyclohexene which is a cycloalkene. Compound 1; 2-Penthyl-4-quinolinecarboxylic acid was found to be highly antagonistic against most of the fungi tested as compared to the bacterium itself. Its activity was comparable to that of fungicide Benlate, while compound 2; 1- methylcyclohexene did not show any antifungal activity.
机译:一直在寻找可以对抗植物病原性真菌并改善植物生长而不会对环境造成任何危害的生物活性化合物。因此,本研究旨在破译球形芽孢杆菌ZA9的植物生长促进和抗真菌能力。该细菌先前已在我们的实验室中使用16S rRNA基因测序从玉米根际中分离和鉴定。发现测试细菌球形芽孢杆菌ZA9产生大量IAA(697μg/ mL);与参照菌株球形芽孢杆菌Z2-7相比,铁载体(195.79μg/ mL),HCN和水解酶。该细菌还能够溶解硅酸盐(Si),磷酸盐(P)和钾(K)。在温室实验中,该细菌增强了预处理后的种子的活力和发芽率,并促进了黄瓜和番茄种子的苗长。球形乳杆菌ZA9及其无细胞培养上清液显示出对链格孢菌,弯孢弯曲菌,曲霉菌,菌核菌,双孢子虫,毛癣菌等多种拮抗行为。然后,通过硅胶柱色谱法使用球形乳杆菌ZA9的发酵液培养物分离抗真菌代谢物。抗真菌化合物的鉴定和测定是通过薄层色谱法(TLC),然后是NMR光谱法进行的。分离出两种化合物并鉴定为2-戊基-4-喹啉羧酸(C_(15)H_(17)NO_(2)),其为喹啉生物碱和1-甲基环己烯,其为环烯烃。化合物1;与细菌本身相比,发现2-戊基-4-喹啉羧酸对大多数测试真菌具有高度拮抗作用。它的活性与杀真菌剂苯甲酸酯相当,而化合物2; 1-甲基环己烯没有显示任何抗真菌活性。

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