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首页> 外文期刊>National Academy Science Letters >Biocontrol Efficacy of Siderophore Producing Indigenous Pseudomonas Strains Against Fusarium Wilt in Tomato
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Biocontrol Efficacy of Siderophore Producing Indigenous Pseudomonas Strains Against Fusarium Wilt in Tomato

机译:西红柿对镰刀菌枯萎生产土着假年菌菌株的生物控制疗效

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摘要

Two bacterial strains were screened for in vitro antagonism against tomato wilt pathogen Fusarium oxysporum f.sp. lycopersici. They were assessed for siderophore production qualitatively and quantitatively. Strains SPs9 and SPs20 produced 59.30 and 52.74 A mu g ml(-1) siderophore and exhibited 3.4 and 3.8 cm fungal inhibition zone respectively in deferrated SSM. Zone size decreased as iron in SSM increased. Fungal inhibition zone for SPs9 in SSM without and with 2.5, 5, 7.5 and 10 A mu M iron was 3.4, 2.1, 1.5, 0.9 and 0.6 cm whereas for SPs20, 3.8, 2.2, 1.7, 1.0 and 0.7 cm. The biocontrol potential of strains was evaluated through greenhouse assay. Inoculation of tomato seedlings with SPs9 caused 100% and SPs20, 75% disease control and increased fresh and dry weight of plants. Both strains were genetically identified as P. fluorescens.
机译:筛选两种细菌菌株,用于对番茄枯萎病病原菌镰刀菌的体外拮抗作用。 Lycopersici。 他们评估了定性和定量的施工电影生产。 菌株SPS9和SPS20产生59.30和52.74A MU G mL(-1)烷料,分别在渗透的SSM中显示出3.4和3.8cm的真菌抑制区。 由于SSM中的铁增加,区域尺寸减少。 SSM中SPS9的真菌抑制区没有,含有2.5,5,7.5和10A MU M铁为3.4,2.1,1.5,0.9和0.6厘米,而SPS20,3.8,2.2,1.7,1.0和0.7厘米。 通过温室测定评估菌株的生物控制潜力。 用SPS9接种番茄幼苗引起100%和SPS20,75%的疾病控制和植物的新鲜和干重增加。 两种菌株都被遗传鉴定为荧光型。

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