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A Biocontrol Strain of Bacillus subtilis WXCDD105 Used to Control Tomato Botrytis cinerea and Cladosporium fulvum Cooke and Promote the Growth of Seedlings

机译:枯草芽孢杆菌枯草芽孢杆菌菌株的生物控制菌株WXCDD105用于控制番茄Botrytis Cinerea和Cladosporium Fulvum Cooke并促进幼苗的生长

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摘要

In this study, a strain named WXCDD105, which has strong antagonistic effects on Botrytis cinerea and Cladosporium fulvum Cooke, was screened out from the rhizosphere of healthy tomato plants. The tomato plants had inhibition diameter zones of 5.00 mm during the dual culture for four days. Based on the morphological and physiological characteristics, the 16S rDNA sequence, and the gyrB gene sequence analysis, the strain WXCDD105 was identified as Bacillus subtilis suBap. subtilis. The results of the mycelial growth test showed that the sterile filtrate of the strain WXCDD105 could significantly inhibit mycelial growth of Botrytis cinerea and Cladosporium fulvum Cooke. The inhibition rates were 95.28 and 94.44%, respectively. The potting experiment showed that the strain WXCDD105 made effective the control of tomato gray mold and tomato leaf mold. The control efficiencies were 74.70 and 72.07%. The antagonistic test results showed that the strain WXCDD105 had different degrees of inhibition on 10 kinds of plant pathogenic fungi and the average inhibition rates were more than 80%. We also found that the strain WXCDD105 stimulated both the seed germination and seedling growth of tomatoes. Using the fermentation liquid of WXCDD105 (108 cfu·mL−1) to treat the seeds, the germination rate and radicle length were increased. Under the treatment of the fermentation liquid of the strain WXCDD105 (106 cfu·mL−1), nearly all physiological indexes of tomato seedlings were significantly higher than that of the control groups. This could not only keep the nutritional quality of tomato fruits but also prevent them from rotting. This study provided us with an excellent strain for biological control of tomato gray mold, tomato leaf mold, and tomato growth promotion. This also laid the technical foundation for its application.
机译:在这项研究中,从健康番茄植物的根际筛选出对Botrytis Cinerea和Cladosporium Culvum Cooke具有强烈的拮抗作用的一种菌株。番茄植物在双重培养过程中具有5.00毫米的抑制直径区域4天。基于形态学和生理特性,16S rDNA序列和GyrB基因序列分析,菌株WXCDD105被鉴定为枯草芽孢杆菌剂。枯草芽孢杆菌。菌丝体生长试验的结果表明,菌株WXCDD105的无菌滤液可显着抑制Botrytis Cinerea和Cladosporium Fulvum Cooke的菌丝体生长。抑制率分别为95.28和94.44%。灌封实验表明,菌株WXCDD105对番茄坯料和番茄叶模具进行了有效控制。控制效率为74.70和72.07%。拮抗试验结果表明,菌株WXCDD105对10种植物病原真菌的抑制程度不同,平均抑制率大于80%。我们还发现菌株WXCDD105刺激了西红柿的种子萌发和幼苗生长。使用WXCDD105(108CFU·ML-1)的发酵液来治疗种子,萌发率和胚根长度增加。在菌株WXCDD105(106CFU·ML-1)的发酵液的处理下,几乎所有番茄幼苗的生理指标都明显高于对照组。这不仅可以保持番茄水果的营养品质,还可以防止它们腐烂。本研究为我们提供了番茄灰色模具,番茄叶模和番茄生长促进的生物控制的优异菌力。这也为其应用奠定了技术基础。

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