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Combined effect of yeast and silicon on the control of bacterial fruit blotch in melon

机译:酵母和硅的联合作用控制甜瓜的细菌性果斑

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The combined effect of the antagonistic yeasts Rhodotorula aurantiaca LMA1, Rodothorula glut-this LMS and Pichia anomala CC-2 and silicon (Si) was evaluated in relation to the control of bacterial fruit blotch (BFB) caused by Acidovorax citrulli in seedlings and plants, and possible mechanisms of action involved in the control were analyzed. The incorporation of 1.41 g Si kg(-1) (calcium silicate) into the substrate, together with foliar spraying with yeast (1.5 x 10(7) cells mL(-1)) and foliar spraying with 17 mM Si (potassium silicate) and the yeasts, separately or in combination, reduced the severity of the disease and protected seedlings and plants. These plants were inoculated with A. citrulli by foliar spraying (3.4 x 10(7) UFC mL(-1)) 24 h following the treatment. However, no additive or synergistic effects of the combined treatments were observed. The spraying of LMA1 + Si and LMA1 resulted in the highest levels of control of BFB in plants, and this level of control was higher than that provided by acibenzolar-S-methyl. Foliar spraying with LMA1 and Si, either separately or in combination, protected melon plants from infection by A. citrulli for 29 days. Increases in the activity of polyphenol oxidase after foliar spraying with Si and LMA1, and increases of ascorbate peroxidase activity after foliar spraying with LMA1 + Si and LMA1 are likely related to the induction of resistance to BFB
机译:评价了拮抗酵母Rhodotorula aurantiaca LMA1,Rothotorula glut-this LMS和Pichia anomala CC-2与硅(Si)的联合作用,以控制瓜果酸杆菌在幼苗和植物中引起的细菌性果斑(BFB)的控制,并分析了控制中可能涉及的作用机理。将1.41 g Si kg(-1)(硅酸钙)掺入基质中,同时用酵母(1.5 x 10(7)细胞mL(-1))进行叶面喷涂,并用17 mM Si(硅酸钾)进行叶面喷涂酵母分别或联合使用可降低疾病的严重程度并保护幼苗和植物。在处理后24小时,通过叶面喷洒(3.4 x 10(7)UFC mL(-1))将这些植物接种柑桔曲霉。但是,没有观察到联合治疗的累加或协同作用。喷洒LMA1 + Si和LMA1导致植物中BFB的控制水平最高,该控制水平高于苯并噻唑-S-甲基所提供的控制水平。叶面喷洒LMA1和Si单独或组合使用可保护瓜类植物免受瓜曲霉侵染29天。叶面喷施Si和LMA1后多酚氧化酶活性的增加以及叶面喷施LMA1 + Si和LMA1后抗坏血酸过氧化物酶活性的增加可能与诱导对BFB的抗性有关

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