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Evaluation of Sporidiobolus pararoseus strain YCXT3 as biocontrol agent of Botrytis cinerea on post-harvest strawberry fruits

机译:草莓孢子收获期对灰葡萄孢菌生物防治剂副孢子孢菌YCXT3的评价

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This study evaluated Sporidiobolus pararoseus (Sp) strain YCXT3 as biocontrol agent of Botrytis cinerea (Bc), the causal agent of strawberry gray mold disease. Efficacy of live yeast cells and volatile organic compounds (VOCs) of Sp in suppression of Bc on strawberry fruits was determined. Results showed that in dual cultures of Sp and Bc on potato dextrose agar at 20 degrees C, Sp did not inhibit mycelial growth of Bc. However, inoculation of the yeast cell suspensions of Sp (1 x 10(5) or 1 x 10(6) yeast cells ml (1)) on strawberry fruits resulted in reducing the disease incidence from 96-100% in the control treatment to 39-50% in the Sp treatment and the disease severity index from 5.1-7.0 in the control treatment to 1.1-1.9 in the Sp treatment. We found that the VOCs from the Sp cultures on yeast extract peptone dextrose agar were highly effective in inhibiting both the conidial germination and the mycelial growth of Bc. A total of 39 VOCs, including 2-ethyl-1-hexanol, were identified in cultures of Sp using GC-MS. Authentic 2-ethyl-1-hexanol was found to have strong anti-fungal activity against Bc with the IC50 values of 1.5 and 5.4 mu l l (1) for conidial germination and mycelial growth, respectively. The VOCs from the Sp cultures were effective in suppression of gray mold disease under the air-tight conditions. This study suggests that the strain YCXT3 of Sp is a promising agent for control of Bc and production of VOCs is a valid biocontrol mechanism for this yeast strain.
机译:本研究评估了草莓灰霉病的病原体灰葡萄孢(Bc)的生物防治剂对副孢菌(Sporidiobolus pararoseus)菌株YCXT3。确定了活酵母细胞和Sp的挥发性有机化合物(VOC)抑制草莓果实中Bc的功效。结果表明,在20℃的马铃薯葡萄糖琼脂上Sp和Bc的双重培养中,Sp不会抑制Bc的菌丝生长。但是,在草莓果实上接种Sp(1 x 10(5)或1 x 10(6)酵母细胞ml(1))的酵母细胞悬液可将疾病发生率从对照治疗的96-100%降低至Sp处理中有39-50%的疾病,疾病严重程度指数从对照处理中的5.1-7.0到Sp处理中的1.1-1.9。我们发现,在酵母提取物蛋白ept葡萄糖琼脂上从Sp培养物中获得的VOC在抑制Bc的分生孢子萌发和菌丝生长方面非常有效。使用GC-MS在Sp培养物中鉴定出总共39种VOC,包括2-乙基-1-己醇。发现真正的2-乙基-1-己醇对Bc具有很强的抗真菌活性,其分生孢子萌发和菌丝体生长的IC50值分别为1.5和5.4μl(1)。 Sp培养物中的VOC在气密条件下可有效抑制灰霉病。这项研究表明,Sp的YCXT3菌株是控制Bc的有前途的药物,而VOC的产生是该酵母菌株的有效生物防治机制。

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