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首页> 外文期刊>International Journal of Food Microbiology >Biocontrol activity of an alkaline serine protease from Aureobasidium pullulans expressed in Pichia pastoris against four postharvest pathogens on apple.
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Biocontrol activity of an alkaline serine protease from Aureobasidium pullulans expressed in Pichia pastoris against four postharvest pathogens on apple.

机译:巴斯德毕赤氏酵母中表达的金黄色葡萄球菌的碱性丝氨酸蛋白酶对苹果上四种采后病原体的生物防治活性。

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The yeast-like fungus Aureobasidium pullulans PL5 is a microbial antagonist against postharvest pathogens of fruits. The strain is able to produce hydrolases, including glucanases, chitinases and proteases. The alkaline serine protease gene ALP5 from A. pullulans was cloned, inserted into the vector pPIC9 to construct pPIC9/ALP5, and then expressed in Pichia pastoris strain KM71. ALP5 had a molecular mass of 42.9 kDa after 5 days growth with 1% methanol induction at 28 degrees C. The recombinant protease expressed in P. pastoris showed its highest activity under alkaline conditions (at pH 10) and a temperature of 50 degrees C. The antifungal activity of the recombinant protease was investigated against Penicillium expansum, Botrytis cinerea, Monilinia fructicola and Alternaria alternata in vitro and on apple. The recombinant protease reduced significantly the spore germination and the germ tube length of the tested pathogens in PDB medium. The highest level of protease efficacy was observed against M. fructicola and B. cinerea, whereas a lower efficacy was observed against P. expansum and A. alternata indicating a possible effect of the pathogen cell wall composition on the proteolytic activity of the recombinant protease. The presence of protease was able to cause the swelling of the hyphae of B. cinerea, under an optical microscope. The recombinant protease expressed in P. pastoris was more active against the pathogens in vitro than the same enzyme expressed in E. coli in previous studies. The efficacy of ALP5 was also evaluated against the pathogens in vivo on cv Golden Delicious apples. The protease was more efficient in controlling M. fructicola, B. cinerea and P. expansum than A. alternata. However, the extent of the activity was dependent on the enzyme concentration and the length of fruit storage. This study demonstrated the capacity of the alkaline serine protease to keep its enzymatic activity for some days in the unfavorable environment of the fruit wounds. The alkaline serine protease could be developed as a postharvest treatment with antimicrobial activity for fruit undergoing a short storage period
机译:酵母样真菌Aureobasidium pullulans PL5是一种针对水果采后病原体的微生物拮抗剂。该菌株能够产生水解酶,包括葡聚糖酶,几丁质酶和蛋白酶。克隆了来自支链芽孢杆菌的碱性丝氨酸蛋白酶基因ALP5,插入载体pPIC9中以构建pPIC9 / ALP5,然后在巴斯德毕赤酵母菌株KM71中表达。生长5天后,ALP5在28摄氏度下在1%甲醇诱导下的分子量为42.9 kDa。在巴斯德毕赤酵母中表达的重组蛋白酶在碱性条件(pH 10)和50摄氏度的温度下显示出最高的活性。在体外和苹果上研究了重组蛋白酶对扩展青霉菌,灰葡萄孢,灰霉菌和链格孢的抗真菌活性。重组蛋白酶显着降低了PDB培养基中被测病原体的孢子萌发和胚管长度。观察到最高水平的蛋白酶抗果蝇和灰葡萄孢,而观察到较低的抗扩张葡萄球菌和链霉菌的效力,这表明病原体细胞壁组成可能对重组蛋白酶的蛋白水解活性产生影响。在光学显微镜下,蛋白酶的存在能够引起灰葡萄孢菌的菌丝膨胀。与先前研究中在大肠杆菌中表达的相同酶相比,在巴斯德毕赤酵母中表达的重组蛋白酶在体外对病原体更具活性。还评估了CLP Golden Delicious苹果在体内对病原体的ALP5功效。该蛋白酶在控制果蝇分枝杆菌,灰质芽孢杆菌和广角疟原虫方面比交链土壤杆菌更有效。但是,活性的程度取决于酶的浓度和果实贮藏的时间。这项研究证明了碱性丝氨酸蛋白酶能够在不利的水果伤口环境中将其酶活性保持几天。碱性丝氨酸蛋白酶可以开发为具有较短贮藏期水果抗微生物活性的采后处理

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