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首页> 外文期刊>International Journal of Food Microbiology >Postharvest application of a novel chitinase cloned from Metschnikowia fructicola and overexpressed in Pichia pastoris to control brown rot of peaches
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Postharvest application of a novel chitinase cloned from Metschnikowia fructicola and overexpressed in Pichia pastoris to control brown rot of peaches

机译:从梅西克威威尼亚果酱克隆的新蛋白酶酶的开采应用,在毕赤酵母中克服桃褐色腐烂的棕色腐烂

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摘要

Metschnikowia fructicola strain AP47 is a yeast antagonist against postharvest pathogens of fruits. The yeast was able to produce chitinase enzymes in the presence of pathogen cell wall. A novel chitinase gene MfChi (GenBank accession number HQ113461) was amplified from the genomic DNA of Merschnikowia fructicola AP47. Sequence analysis showed lack of introns, an open reading frame (ORF) of 1098 bp encoding a 365 amino acid protein with a calculated molecular weight of 40.9 kDa and a predicted pl of 527. MfChi was highly induced in Metschnikowia fructicola after interaction with Monilinia fructicola cell wall, suggesting a primary role of MfChi chitinase in the antagonistic activity of the yeast. The MfChi gene overexpressed in the heterologous expression system of Pichia pastoris KM71 and the recombinant chitinase showed high endochitinase activity towards 4-Nitrophenyl beta-D-N, N ' N"-triacetylchitotriose substrate. The antifungal activity of the recombinant chitinase was investigated against Monilinia fructicola and Monilinia laxa in vitro and on peaches. The chitinase significantly controlled the spore germination and the germ tube length of the tested pathogens in PDB medium and the mycelium diameter in PDA. The enzyme, when applied on peaches cv. Redhaven, successfully reduced brown rot severity. This work shows that the chitinase MfChi could be developed as a postharvest treatment with antimicrobial activity for fruit undergoing a short shelf life, and confirms that P. pastoris KM71 is a suitable microorganism for cost-effective large-scale production of recombinant chitinases. (C) 2015 Elsevier B.V. All rights reserved.
机译:Metschnikowia Fructicola菌株AP47是一种抗果实拮抗剂的酵母拮抗剂。酵母能够在病原体细胞壁存在下产生几丁质酶。从Merschnikowia Fructicola AP47的基因组DNA扩增了一种新的逐蛋白酶基因MFCHI(GenBank登录号HQ113461)。序列分析显示缺乏内含子,一种1098bp的开放阅读框(ORF)编码365氨基酸蛋白,其分子量为40.9kDa,预测的PL为527.MFCHI在与Monilinia Fructicola相互作用后在Metschnikowia Fructicola中诱导。细胞壁,暗示MFCHI Chitinase在酵母的拮抗活性中的主要作用。在Pichia Pastoris KM71的异源表达系统中过表达的MFCHI基因和重组逐胰酶酶的高端偶联酶活性朝向4-硝基苯基β-DN,N'N N“ - 棘爪素底物。对单色菌果糖蛋白的重组丁碱酶的抗真菌活性进行研究monilinia laxa在体外和桃子上。丁蛋白酶显着控制了PDB培养基中测试病原体的孢子萌发和生物管长度,在PDA中。酶,当涂上桃子CV时。红南,成功减少了褐色腐败严重程度。这项工作表明,Chitinase MFCHI可以被开发为具有抗微生物活性的去氨基乙醇处理,用于遭受短属保质期的水果,并确认P. Pastoris KM71是一种合适的微生物,用于具有重组逐碱基的成本效益大规模生产的合适微生物。( c)2015年Elsevier BV保留所有权利。

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