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1.
In this study, Torulaspora delbrueckii alone and in combination with silicon were evaluated for the control of apple blue mould disease caused by Penicillium expansum. In vitro, the antagonistic effects of T. delbrueckii in controlling mycelial growth of P. expansum on potato-dextrose-agar (PDA) in dual cultures, and the growth of P. expansum alone with cell-free metabolites and volatile components of T. delbrueckii were assayed. In vitro, to evaluate the direct effect of silicon on mycelial growth of pathogen, silicon at different concentrations (0.2, 0.4, 0.6, 1 and 2% (wt./vol.)) was added to PDA medium. Silicon at 0.6% (wt./vol.) and above concentrations completely inhibited the mycelial growth of P. expansum. However, it had no significant effect on population dynamics of yeast in vitro and in apple wounds. In vivo, silicon at 0.2 and 1% (wt./vol.) in combination with antagonistic yeast (1 × 108 cell/ml) was a more effective approach to reduce the lesion diameter of blue mould decay of apples than the application of silicon or T. delbrueckii alone at 20 and 4°C, respectively.  相似文献   
2.
In this study, antagonistic yeast Candida membranifaciens was combined with different concentrations of silicon (Si; 0, 0.1, 0.3 and 0.5% wt/vol) to evaluate the control of blue mold of apple in storage at 20°C and 5°C. Preliminary studies showed that Si at 0.6% or above inhibited mycelial growth of pathogens significantly in vitro. In vitro studies showed that Si at 0.1% had lower effect on yeast growth. In vivo studies showed that combination of different concentrations of Si with C. membranifaciens improved the efficacy of yeast in control of disease better than Si and yeast alone (P < 0.05). Our result showed that the effective concentration of Si is varied based on pathogen isolates and temperature, so that the most effective concentration of Si was 0.5% for isolate P2 at 20°C and 0.5% and 0.1% for isolates P1 and P2 at 5°C.  相似文献   
3.
A specific symbiotic Bacillus sp. isolated from a rhabditid entomopathogenic nematode, Rhabditis (Oscheius) sp. was found to produce large number of bioactive compounds. The present study was conducted to determine the effect of carbon and nitrogen sources for the production of antimicrobial substances by Bacillus sp. The yield of the crude antimicrobial substances and antimicrobial activity against the test micro-organism also differed significantly when carbon and nitrogen sources in the fermentation media were changed. The antifungal activity was significantly high in yeast extract plus fructose (46.5?±?2.12?mm) followed by yeast extract plus maltose, beef extract plus fructose and meat infusion plus glucose. High pressure liquid chromatography analysis of the crude antimicrobial substances revealed different peaks with different retention time indicating that they produced different compounds. When the carbon source was not included in the fermentation media, the antimicrobial production was substantially reduced. The results indicate that carbon source in the fermentation media plays a vital role in the production of antifungal substances. It is concluded that yeast extract and fructose as nitrogen and carbon sources produced maximum activity, which can effectively control the blue mould caused by Penicillium expansum in apples and pears.  相似文献   
4.
三种拮抗酵母菌对苹果采后青霉病的抑制效果   总被引:3,自引:0,他引:3  
从苹果果实上分离获得的50余种酵母菌中筛选出了能够有效地抑制苹果青霉病(Peniclium expansum Link)的丝孢酵母(Trichosporon pullulans(Lindner.)Diddens and Lodder)。罗伦隐球酵母(Cryptococcus laurentii(Kuffer.)skin-ner)和粘红酵母(Rhodotorula glutinis(Fresen.)F.C.Harrison)。其中,抑病效果最好的T.pullulans是一种用于采后果实生物防治的新型拮抗菌,研究了这三种拮抗菌不同浓度处理和外加营养物质以及与钙配合使用对苹果青霉病的抑病效果。实验结果表明;酵母菌浓度越高,抑病作用越强;外源营养物质的加入削弱了酵母菌的拮抗效果;在C.laurentii的细胞悬浮液中加入0.18mol/L的CaCl2能显著提高其抑病能力。但增加CaCl2对T.pullulans和R.glutinis的抑病效果却没有明显作用。  相似文献   
5.
K202A突变对扩展青霉脂肪酶热稳定性的影响   总被引:2,自引:0,他引:2  
利用易错PCR定向进化扩展青霉脂肪酶(PEL),获得了一株热稳定性有所提高的随机突变体(ep8),ep8包含有一个氨基酸的改变。为进一步提高其热稳定性,作者利用重叠延伸PCR法,以ep8基因为模板,将第202位赖氨酸突变为丙氨酸(K202A),构建表达质粒pAO815-ep8-K202A。并将其引入毕赤酵母GS115构建叠加突变体(PEL-ep8-K202A)。同时以野生型lip07为模板构建单点突变体:PEL-lip07-K202A。15% SDS-PAGE 结果分析表明突变体分子量与野生型一致,约为28KD. 表达产物热稳定性分析结果表明: 野生型(PEL)的Tm值为39.03℃,而以野生型为模板进行定点突变得到的单点突变酶(PEL-lip07-K202A),其Tm却降低了2℃,为37.08℃。叠加突变酶(PEL-ep8-K202A)的Tm为41.66℃, 比野生型酶提高2.63℃,比随机突变体ep8生产的酶(PEL-ep8)的Tm提高了1.21℃。  相似文献   
6.
假单胞菌YL11对扩展青霉的抑制作用及其机理初探   总被引:1,自引:1,他引:0  
【背景】苹果青霉病是由扩展青霉引起的一种重要的果实采后病害,影响果实品质导致苹果腐烂从而造成经济损失。【目的】研究假单胞菌YL11对扩展青霉的抑制作用和苹果采后青霉病的防治效果,并对抑菌机理进行初步探讨。【方法】以扩展青霉为供试菌株,研究不同浓度的假单胞菌YL11无菌发酵液对扩展青霉菌落直径、孢子萌发率、菌丝体干重、苹果损伤接种病斑直径扩展的影响,利用对电导率、核酸及蛋白释放量、AKP含量、SDH活性、ATP酶活性和ATP含量的影响对抑菌机理进行探究。【结果】假单胞菌YL11无菌发酵液能有效抑制扩展青霉生长,抑菌圈直径为22.33±0.27 mm,抑菌效价为71.67 mm/mL;能有效抑制孢子萌发,100%无菌发酵液对孢子萌发抑制率达到80.2%;对扩展青霉的生物量也有一定抑制作用,体积分数为100%时,菌丝体干重为4.7mg/mL,抑制率达到39.74%;无菌发酵液处理能有效抑制苹果青霉病病斑的扩展,3d时对病斑扩展的抑制率最大,达到47.1%;无菌发酵液处理均能引起电导率升高、胞内核酸和蛋白释放量增大、胞外AKP含量升高、SDH活性降低、ATP酶活性和ATP含量均降低,且随着发酵液浓度的增加效果越明显。【结论】假单胞菌YL11能显著抑制扩展青霉的生长,破坏细胞膜结构、降低能量代谢酶活性,从而扰乱扩展青霉的正常生长,对苹果青霉病有较好的生防效果,具有潜在的开发价值。  相似文献   
7.
扩展青霉PF868变株发酵液经硫酸铵盐析和Sephadex-G-200及Sepharose4B柱层析纯化,获得纯化倍数为32.4的酶粉.该酶分子量为23442Dal.酶学特性表明:该酶的最适作用温度为32℃,50℃保温30min仍保留50%酶活性,最适pH为9.0,作用pH稳定范围在7.0—10.0之间.Ca~(2+)Mg~(2+)对酶有激活作用.Fe~(2+)、Cu~(2+)和Mn~(2+)对酶活力有抑制作用.  相似文献   
8.
E83V对扩展青霉脂肪酶最适作用温度的影响   总被引:2,自引:0,他引:2  
利用重叠延伸PCR法对扩展青霉碱性脂肪酶(PEL)基因作了体外定点突变,获得了最适作用温度有所提高的突变体。含突变基因的重组质粒pPIC3.5K-lip-E83V在Pichia pastoris GS115中表达。对突变体表达产物PEL-E83V-GS与野生型表达产物PEL-GS作了比较:前者最适作用温度为45℃,比野生型提高了5℃;其热稳定性基本不变;突变体在37℃下的表达量为188U/mL,约为野生型的80%。最适作用温度的提高可能是由于83位亲水性的Glu用疏水性的Val取代,增加了脂肪酶表面的疏水作用,使其在高温下更适于与底物的结合。  相似文献   
9.
抗性突变株筛选法选育碱性脂肪酶高产菌   总被引:7,自引:0,他引:7  
以扩展青霉(Penicillum expansum)P1336为出发菌株,研究研究琥珀酸和制霉菌素对菌株生长的影响。经过多代诱,获得一突变株W-2580,其中酶水平比出发株P1336菌株提高34.7%,该菌菌丝体表角固醇下降了12.2%。  相似文献   
10.
Lactic acid bacteria with potential to eliminate fungal spoilage in foods   总被引:4,自引:0,他引:4  
Aims: To investigate antifungal activity produced by lactic acid bacteria (LAB) isolated from malted cereals and to determine if such LAB have the capacity to prevent fungal growth in a particular food model system. Methods and Results: The effect of pH, temperature and carbon source on production of antifungal activity by four LAB was determined. Pediococcus pentosaceus was used to conduct a trial to determine if it is feasible to eliminate Penicillium expansum, the mould responsible for apple rot, using an apple model. Penicillium expansum was incapable of growth during the trial on apple‐based agar plates inoculated with the antifungal‐producing culture, whereas the mould did grow on apple plates inoculated with an LAB possessing no antifungal activity. Conclusion: Partial characterization of the antifungal compounds indicates that their activity is likely to be because of production of antifungal peptides. The trial conducted showed that the antifungal culture has the ability to prevent growth of the mould involved in apple spoilage, using apples as a model. Significance and Impact of the study: The ability of an LAB to prevent growth of Pen. expansum using the apple model suggests that these antifungal LAB have potential applications in the food industry to prevent fungal spoilage of food.  相似文献   
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