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1.
细菌纤维素(Bacterial Cellulose,BC)生产中原料椰子水通常经自然预发酵后再使用,对提高BC产量有重要作用。本研究从椰子水产地、预发酵时间、自然预发酵环境3个方面探究了预发酵过程对促进BC合成的必要性和确切性。以预发酵后的椰子水为BC发酵的培养基原料,接种椰冻驹形氏杆菌(Komagataeibacter nataicola)Y19进行BC发酵。结果表明:不同产地的椰子水、经不同预发酵环境、不同预发酵时间后均能显著促进BC合成,对BC产量的增加均有较大影响。在实验室环境预发酵1~3 d时,不同产地椰子水的促进作用均显著,其中产自越南的椰子水在预发酵第2天时BC产量增幅最高,达到对照(新鲜椰子水)的10.8倍;在椰子加工厂区环境进行预发酵时,只需1 d,其BC产量即达最大14.48 g/L,为对照的25.0倍。说明预发酵环境对BC产量增幅影响最大。本文首次阐明椰子水预发酵过程对促进BC合成的必要性和确定性,为进一步揭示椰子水预发酵的本质变化及其对BC发酵调控的影响机制奠定了前期理论基础。   相似文献   

2.
纳塔生产中污染真菌的分离与控制   总被引:1,自引:0,他引:1  
纳塔生产中真菌污染现象最普遍、危害最严重。从纳塔工厂的受污染发酵液、原料椰子水及环境中分离到58株酵母、17株霉菌。研究显示,产膜醭酵母,如假丝酵母(Candidaspp.)、毕赤酵母(Pichiaspp.)是引起污染的主要真菌,它们主要来源于大量带菌的原料椰子水,由于椰子水的不恰当处理而散布到环境中。向发酵液中添加2~3g/L脱氢醋酸钠或1.5~2g/L尼泊金丁酯,可以较好地抑制产膜醭酵母而不影响木醋杆菌的生长和纳塔的合成。   相似文献   

3.
振荡发酵生产球形细菌纤维素   总被引:2,自引:0,他引:2  
采用振荡发酵生产球粒形细菌纤维素,以提供外观和口感新颖独特的纤维素产品.结果表明:培养基的碳源浓度、椰子水添加量、装瓶量、振荡速度等对纤维素颗粒的形状、产量影响较大.最佳发酵工艺为:15g/L蔗糖,(NH4)2SO43 g/L,KH2PO43g/L,MgSO4·7H2O 0.2 g/L,酵母粉0.5 g/L,20%(ν/ν)椰子水,20%(ν/ν)菠萝汁,500mL三角瓶装200mL发酵液(液高3.4 cm),初始pH4.5,150 r/min,30℃振荡培养10d.在此条件下,可得到粒形均匀(φ 0.8~1.0 cm)、产量较高(3.15 g/L)的球形细菌纤维素.这种新型纤维素球粒能满足食品工业和消费者多元化的需求.  相似文献   

4.
以污水源分离菌株Bt BRC-WLY1为供试菌,以啤酒废弃物为培养基,单因素实验优化发酵条件,并探讨补麦芽糖、预处理后的新鲜啤酒酵母液(下称酵母液)和KH2PO4的不同补料成分和补料时间对发酵水平的影响。结果显示,优化的最佳发酵条件是初始pH7.5~8.0、装液量80 mL、发酵温度30 ℃、接种量5%。最佳补料方式为发酵8 h,加入10%的酵母液,与未补料对比,芽胞数、晶体干重、生产强度和单位糖产量分别提高了8、1.78、0.98、3.07倍。  相似文献   

5.
细菌纤维素是一种由微生物合成的新型纳米材料,具有化学纯度高、持水性好、杨氏模量高、良好的生物相容性和可降解性等特性,广泛应用于食品、医疗、化工等领域。但发酵工艺落后、产量低、生产成本高一直是限制其应用于高附加值产品生产的瓶颈。本文概述纤维素产生菌及分离改良、发酵培养基优化、发酵条件对纤维素合成和产量的影响,以及发酵方式对BC产量和性能影响等方面的研究进展,并对BC在生产中的不足和未来应用前景进行展望,为开展更深入的研究和实际生产提供一定借鉴。  相似文献   

6.
用酵母DV10发酵成熟椰子水并研究发酵过程中菌体浓度、底物浓度和产物浓度等变量随发酵时间的变化规律。应用Logistic方程和Leudeking-Piret方程建立了低醇度椰子水发酵过程中菌体生长、底物消耗和产物生成动力学模型,并对动力学拟合方程一阶求导,求出其发酵过程中菌种增长速率、酒精生成速率和底物消耗速率。方差分析结果表明:3个模型的拟合度分别为0.994、0.997、0.997,理论值和实验值的误差平均值分别为4.75%、4.36%和4.42%。因此,3个模型均可很好地阐明酵母DV10发酵低醇度椰子水过程的动态变化。  相似文献   

7.
淡豆豉是一种以黑豆为主要发酵原料的传统药食同源中药,但其炮制周期长且质量不稳定。本研究以从淡豆豉自然混菌发酵中筛选出的1株具有β-D-葡萄糖苷酶活性的异常威克汉姆酵母(Wickerhamomyces anomalus)C5菌株作为发酵菌种,进行纯种酵母炮制型淡豆豉的研制。选取葡萄糖添加量、料液比以及酵母菌接种量3个因素进行单因素试验。利用响应面法分析3个因素对大豆苷元产量的影响,并对淡豆豉的炮制工艺进行优化。结果表明:料液比和葡萄糖添加量对大豆苷元产量的影响极显著,而接种量的影响不显著。最终确定炮制工艺为:葡萄糖添加量8.5%、料液比1∶2.4、接种量10%,炮制周期为6 d。炮制过程中糖苷含量逐渐降低,苷元含量显著升高。大豆苷元和染料木素的产量分别达到964.51和1 123.28μg·g-1。本研究为酵母炮制型淡豆豉的进一步开发提供科学依据。  相似文献   

8.
解淀粉芽孢杆菌TWC2发酵条件的优化   总被引:1,自引:0,他引:1  
为了提高解淀粉芽孢杆菌Bacillus amyloliquefaciens TWC2菌株活性代谢物质的产量,以菌体生物量和发酵液拮抗甘蔗赤腐病菌(Colletotrichum falcatum Went.)活性为指标,采用单因素和正交试验的方法对TWC2菌株发酵培养基成分和发酵条件进行优化。结果表明,TWC2菌株最佳发酵培养基组成为:5 g/L麦芽糖,10 g/L果糖,10 g/L蛋白胨,10 g/L酵母浸出粉,1 g/L CaCl_2。最适发酵条件为:培养温度34℃,摇床转速200 r/min,发酵起始pH 6.0~6.5,接种量7%,装液量40 mL/250 mL,发酵时间为48 h。在最佳发酵培养基和培养条件下,发酵液抑制甘蔗赤腐病菌的能力较优化前提高了39.91%。  相似文献   

9.
香蕉营养丰富、活性物质含量高,可作为深加工产品的优质原料。香蕉果酒是香蕉精深加工产品中的重要一类。由于香蕉果浆碳水化合物含量较高、酸度低、糖分高,其酿造过程中适宜各种微生物的生长繁殖,特别是乳酸菌数量的变化与酸类物质的产生密切相关。乳酸菌群落的变化容易增加发酵过程的风险,造成香蕉酒挥发酸含量超标、品质低下等不良结果。因此明确香蕉果酒发酵过程中自然存在的乳酸菌的生长繁殖规律及其对有机酸代谢的影响,可为精准调控发酵过程、提高产品质量提供理论依据。试验设置商业酵母Lalvin K1TM接种发酵过程(K1)与香蕉果汁自然发酵过程(SF)2组对比,采用实时定量PCR方法和高效液相色谱法对香蕉汁接种发酵(K1)与自然发酵过程(SF)中酵母菌、乳酸菌的生长规律以及有机酸的含量变化进行监测。结果表明:2种发酵处理下,酵母菌和乳酸菌的生长规律有差异;K1酵母菌主导的发酵过程中,乳酸菌的生长受到显著抑制,最大生长量仅为4.0×106 CFU/mL,而酵母菌生物量为1.2×107 CFU/mL;在自然发酵过程中,乳酸菌与酵母菌的生长周期完全错开,但对乳酸菌的生物量无显著影响,乳酸菌与酵母菌的生长量分别达到1.0×107 CFU/mL和1.6×107 CFU/mL。2种发酵过程均表明,酵母菌和乳酸菌的生长存在竞争与抑制关系;有机酸代谢主要与乳酸菌菌落数量相关,不同有机酸的总体变化趋势一致;在发酵过程中,乳酸含量逐渐增加,乙酸含量呈先增后降的趋势,二者在自然发酵样品中的累积量均高于接种发酵;柠檬酸、苹果酸、酒石酸含量整体呈下降趋势。  相似文献   

10.
本文主要考察葡萄糖对毕赤酵母生长和组成型表达α-葡聚糖酶的影响。采用单因素实验法考察初始发酵培养基中葡萄糖浓度、补料阶段葡萄糖残留、通气量等对α-葡聚糖酶产量的影响。结果表明发酵培养基中初始葡萄糖浓度50g/L最佳,提高初始葡萄糖浓度,毕赤酵母生长和α-葡聚糖酶产量都明显受到影响。补料过程葡萄糖残留越小越有利于酶的表达,最理想的控制应该是葡萄糖残留几乎为零,但又保证能满足菌体的生长和表达需要。提高通气量有利于增加α-葡聚糖酶的产量,发酵时间66h为宜。在优化条件下,α-葡聚糖酶酶活达16537U,为利用葡萄糖生产α-葡聚糖酶打下基础。  相似文献   

11.
Bioethanol production using yeast has become a popular topic due to worrying depleting worldwide fuel reserve. The aim of the study was to investigate the capability of Malaysia yeast strains isolated from starter culture used in traditional fermented food and alcoholic beverages in producing Bioethanol using alginate beads entrapment method. The starter yeast consists of groups of microbes, thus the yeasts were grown in Sabouraud agar to obtain single colony called ST1 (tuak) and ST3 (tapai). The growth in Yeast Potatoes Dextrose (YPD) resulted in specific growth of ST1 at micro = 0.396 h-1 and ST3 at micro = 0.38 h-1, with maximum ethanol production of 7.36 g L-1 observed using ST1 strain. The two strains were then immobilized using calcium alginate entrapment method producing average alginate beads size of 0.51 cm and were grown in different substrates; YPD medium and Local Brown Sugar (LBS) for 8 h in flask. The maximum ethanol concentration measured after 7 h were at 6.63 and 6.59 g L-1 in YPD media and 1.54 and 1.39 g L-1in LBS media for ST1 and ST3, respectively. The use of LBS as carbon source showed higher yield of product (Yp/s), 0.59 g g-1 compared to YPD, 0.25 g g-1 in ST1 and (Yp/s), 0.54 g g-1 compared to YPD, 0.24 g g-1 in ST3 . This study indicated the possibility of using local strains (STI and ST3) to produce bioethanol via immobilization technique with local materials as substrate.  相似文献   

12.
Single as well as mixed culture fermentations by yeasts (S. diastaticus;S. cerevistiae) and lactobacilli (L. brevis;L. fermentum) at 30 °C for 72 h improved the starch and protein digestibility (in vitro) of pearl millet flour significantly. The flour fermented bySaccharomyces diastaticus, a starch hydrolysing yeast, had the highest starch digestibility whereas fermentation bySaccharomyces cerevisiae enhanced the in vitro protein digestibility of the flour significantly. Weaning mixtures prepared from the fermented flour were also found to be organoleptically acceptable.  相似文献   

13.
Three wine-making residues (grape seeds, skins and stems), and corn cobs were evaluated as support material for immobilization of Saccharomyces cerevisiae and the ethanol production by the immobilized cells was assessed. The main objective of this study was to find an abundant and low cost material suitable for the cells immobilization and able to be used in a next step of wine production by immobilized yeast cells. The four natural materials were used as support in two different forms: untreated, and treated by a sequence of acid and basic reactions. Untreated grape skin and corn cobs provided the highest cell immobilization results (25.1 and 22.2 mg cells/g support, respectively). The maximum ethanol production yield (about 0.50 g/g) was also obtained when the cells were immobilized in these untreated materials. It was also found that the support materials released nutrients to the medium, which favored the yeast development and the ethanol production. The use of immobilized cells systems under agitated conditions gave ethanol yields similar to those obtained by the static fermentations, but the immobilized cell concentration was significantly lower. In brief, static fermentation with cells immobilized on grape skins or corn cobs appear to be an interesting alternative for use on wine-making. The use of grape skins, particularly, which is a by-product of the wine elaboration, could be of larger interest to obtain an integrated wine production process with by-product reuse.  相似文献   

14.
Commercial baker's yeast consists of Saccharomyces cerevisae, however the strain can vary in each baker's yeast, which might influence the dough fermentation time. The scope of this research was to investigate the dough expansion of wheat doughs fermented by seven commercial baker's yeasts at different yeast concentrations (2.88·1011, 5.76·1011 and 8.64·1011 colony forming units/kg flour) and fermentation temperatures (5 °C, 15 °C, 25 °C and 35 °C). Dough expansion was investigated by monitoring the dough height and it was found to be described well by a first order kinetic model. Doughs fermented with four of the seven yeasts generally had higher kinetic rate constants and hence shorter fermentation times compared to fermentation with the other three yeasts. The shortest fermentation times were found for doughs fermented at 25 °C and the highest yeast concentration, a trend found for all the yeasts tested. The differences in the kinetic rate constants indicate a differentiation in yeast strain among the commercial baker's yeasts emphasising the great importance of the choice of baker's yeast for the dough fermentation time.  相似文献   

15.
酒曲生料发酵制胶废水生产单细胞蛋白   总被引:4,自引:0,他引:4  
应用正交试验设计法,以制胶废水为主要原料,选用酒曲为菌种来源进行生料发酵生产单细胞蛋白。通过对乳清摇瓶发酵条件包括糖含量、培养时间、接种量的优化,以便在最佳的发酵条件下获取最多的单细胞蛋白。结果表明,发酵的最佳条件为∶糖含量0.08g血L(蔗糖),接种量2%(酒曲),培养时间72h。在此条件下,所产的菌体粗蛋白含量为5.16%(w/),菌体生物量(湿重)为79.20gL,发酵液的pH为3.8,其发酵液可作为生物凝固剂凝固胶乳,减少凝固用酸的量。  相似文献   

16.
目的发酵鲜人参中人参皂苷compoundK的分离制备。方法利用硅胶柱层忻,对发酵鲜人参中人参皂苷compoundK进行分离纯化,并通过液相质谱联用仪及核磁共振法对其结构进行鉴定。结果分离得到人参皂苷compoundK的纯度为95%以上,纯品得率为0.6%,理论得率为80%以上。结论该方法简单易行,成本较低,适合大规模工业生产和药理活性试验研究。  相似文献   

17.
Mixed culture fermentation of pearl millet flour withSaccharomyces diastaticus, Saccharomyces cerevisiae, Lactobacillus brevis andLactobacillus fermentum brought about an improvement in its biological utilisation in rats. Protein efficiency ratio, feed efficiency ratio, apparent protein digestibility, true protein digestibility, net protein utilisation, net protein retention, protein retention efficiency and utilisable protein values in case of pure culture fermented pearl millet four were higher than the control. Feeding of the fermented products did not bring about physiological, histopathological and haematological changes in rats.Chapaties and cutlets prepared from the fermented products were organoleptically acceptable.  相似文献   

18.
以可可鲜豆为原料,选取酿酒曲増香高产型、葡萄酒/果酒专用型、32762、1425、1557、葡萄酒/果酒高活性型、1793共7种酿酒酵母进行发酵,利用固相微萃取和气质联用技术分别对7种可可果酒不同发酵阶段的香气成分进行比较。结果表明:发酵2周时,酒液中检出的香气成分分别为41、47、37、39、36、50、35种,其中葡萄酒/果酒高活性型酿制的果酒中香气成分种类较多;可可果酒中香气成分以醇类和酯类为主,主要的酯类成分为辛酸乙酯、癸酸乙酯、苯乙酸乙酯、乙酸苯乙酯、9-十六碳烯酸乙酯,醇类中乙醇和苯乙醇存在较  相似文献   

19.
为筛选出对琯溪蜜柚炭疽病有防治效果的生防菌,以琯溪蜜柚炭疽病菌(Colletotrichum gloeosporioides)为靶标菌,采用平板对峙法进行初筛,用生长速率法和人工接种法对抑菌效果较好的菌株FX28进行抑菌谱及防治效果测定;通过形态学、生理生化特征,结合16S rDNA序列分析等方法研究其分类地位。结果表明:从25份土样中共分离到放线菌105株,对琯溪蜜柚炭疽病菌有较好拮抗作用的放线菌有16株,其中菌株FX28抑菌活性最高,其抑菌带宽度为15.3 mm,抑制率达86.4%,抑菌谱广,对琯溪蜜柚炭疽病菌、琯溪蜜柚黑点病菌、琯溪蜜柚黑斑病菌等14种供试植物病原菌均有抑制作用;其作用机制表现为菌丝分枝增多、变粗、顶端膨大等,对琯溪蜜柚炭疽病的预防效果和治疗效果分别为83.8%和71.1%。根据形态、生理生化特性及16S rDNA序列分析,初步确定菌株FX28为深红紫链霉菌(Streptomyces violaceorubidus)。  相似文献   

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