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1.
硼氢化钠的水解产物是一种新的储氢材料,其良好的可逆储氢能力在5MPa氢气压力真空条件下3分钟后在室温下吸收氢150。根据报道,它已被证明,这两种改变的催化剂NaBH4水解和添加催化剂直接插入接口是两个非常有效进一步提高接口的储氢容量。对hpsb-y2o3脱氢TiO2分别掺杂均达到重量2.4%和重量4.6%。重要的是对hpsb-y2o3可逆的脱氢能力不下降后成功———超循环。相比之下,对hpsb-ceo2可逆脱氢高达到重量5.9%,在室温下5分钟后3MPa氢气压力150氢吸附。  相似文献   
2.
本试验旨在分析抗草甘膦玉米和转Bt基因玉米原料及饲粮与同源非转基因玉米原料及饲粮体外总能消化率以及酶水解物能值,为转基因玉米的营养实质等同性仿生评定方法的研究提供参考。试验采用单因素完全随机设计,使用单胃动物仿生消化系统模拟饲料原料和饲粮在鸡胃肠道的消化过程,分析同源非转基因玉米、抗草甘膦玉米和转Bt基因玉米以及对应的3种玉米-豆粕饲粮在不同体外模拟消化阶段的干物质消化率、总能消化率和酶水解物能值的差异。结果表明:同源非转基因玉米、抗草甘膦玉米和转Bt基因玉米以及对应饲粮在常规概率成分含量上是相似的。抗草甘膦玉米及饲粮与同源非转基因玉米及饲粮相比,在干物质和能量胃消化率、全消化道消化率及酶水解物能值上均没有显著差异(P0.05)。转Bt基因玉米全消化道总能消化率低于同源非转基因玉米(P=0.03,变异系数=0.50%),对应玉米饲粮的酶水解物能值则高于同源非转基因玉米饲粮(P=0.02,变异系数=1.12%),但均处于仿生消化系统测试的误差范围内(变异系数≤1.64%)。由此可见,抗草甘膦玉米的酶水解物能值与同源对照玉米没有差异,而转Bt基因玉米存在统计学意义上的差异,但所有的测值均处于仿生消化系统的测试误差之内。仿生法发现的差异是否具有生物学意义有待体内试验验证。仿生法可为转基因饲料营养等同性研究提供一种新方法。  相似文献   
3.
The present study investigated the effects of Bacillus coagulans and yeast hydrolysate supplementation on growth performance, immune response and intestinal barrier function of weaned piglets. Twenty-four weaned piglets with an average body weight (BW) of 6.89 ± 0.15 kg were divided into four diets for 28 days. The treatments were basal diet (control), basal diet supplemented with antibiotic (20 mg/kg colistin sulphate and 40 mg/kg bacitracin zinc, AT), probiotics (400 mg/kg Bacillus coagulans ≥5 × 109 CFU/g, BC) or yeast hydrolysate (5000 mg/kg yeast hydrolysate, YH). Average daily gain (ADG) and average daily feed intake (ADFI) were improved by AT and YH diets (p < 0.05), while BC diet only increased ADG (p < 0.05). The complement 3 (C3), lysozyme (LZM) and tumour necrosis factor-α (TNF-α) concentrations in serum were increased in BC diet (p < 0.05). Feeding AT and YH caused the increase of jejunal villus height (p < 0.05), and a higher ratio of villus height/crypt depth was observed in AT, BC and YH groups (p < 0.05). The mRNA expression of zonula occludens-1 (ZO-1) in jejunal mucosa was up-regulated by AT, BC and YH diets (p < 0.05). Dietary AT, BC or YH inclusion decreased the interleukin-1β (IL-1β) concentration and TNF-α mRNA expression (p < 0.05), and YH supplementation even down-regulated toll-like receptor 4 (TLR4) and CD14 expressions (p < 0.05). In summary, the dietary administration of BC or YH both improves growth performance through promoting the intestinal barrier function, indicating both of them can serve as potential alternatives to antibiotics growth promoters for the piglet production.  相似文献   
4.
Although the S8 family in the MEROPS database contains many peptidases, only a few S8 peptidases have been applied in the preparation of bioactive oligopeptides. Bovine bone collagen is a good source for preparing collagen oligopeptides, but has been so far rarely applied in collagen peptide preparation. Here, we characterized a novel S8 gelatinase, Aa2_1884, from marine bacterium Flocculibacter collagenilyticus SM1988T, and evaluated its potential application in the preparation of collagen oligopeptides from bovine bone collagen. Aa2_1884 is a multimodular S8 peptidase with a distinct domain architecture from other reported peptidases. The recombinant Aa2_1884 over-expressed in Escherichia coli showed high activity toward gelatin and denatured collagens, but no activity toward natural collagens, indicating that Aa2_1884 is a gelatinase. To evaluate the potential of Aa2_1884 in the preparation of collagen oligopeptides from bovine bone collagen, three enzymatic hydrolysis parameters, hydrolysis temperature, hydrolysis time and enzyme-substrate ratio (E/S), were optimized by single factor experiments, and the optimal hydrolysis conditions were determined to be reaction at 60 ℃ for 3 h with an E/S of 400 U/g. Under these conditions, the hydrolysis efficiency of bovine bone collagen by Aa2_1884 reached 95.3%. The resultant hydrolysate contained 97.8% peptides, in which peptides with a molecular weight lower than 1000 Da and 500 Da accounted for 55.1% and 39.5%, respectively, indicating that the hydrolysate was rich in oligopeptides. These results indicate that Aa2_1884 likely has a promising potential application in the preparation of collagen oligopeptide-rich hydrolysate from bovine bone collagen, which may provide a feasible way for the high-value utilization of bovine bone collagen.  相似文献   
5.
为了降低玉米芯半纤维素水解液中的乙酸、糠醛和酚类等有毒物质含量,使可利用糖类含量增加。本研究以玉米芯为原料制备水解液,对预处理及脱毒工艺进行优化,并利用高效液相色谱(HPLC)检测优化效果。结果表明,10~20目的玉米芯在10%氨水浸泡24 h后,可将乙酸和酚类物质的脱除率,分别提高至93.4%和32.3%,而糠醛的含量也大大降低。经过真空浓缩、CaO脱毒以及2%活性炭吸附后,使有毒物质含量再次降低,此时的水解液可完全用于菌株的发酵试验,达到了去除的目的。本文所得到的最佳水解液处理步骤,其结果符合菌株发酵用标准,说明水解液处理方式的不同,直接影响着水解液的制备。这为研究和利用木质纤维素等可再生资源提供了思路,也为发酵生产奠定了理论基础。  相似文献   
6.
目的:比较分析木瓜蛋白酶、胃蛋白酶和胰蛋白酶三种不同酶水解牡蛎获得的蛋白产物抗氧化活性和功能特性。方法:采用木瓜蛋白酶、胃蛋白酶和胰蛋白酶三种不同酶水解牡蛎蛋白获得水解物,并分别测定它们的在不同pH下的溶解度、乳化性以及不同浓度水解物的还原能力、DPPH自由基清除率和Fe2 +螯合能力。结果:表明三种酶水解物都有较高的溶解度(p<0.01),胰蛋白酶产生的水解物溶解高度达94.8%(p<0.05);水解物溶解度和乳化活性指数在pH4显著降低(p<0.05)。牡蛎蛋白质水解产物的还原能力、DPPH自由基清除能力和金属螯合活性随浓度的增加而增强,其中胰蛋白酶和胃蛋白酶抗氧化能力较强(p<0.01)。结论:三种蛋白酶水解牡蛎蛋白可获得抗氧化活性强、溶解度高的水解物,并受浓度和pH的影响,它们的水解物可作为一种潜在的抗氧化功能多肽利用。  相似文献   
7.
研究了鳄鱼血蛋白酶解产物的抗氧化特性和对血管紧张素转化酶( ACE)的抑制活性。利用木瓜蛋白酶酶解鳄鱼血浆蛋白和血球蛋白,用分光光度法测定了酶解产物的抗氧化能力和用高效液相色谱( HPLC)测定其ACE的抑制率。结果显示:鳄鱼血浆和血球蛋白酶解产物的亚铁离子螯合能力差异性不显著( P>0.05);在0~5 mg/mL的浓度范围内,血球蛋白酶解产物清除ABTS自由基的能力大于血浆蛋白酶解产物,且在浓度为1 mg/mL时,两者清除ABTS自由基的能力差异性极显著( P<0.01);血浆蛋白酶解产物清除DPPH自由基的能力在0~5 mg/mL的浓度范围内随着蛋白浓度的增加而升高,血球蛋白酶解产物在蛋白浓度为4 mg/mL处达到最大清除率,之后下降;在0~20 mg/mL的浓度范围内,两种酶解产物的还原力随着蛋白浓度的提高显著升高,但两者还原力的差异性不显著( P>0.05);鳄鱼血浆和血球蛋白酶解产物对ACE具有良好的抑制力,其最大抑制率可分别达到75.56%和86.42%。研究表明,鳄鱼血蛋白酶解产物在体外具有抗氧化和抑制ACE的活性。  相似文献   
8.
鱼肉酶解物及壳聚糖对鲤鱼涂膜保鲜效果的研究   总被引:1,自引:0,他引:1  
以感官评分、挥发性盐基氮、菌落总数、K值为指标,研究比较了鱼肉酶解物和壳聚糖为原料的涂膜液对鲤(Cyprinus carpio)(4℃)冷藏过程中品质变化的影响。结果显示:贮藏期间,对照组的感官评分显著低于各涂膜组(P<0.05)。贮藏前8 d,涂膜组能够显著抑制K值的升高(P<0.05)。鱼肉酶解物和壳聚糖涂膜组均能够显著抑制细菌的生长,而贮藏2~6 d内鱼肉酶解物涂膜鲤鱼的菌落总数显著低于壳聚糖涂膜组(P<0.05)。贮藏后期,鱼肉酶解物组能延缓TVB-N值的升高,壳聚糖涂膜组能够显著抑制TVB-N值的升高(P<0.05)。鱼肉酶解物可作为一种新的可食性涂膜材料,用于延长鲤鱼的贮藏期。  相似文献   
9.
The study was conducted to investigate the effects of taurine (Tau) alone or in combination with fish protein hydrolysate (FPH) on growth performance, the expression of Tau transporter (TauT) and metabolic profile in juvenile turbot. FM, FPH0, FPH0+T, FPH10 and FPH10+T diets, respectively, contained 300, 150, 150, 80, and 80 g/kg fishmeal. FPH10 and FPH10+T diets contained 62 g/kg FPH. FPH0+T and FPH10+T diets were, respectively, prepared by supplementing the FPH0 and FPH10 diet formulations with 8 g/kg Tau. Specific growth rate was the highest in FM group and the lowest in FPH10 group. TauT mRNA levels in fish fed Tau supplemented diets were significantly lower than that in Tau unsupplemented diets. NMR‐based metabolomics analysis showed that Tau contents in liver of FPH0+T and FPH10+T were significantly higher than that of FM, FPH0 and FPH10. In muscle, Tau contents were significantly decreased in the FPH10+T versus FPH0 and the FPH10+T versus FPH10 comparisons. In conclusion, 62 g/kg FPH to replace fishmeal may not affect Tau synthesis, transport and metabolism. However, Tau supplemented alone or in combination with a certain level of FPH could reduce the requirement for Tau synthesis and transport and increased Tau levels in muscle and liver.  相似文献   
10.
ABSTRACT

A protein hydrolysate was prepared from proteins of tuna dark muscle by-product. The hydrolysis conditions (time, temperature, pH, and enzyme concentration) using Alcalase was optimized by response surface methodology (RSM). The regression coefficient close to 1.0, observed during experimental and validation runs, indicated the validity of the model. The hydrolysate produced under the optimum conditions determined by RSM has a low rate of peptide fraction of molecular weight of 4–1 kDa. Meanwhile, the results obtained by hydrolysis under optimal conditions determined by a complementary study (temperature 55°C, time 60 min, 1% enzyme concentration, and pH 8.5) show that the hydrolysate produced has a height rate of the peptide fraction of molecular weight of 4–1 kDa. The amino acid composition of the protein hydrolysate prepared proved to have the potential for application as an ingredient in balanced fish diets and as a source of nitrogen in microbial growth media.  相似文献   
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