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1.
应用16S rRNA基因技术研究仔猪结肠梭菌Ⅳ群变化   总被引:1,自引:0,他引:1  
边高瑞  谢飞  苏勇?  朱伟云 《微生物学报》2010,50(10):1373-1379
【目的】研究从7日龄到35日龄(断奶后两周)仔猪结肠中梭菌Ⅳ群(柔嫩梭菌群,Clostridium Leptumgroup)结构以及数量的变化,探究该菌群与结肠中丁酸浓度的关系。【方法】选取3窝新生仔猪,分别在7、14、21(断奶)、24和35日龄每窝随机屠宰1头,收集结肠内容物,利用气相色谱测定挥发性脂肪酸(Volatilefatty acid,VFA);提取结肠内容物总细菌DNA,利用基于16S rRNA基因的变性梯度凝胶电泳(Denaturinggradient gel electrophoresis,DGGE)和Real-time PCR技术定性、定量分析梭菌Ⅳ群。【结果】对仔猪结肠中梭菌Ⅳ群DGGE图谱进行相似性分析显示,7日龄仔猪样品归于一簇,数值达90%以上,而与其他日龄的样品间相似性较低,断奶前(21日龄)和断奶后3天菌群则没有显著变化。Real-time PCR定量分析显示,仔猪结肠总细菌拷贝数在断奶后3天显著降低,这一趋势与结肠中的总挥发性脂肪酸和丁酸浓度变化相似,而梭菌Ⅳ群拷贝数变化则不显著。克隆和测序分析表明,仔猪结肠梭菌Ⅳ群中的优势菌为Faecalibacteriumprausnitzii,Subdoligranulum variabile以及一些未培养细菌。【结论】7日龄至14日龄仔猪结肠中梭菌Ⅳ群发生改变,但断奶对其影响不大;该菌群和结肠丁酸浓度关系还需进一步研究。  相似文献   

2.
毛胜勇  苏勇  杨翠凤  朱伟云 《微生物学报》2011,51(10):1390-1397
【目的】为评价仔猪结肠中产甲烷菌群多样性及其与环境因子(日粮类型、断奶应激及日龄)的相关性。【方法】分别采集了7、14、21、24和35日龄仔猪结肠内容物,进行基因组总DNA的提取,运用变性梯度凝胶电泳(Denaturing gradient gel electrophoresis,DGGE)技术分析各结肠样总DNA的产甲烷菌的PCR产物,同时研究了与甲烷生成相关的结肠内挥发性脂肪酸(Volatile fatty acid,VFA)的变化情况。【结果】结果表明,仔猪结肠内容物中乙酸、丙酸和总挥发性脂肪酸(Total volatile fatty acid,TVFA)浓度随日龄增加而显著升高(P<0.05),但丁酸浓度未有显著性变化(P>0.05);基于Dice模式的UPGMA聚类分析的DGGE指纹图谱结果显示,7-24日龄结肠样的产甲烷菌群落结构相似性较高,聚集到一个分支上;而35日龄的结肠样聚集到另一分支上;冗余分析(Redundancy analysis,RDA)结果表明,日龄和日粮类型与产甲烷菌群落结构的关联度较高;序列分析表明,仔猪结肠食糜中甲烷菌群主要以甲烷短杆菌为主,同时存在另一类未知甲烷菌。【结论】本研究表明,甲烷短杆菌是仔猪结肠中的优势产甲烷菌,日龄和日粮类型与仔猪结肠中产甲烷菌群落结构的相关性最强。  相似文献   

3.
早期灌喂母源粪菌对新生仔猪肠道菌群发育的影响   总被引:1,自引:0,他引:1  
陈雪  任二都  苏勇 《微生物学报》2018,58(7):1224-1232
【目的】粪菌移植(fecal microbiota transplantation,FMT)作为一种治疗手段,已在人类肠道疾病治疗中有较多应用,但在干预新生仔猪肠道菌群上的研究未见报道。本文旨在研究早期母源粪菌移植对新生仔猪肠道菌群发育的影响。【方法】选取一窝12头杜长大新生仔猪,随机分为粪菌处理组(feces treatment,FT)和对照组(control,CO)。FT组仔猪出生后1–5 d每日灌注母源粪菌接种液,CO组灌注等量生理盐水。于1、3、5、7、10、14、18和22日龄采集仔猪粪样,Miseq高通量测序分析仔猪粪便菌群。【结果】灌喂母源粪菌有增加仔猪肠道菌群丰富度的趋势;主坐标分析显示,两组仔猪粪样菌群结构簇并未分开,并在18和22日龄时靠近母猪粪样菌群结构簇;随日龄增加,两组仔猪肠道中的变形菌门丰度均显著降低,而厚壁菌门的丰度显著增加,且从10日龄起拟杆菌门和厚壁菌门之和约为90%;与对照组相比,灌喂母源粪菌增加了10日龄时Escherichia-Shigella的丰度,而降低了18日龄时该菌属的丰富度,18日龄时肠球菌属和普氏菌属的丰度则显著增加。【结论】1–3日龄口服灌喂母源粪菌液并不能影响仔猪肠道菌群的定殖,这一阶段主要受母体微生物结构的影响;灌喂粪菌液对仔猪肠道菌群定殖的影响最多持续10–14 d;而且仔猪在22 d左右,肠道菌群结构逐渐趋同于母猪肠道菌群。  相似文献   

4.
摘要:【目的】本文旨在研究产甲烷菌抑制剂溴氯甲烷(BCM)对采食高、低脂肪水平日粮小鼠的肠道微生物以及脂肪代谢的影响。【方法】选取32只21日龄的雌性C57BL/6J小,随机分成4组:对照低脂日粮组、对照低脂日粮加BCM组、高脂日粮组及高脂日粮加BCM组,每组8个重复,BCM通过饮水添加。饲养周期为6周,试验期结束,采集小鼠血液样品,用于生化指标分析;采集小鼠盲肠内容物,用变性梯度凝胶电泳(DGGE)和real-time PCR技术分析其菌群;气相色谱法分析粪样中短链脂肪酸含量;real-time PCR技术分析 肝脏中脂肪代谢相关基因表达。【结果】高脂日粮和BCM处理对小鼠体增重均无显著影响;DGGE图谱中低脂日粮组和高脂日粮组样品聚于不同簇,但对各组总细菌、产甲烷菌和硫还原菌数量无显著影响。高脂日粮组粪样中乙酸占总挥发酸比例显著降低(P<0.05);BCM处理显著增加小鼠粪样丙酸比例(P<0.05);高脂日粮处理显著影响高密度脂蛋白胆固醇、低密度脂蛋白胆固醇和总胆固醇含量(P<0.05);高脂日粮处理促进了甘油三酯水解酶表达(P<0.05)。【结论】高脂日粮对小鼠肠道菌群结构以及脂肪代谢有明显影响,而BCM处理影响较小。  相似文献   

5.
16S rDNA技术研究新生腹泻仔猪粪样细菌区系的多样性变化   总被引:13,自引:2,他引:11  
用PCR/DGGE技术跟踪一窝5头新生腹泻仔猪自然康复、补饲、断奶过程中粪样细菌区系的演变,构建3头仔猪42日龄粪样的16S rDNA克隆库,分析匹配于DGGE优势谱带23个克隆的16S rDNA序列。结果表明,DGGE图谱由简单(2日龄)到复杂(10日龄),再回复简单(16日龄)到复杂(断奶),最后趋于稳定。2、16日龄DGGE图谱最简单、相似,最优势谱带为大肠杆菌;10日龄(补饲后3天)图谱复杂,大肠杆菌存在但不是最优势谱带,补饲前后图谱的相似性低,补饲导致了粪样细菌区系结构的显著变化;断奶前(27日龄)和后(35、42日龄)图谱复杂,优势谱带、图谱相似性均趋向稳定。序列分析表明,23个克隆中除5个与未知细菌最相似外,其余最相似菌分属于肠球菌(Enterococcus),链球菌(Streptococcus),梭菌(Clostridium),消化链球菌(Peptostreptococcus)和乳酸杆菌(Lactobacillus)。  相似文献   

6.
变性梯度凝胶电泳法研究断奶仔猪粪样细菌区系变化   总被引:43,自引:4,他引:39  
利用PCR和DGGE技术分析了12头仔猪在断奶后其粪样细菌区系的变化。粪样细菌16S rDNA的V6~V8可变区经PCR扩增,扩增产物经DGGE电泳后再进行相似性分析。结果表明,仔猪断奶当天粪样 DGGE谱带少,同窝仔猪间图谱相似。断奶后,随着断奶时间的推移,每头仔猪的DGGE图谱带逐渐增多,变得复杂和多样,仔猪个体间DGGE图谱差异逐渐增大。仔猪是否同窝以及所采食日粮类型对DGGE图谱没有明显影响。相似性分析还表明,日粮中添加寡果糖的仔猪在断奶后第1周,其粪样微生物区系变化迅速,而后缓慢。  相似文献   

7.
【目的】本文旨在研究产甲烷菌抑制剂溴氯甲烷(BCM)对采食高、低脂肪水平日粮小鼠的肠道微生物以及脂肪代谢的影响。【方法】选取32只21日龄的雌性C57BL/6J小鼠,随机分成4组:对照低脂日粮组、对照低脂日粮加BCM组、高脂日粮组及高脂日粮加BCM组,每组8个重复,BCM通过饮水添加。饲养周期为6周,试验期结束,采集小鼠血液样品,用于生化指标分析;采集小鼠盲肠内容物,用变性梯度凝胶电泳(DGGE)和real-time PCR技术分析其菌群;气相色谱法分析粪样中短链脂肪酸含量;real-time PCR技术分析肝脏中脂肪代谢相关基因表达。【结果】高脂日粮和BCM处理对小鼠体增重均无显著影响;DGGE图谱中低脂日粮组和高脂日粮组样品聚于不同簇,但对各组总细菌、产甲烷菌和硫还原菌数量无显著影响。高脂日粮组粪样中乙酸占总挥发酸比例显著降低(P0.05);BCM处理显著增加小鼠粪样丙酸比例(P0.05);高脂日粮处理显著影响高密度脂蛋白胆固醇、低密度脂蛋白胆固醇和总胆固醇含量(P0.05);高脂日粮处理促进了甘油三酯水解酶表达(P0.05)。【结论】高脂日粮对小鼠肠道菌群结构以及脂肪代谢有明显影响,而BCM处理影响较小。  相似文献   

8.
陈长卿  姜云  孟丽  李玉 《微生物学报》2012,52(8):977-984
[目的]了解草菇以废棉为主要成分的培养料在二次发酵过程中细菌群落结构变化情况,确定发酵不同阶段的优势菌群,为能够在分子水平上快速准确地监测发酵过程中菌群动态变化奠定基础.[方法]采用变性梯度凝胶电泳(denaturing gradient gel electrophoresis,DGGE)及克隆菌株16S rDNA序列分析技术对草菇废棉培养料二次发酵不同阶段的样品中细菌群落结构进行分析.[结果]DGGE图谱显示,细菌群落多样性较为丰富,条带多样性随着发酵进程逐渐降低,而且在不同阶段中的优势条带及相对丰度在发生着动态的变化.回收克隆的23个不同发酵阶段的优势菌株来自于变形菌门、拟杆菌门和厚壁菌门,α,β,γ-变形菌纲、鞘脂杆纲、拟杆菌纲和梭菌纲6个菌纲的11个属,其中19株克隆菌株为耐热细菌,在发酵的高温及降温阶段,丛毛单胞菌属、鞘脂杆菌属、中华根瘤菌属和寡养单胞菌属细菌为优势类群.[结论]草菇废棉培养料二次发酵过程中细菌的群落结构及优势菌群在发生着动态的变化,尤其是在进入高温期阶段,优势菌群变化显著.  相似文献   

9.
【目的】研究复合菌发酵饲料对生长育肥猪结肠发酵、结肠黏膜与结肠内容物菌群组成的影响。【方法】采用气相色谱法检测育肥猪结肠内容物中挥发性脂肪酸浓度;采用MiSeq高通量测序方法检测育肥猪结肠黏膜与内容物中细菌菌群组成。【结果】饲喂发酵饲料对结肠黏膜及内容物中菌群多样性无显著影响(P0.05);显著提高了猪结肠黏膜中魏斯菌属和柔嫩梭菌属的相对丰度(P0.05),提高了结肠内容物中魏斯菌属、Subdoligranulum菌属相对丰度(P0.05);饲喂发酵饲料对结肠内容物中pH、乳酸、乙酸、丙酸、异丁酸、戊酸、异戊酸和总挥发性脂肪酸浓度无显著影响(P0.05),但显著提高了结肠内容物中的丁酸水平(P0.05)。【结论】饲喂复合菌发酵饲料可在一定程度上影响育肥猪结肠中细菌菌群的组成,促进丁酸生成,对肠道健康具有改善作用。  相似文献   

10.
贡嘎蝠蛾幼虫肠道细菌多样性分析   总被引:12,自引:0,他引:12  
[目的]对实验室养殖条件下的重要经济昆虫冬虫夏草寄主-贡嘎蝠蛾(Hepialus gonggaensis,Hg)幼虫肠道微生物群落的多样性进行了研究.[方法]采用常规分离培养与分子鉴定的方法和基于16S rRNA作为分子标记的变性梯度凝胶电泳(denaturing gradient gel electrophoresis,DGGE)的方法.[结果]用常规分离与分子鉴定方法获得8个属的细菌类群,其中肠杆菌属(Enterobacter)是优势菌群,肉食杆菌属(Carnobacterium)是次优势菌群.对通过DGGE方法得到的11条16S rRNA优势条带序列进行了比对和系统进化树分析,结果表明肉食杆菌属(Carnobacterium)的丰度最高,是肠道细菌中主要的优势菌群,芽孢杆菌属(Bacillus)是次优势菌群.DGGE图谱还显示Hg幼虫不同虫龄肠道细菌菌群的结构存在差异,推测可能与其发育生理状态的差异有关系.[结论]结合常规分离法与DGGE法能够更有效的分析肠道微生物的多样性,获得更多更全面的微生物多样性信息.  相似文献   

11.
The purpose of the present study was to compare the influence of adding no or 8% fat of varying sources (coconut oil, fish oil, rapeseed oil and sunflower oil) to diets for sows 1 week prior to farrowing and during lactation on the composition of fatty acids in plasma and tissues of the progeny while sucking and 3 weeks after weaning from the sow. A control diet without supplemental fat and four diets supplemented with 8% of coconut oil, rapeseed oil, fish oil or sunflower oil were provided to lactating sows (n = 15), and during the post-weaning period the same weaner diet was provided to all piglets (n = 15 litters), which were housed litterwise. The dietary ratio of n-6:n-3 fatty acids of the maternal diets largely influenced the progeny, as the ratio varying from 1.2 (fish oil) to 12.2 (sunflower oil) in the sow milk was reflected in plasma and adipose tissues of the sucking progeny. The liver showed similar variations according to dietary treatments, but a lower n-6:n-3 fatty acids ratio. From day 4 to later on during the suckling period, the concentration of C14:0, C16:0 and C18:1 in the liver of the piglets decreased, irrespective of the dietary treatments of sows. In plasma and liver, the total concentration of saturated fatty acids (SAFA), monounsaturated fatty acids (MUFA) and polyunsaturated fatty acids (PUFA) did not differ markedly in piglets sucking sows fed different dietary fatty acids, whereas the adipose tissue of piglets sucking sows fed sunflower oil and coconut oil showed the highest proportion of PUFA and SAFA, respectively. Weaning lowered the concentration of lipid-soluble extracts in plasma and the concentration of fatty acids in the liver of the piglets. Within the post-weaning period, dietary treatments of sows, rather than age of piglets, influenced the fatty acid composition of plasma and adipose tissue of the piglets, whereas the hepatic fatty acid profile was more affected by the age of the piglets during the post-weaning period. This study shows that the fatty acid profile of plasma and tissues of the progeny is highly dependent on the maternal dietary composition, and that the dietary impact persists for up to 3 weeks after the suckling period.  相似文献   

12.
Recent studies indicate that early postnatal period is a critical window for gut microbiota manipulation to optimise the immunity and body growth. This study investigated the effects of maternal faecal microbiota orally administered to neonatal piglets after birth on growth performance, selected microbial populations, intestinal permeability and the development of intestinal mucosal immune system. In total, 12 litters of crossbred newborn piglets were selected in this study. Litter size was standardised to 10 piglets. On day 1, 10 piglets in each litter were randomly allotted to the faecal microbiota transplantation (FMT) and control groups. Piglets in the FMT group were orally administrated with 2ml faecal suspension of their nursing sow per day from the age of 1 to 3 days; piglets in the control group were treated with the same dose of a placebo (0.1M potassium phosphate buffer containing 10% glycerol (vol/vol)) inoculant. The experiment lasted 21 days. On days 7, 14 and 21, plasma and faecal samples were collected for the analysis of growth-related hormones and cytokines in plasma and lipocalin-2, secretory immunoglobulin A (sIgA), selected microbiota and short-chain fatty acids (SCFAs) in faeces. Faecal microbiota transplantation increased the average daily gain of piglets during week 3 and the whole experiment period. Compared with the control group, the FMT group had increased concentrations of plasma growth hormone and IGF-1 on days 14 and 21. Faecal microbiota transplantation also reduced the incidence of diarrhoea during weeks 1 and 3 and plasma concentrations of zonulin, endotoxin and diamine oxidase activities in piglets on days 7 and 14. The populations of Lactobacillus spp. and Faecalibacterium prausnitzii and the concentrations of faecal and plasma acetate, butyrate and total SCFAs in FMT group were higher than those in the control group on day 21. Moreover, the FMT piglets have higher concentrations of plasma transforming growth factor-β and immunoglobulin G, and faecal sIgA than the control piglets on day 21. These findings indicate that early intervention with maternal faecal microbiota improves growth performance, decreases intestinal permeability, stimulates sIgA secretion, and modulates gut microbiota composition and metabolism in suckling piglets.  相似文献   

13.
The influence of low dietary levels of free and encapsulated medium-chain fatty acids on their concentrations in the digesta, the gastric microbial ecology and bacterial metabolic products in the gastrointestinal tract (GIT) in weaned piglets was studied. Starting after weaning, 36 piglets were fed a diet without (Control) or with medium-chain fatty acids uncoated (MCFA) or coated with vegetable fat and lecithin (MCFAc). After 4 weeks, the animals were killed, and digesta from the stomach and different sections of the GIT were collected. The concentrations of caprylic (p < 0.001) and capric (p = 0.001) acids were higher in the stomachs of piglets fed diets MCFA and MCFAc compared to the Control group. The concentrations dropped rapidly along the GIT, regardless of encapsulation, and tended to be higher in groups MCFA and MCFAc compared to the Control. Compared to the Control group, ingestion of diet MCFAc led to an increase in the number of eubacteria (p = 0.001), enterobacteriaceae (p < 0.001), clostridial clusters I (p = 0.001) and IV (p = 0.019), Lactobacillus johnsonii (p < 0.001) and Lactobacillus amylovorus (p = 0.001) in gastric contents. A similar trend was seen with diet MCFA. Relative concentrations of short-chain fatty acids were characterised by lower propionic acid levels (p = 0.045), numerically (p < 0.1) higher acetic, lower n-butyric and i-valeric acid concentrations in the small intestine. Lactic acid concentrations were not significantly changed in the GIT, but ammonia concentrations increased (p < 0.001) in the distal small intestine in the MCFA and MCFAc groups. In conclusion, medium-chain fatty acids affected microbial ecology parameters in the gastric contents and bacterial metabolites in the small intestine. At low dietary levels, medium-chain fatty acids may be regarded as modulators of the gastric microbiota in weaned piglets.  相似文献   

14.
[目的]研究息肉、溃疡性结肠炎、直肠结肠癌和健康人群肠道中脱硫弧菌数量的差异,及不同人群肠道菌群的多样性,分析脱硫弧菌数量及肠道菌群多样性与肠道疾病之间的潜在关系.[方法]采用实时荧光定量PCR(RT-PCR)的方法,对58名受试者肠道脱硫弧菌的数量进行定量分析.采用PCR-DGGE技术,对不同人群的肠道脱硫弧菌和肠道菌群结构进行分析,结合16S rRNA V3区测序分析不同人群肠道菌群多样性的差异.[结果]RT-PCR分析显示,所有受试者均为脱硫弧菌阳性,其中息肉(2.9×106cfu/mL)和溃疡性结肠炎人群(1.2×106 cfu/mL)肠道中脱硫弧菌的数量明显高于健康人群(7.0×105 cfu/mL),直肠结肠癌人群(6.8×105 cfu/mL)肠道中脱硫弧菌的数量与健康人群无明显差异.DGGE图谱聚类分析结果表明,肠道疾病人群肠道中脱硫弧菌的菌群相似度较高,而与健康人群之间的差异较大.16S rRNA V3区基因测序显示肠道疾病人群与健康人群在肠道菌群多样性和优势菌群方面均有明显差异.[结论]通过RT-PCR与DGGE相结合的方法,说明肠道脱硫弧菌数量的增多是息肉和溃疡性结肠炎疾病的一个重要特征,且其菌群组成在肠道疾病人群与健康人群之间存在明显差异.与健康人群相比,肠道疾病人群的肠道微生物多样性升高,优势菌群发生偏移,菌群失衡.  相似文献   

15.
【目的】本试验旨在研究日粮添加海带提取物褐藻糖胶对断奶仔猪生长性能、营养物质消化率、机体免疫力和肠道微生物多样性的影响。【方法】试验选用36头初始体重为(7.43±0.12) kg的健康仔猪,按照随机区组设计分为3组,每组12头。日粮处理组分别为不含抗生素的基础日粮组、抗生素组和褐藻糖胶组;试验期为28d。评价褐藻糖胶对仔猪生长性能和营养物质消化率的影响;通过比色法和酶联免疫吸附法检测血清中与免疫相关的指标;通过16S rRNA扩增子高通量测序检测试验第0、14和28天肠道微生物多样性。【结果】日粮添加褐藻糖胶可降低试验0–14 d仔猪耗料增重比(P0.05),但对试验全期仔猪平均日增重和平均日采量无显著影响(P0.05)。与对照组相比,饲喂褐藻糖胶日粮后,仔猪的中性洗涤纤维和酸性洗涤纤维表观消化率显著提高(P0.05);仔猪饲喂抗生素和褐藻糖胶日粮后,血清IL-22含量显著降低。试验第14天,抗生素组和褐藻糖胶处理组中Bacteroidetes数量呈上升趋势(P=0.07);试验第28天,抗生素组和褐藻糖胶处理组Actinobacteria丰度显著高于对照组(P0.05),且褐藻糖胶处理组Bacteroides属的菌群丰度显著高于对照组和抗生素组。【结论】日粮添加褐藻糖胶提高了断奶仔猪纤维养分消化率和拟杆菌属的丰富度和多样性,并且降低了促炎性细胞因子IL-22含量,这有助于缓解仔猪的断奶应激反应,建立稳定健康肠道菌群。  相似文献   

16.
Although, the application of tannic acid (TA), gallic acid (GA), natural hydrolysable tannins (HT)-rich ingredients, and HT-rich feeds in ruminant feeding have been explored in order to modify or manipulate microbial activities of digestive tract of animals, the interaction between HT and gastrointestinal microbiota and the fate of HT metabolites (GA, ellagic acid, pyrogallol, resorcinol, phloroglucinol, catechol and urolithin) derived from gastrointestinal microbial HT metabolism in the animal as a whole and animal products are missing. Incomplete biotransformation of HT and TA to GA, pyrogallol, resorcinol, phloroglucinol and other phenolic metabolites is a prevalent phenomenon discovered by researchers who examine the fate of HT metabolites in ruminant. While the rest of fellow researchers do not even examine the fate of HT metabolites and assume the complete biotransformation and fermentation of HT metabolites to volatile fatty acids (VFA). Only three studies have successfully identified the complete biotransformation and fermentation of HT metabolites to VFA in ruminant. The HT metabolites, mostly pyrogallol, produced through incomplete biotransformation of HT have adverse effects on gastrointestinal microbiota and host animal. Lack of awareness regarding the metabolism of HT metabolites and its consequences would compromise ruminant gastrointestinal microbiota, animal welfare, our environment and the power of research papers’ findings. In this perspective paper, I will bring to attention a new angle on the biotransformation and fermentation of HT metabolites in gastrointestinal tract, the role of gastrointestinal microbiota and deficiency of current approach in isolating tannin-degrading bacteria from rumen. Also, suggestions for better monitoring and understanding HT metabolisms in ruminant are presented.  相似文献   

17.
Our hypothesis that the trans fatty acids in hydrogenated fat inhibited the synthesis of polyunsaturated fatty acids in the phospholipid of arterial cells was tested with five groups each with six pregnant porcine fed from d 35 of gestation and during lactation. The basal diet contained 2% corn oil (control). The other four diets included the control + 10% butter or 10% hydrogenated fat plus two levels of Mg. Plasma, milk and aortic phospholipid fatty acids, phospholipid composition and calcium content of the aorta from the piglets were determined. At 48 +/- 2 d of age, the aorta phospholipid of piglets from porcine fed hydrogenated fat contained a significantly higher concentration of linoleic acid, less arachidonic acid, and less long chain polyunsaturated fatty acid (PUFA) than did piglets from porcine fed either butterfat or the control diet. Mg had no effect. These changes in composition in piglets from porcine fed hydrogenated fat indicate that trans fat inhibits the metabolic conversion of linoleic acid to arachidonic acid and to other n-6 PUFA. The aortic calcium content data showed a significant interaction of calcium concentration with age. We concluded: 1) that dietary trans fat perturbed essential fatty acid (EFA) metabolism which led to changes in the phospholipid fatty acid composition in the aorta, the target tissue of atherogenesis, 2) this inhibition of EFA to PUFA by the isomeric fatty acids in hydrogenated fat is a risk factor in the development of coronary heart disease.  相似文献   

18.
【目的】研究断奶前给仔猪饲喂植物乳杆菌和干酪乳杆菌对断奶前、后肠道菌群组成、数量和短链脂肪酸(SCFA)浓度的影响,分析仔猪生长性能与肠道形态、微生物菌群及SCFAs的相关性,探讨测试菌株缓解仔猪断奶应激的可能机制。【方法】选取15窝7 d龄杜长大仔猪,随机分为3组,分别灌喂2 mL去离子水(对照组)、0.5×10~9 CFU/mL植物乳杆菌(LP组)或干酪乳杆菌(LC组)的菌液,每组以窝为单位5个重复,于21 d(断奶)、24 d和35 d屠宰,采集回肠和结肠食糜,分析菌群组成和数量的变化,测定SCFAs浓度。【结果】测试菌株均能显著提高断奶2周后回肠、结肠菌群多样性(P0.05),促进乳酸杆菌和双歧杆菌增殖;显著促进断奶前回肠和结肠中乙酸、丙酸、丁酸和总SCFA生成,促进断奶后乙酸和总SCFA产生;相关分析显示,测试菌株组仔猪腹泻率下降与SCFAs浓度上升、回肠绒毛高度增加和总菌数量上升显著相关,日增重提高与结肠乙酸和TSCFA浓度增加显著相关。【结论】测试菌株促进乳酸杆菌、双歧杆菌等有益菌增殖,增加肠道菌群多样性,促进肠道SCFAs生成。  相似文献   

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