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为探究链霉菌30702和壳聚糖对淮山土壤微生物活性与群落的影响,采用比色法和滴定法观测土壤酶活性的变化,采用高通量测序技术和Trimmomatic等软件,分析土壤微生物群落中细菌和真菌的发展变化。结果表明,链霉菌、壳聚糖、土壤原始微生物和培养时间等4个因素对淮山土壤的脲酶和过氧化氢酶活性均有显著影响,壳聚糖浓度在0~10.0 g/kg内,土壤酶活性随壳聚糖浓度的增大而提高;随时间的延长,先升再降;壳聚糖与链霉菌之间存在交互效应。链霉菌和壳聚糖能增加淮山土壤细菌的物种丰度,减少细菌的多样性,增加艾德昂菌属(Ideonella)和纤维弧菌(Cellvibrio)等有益菌属的相对丰度,而对真菌的物种丰度和多样性的影响较小,与对照之间的差异不显著,土壤优势菌属为腐质霉属(Humicola)、枝孢属(Cladosporium)、鞘氨醇单胞菌属(Sphingomonas)和uncultured_bacterium_ c_Subgroup_6。其中,链霉菌与2.5 g/kg壳聚糖复合处理的细菌物种丰度最大,细菌多样性最少。  相似文献   
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ABSTRACT

1. This study quantified xylanase-induced changes in soluble monosaccharides, xylooligosaccharides (XOS) and volatile fatty acid (VFA) contents of the different sections of the gastrointestinal tract (GIT) and whether these were related to altered bird performance.

2. An in vitro digestion of the wheat-based diet was carried out with the xylanase (Econase XT at 16,000BXU/kg diet) to compare the in vitro and in vivo generation of these XOS and monosaccharides. For the in vivo study, 80 male Ross 508 b roiler chicks were split into two groups fed a wheat-based diet with or without Econase XT (16,000BXU/kg diet) for 21 days.

3. There were no effects of Econase XT inclusion on growth performance characteristics, likely a result of the high-quality wheat diet, the corresponding high performance of the control group (FCR average of 1.45 in controls) and the relatively young age of the birds (from four to 26 days of age).

4. Econase XT supplementation increased the xylotetraose (X4) content in the colon (P = 0.046, enzyme x GIT section interaction) and the xylose contents in the colon and caeca (P < 0.001, enzyme x GIT section interaction).

5. The trend for increased acetate production in the caeca of Econase XT treated birds (P = 0.062) suggested that the XOS generated were subsequently fermented in the caeca, potentially impacting upon the types of microbiota present.

6. The present study suggested that wheat arabinoxylan degradation was enhanced by xylanase supplementation, which may have increased the production of beneficial volatile fatty acids (VFA) in the caeca, and thereby potentially modulated the caecal microbiome, but without affecting bird performance at this early age.  相似文献   
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Since the first publication on “regional ileitis”, the relevance of this chronic inflammatory disease condition termed finally as Crohn's disease is continuously increasing. Although we are beginning to comprehend certain aspects of its pathogenesis, many facets remain unexplored. Host's gut microbiota is involved in a wide range of physiological and pathological processes including immune system development, and pathogen regulation. Further, the microbiome is thought to play a key role in Crohn's disease. The presence of Crohn's-associated variants of NOD2 and ATG16L genes appears to be associated not only with alterations of mucosal barrier functions, and bacterial killing, but the gut microbiota, as well, reflecting a potential relationship between the host's genotype and intestinal dysbiosis, involved in disease etiology. This review aims to characterize some exciting new aspect of Crohn's disease pathology, focusing mainly on the role of intestinal microbes, and their interplay with the immune system of the host.  相似文献   
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The effect of hay type on the microbiome of the equine gastrointestinal tract is relatively unexplored. Our objective was to characterize the cecal and fecal microbiome of mature horses consuming alfalfa or Smooth Bromegrass (brome) hay. Six cecally cannulated horses were used in a split-plot design run as a crossover in two periods. The whole plot treatment was ad libitum access to brome or alfalfa hay fed over two 21-d acclimation periods with subplots of sampling location (cecum and rectum) and sampling hour. Each acclimation period was followed by a 24-h collection period where cecal and fecal samples were collected every 3 h for analysis of pH and volatile fatty acids (VFA). Fecal and cecal samples were pooled and sent to a commercial lab (MR DNA, Shallowater, TX) for the amplification of the V4 region of the 16S rRNA gene and sequenced using Illumina HiSeq. The main effects of hay on VFA, pH, and taxonomic abundances were analyzed using the MIXED procedure of SAS 9.4 with fixed effects of hay, hour, location, period, and all possible interactions and random effect of horse. Alpha and beta diversities were analyzed using the R Dame package. Horses fed alfalfa had greater fecal than cecal pH (P ≤ 0.05), whereas horses fed brome had greater cecal than fecal pH (P ≤ 0.05). Regardless of hay type, total VFA concentrations were greater (P ≤ 0.05) in the cecum than in feces, and alfalfa resulted in greater (P ≤ 0.05) VFA concentrations than brome in both sampling locations. Alpha diversity was greater (P ≤ 0.05) in fecal compared with cecal samples. Microbial community structure within each sampling location and hay type differed from one another (P ≤ 0.05). Bacteroidetes were greater (P ≤ 0.05) in the cecum compared with the rectum, regardless of hay type. Firmicutes and Firmicutes:Bacteroidetes were greater (P ≤ 0.05) in the feces compared with cecal samples of alfalfa-fed horses. In all, fermentation parameters and bacterial abundances were impacted by hay type and sampling location in the hindgut.  相似文献   
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基于非靶向代谢组学技术,分析腹腔注射苦参碱前后昆明小鼠粪便和血浆代谢物的差异,并通过与此前16S rDNA测序结果联合分析探究苦参碱发挥药理作用的可能机理。将20只昆明小鼠随机分为2组,分别是苦参碱处理组(MT)和生理盐水处理组(NC)。苦参碱处理组每天腹腔注射40 mg·kg-1的苦参碱,连续给药5 d,每天给药2次。生理盐水处理组按照同样方式和体积腹腔注射生理盐水。给药第6天,分别收集各组小鼠的粪便和血浆,进行非靶向代谢组学检测,并与苦参碱处理组肠道菌群的16S rDNA测序结果进行联合分析。苦参碱处理组的粪便及血浆中均存在显著差异代谢物,粪便中共鉴定出97种,血浆中有44种。聚类分析显示,粪便中苦参碱组有35种代谢物上调,104种代谢物下调;血浆中苦参碱组有20种代谢物上调,35种代谢物下调。KEGG通路分析显示粪便及血浆差异代谢物被映射到Protein digestion and absorption等代谢途径。与16S rDNA测序分析得到的显著差异菌种嗜酸乳杆菌关联分析,结果表明粪便及血浆代谢物与嗜酸乳杆菌存在相关性。苦参碱可调节昆明小鼠的体内代谢,在粪便和血浆中均存在显著差异代谢物。这些差异代谢物及与菌群之间的互作可能是其发挥药理作用的关键。  相似文献   
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干法厌氧发酵是提高农业农村废弃物处理效率及资源高效循环的重要技术之一。先前围绕该技术产甲烷效率低、传质传热不均匀等问题,提出了微好氧同步预升温干发酵技术,设计了配套装备,开展了小试和中试试验,产甲烷效率得到改善。为进一步提高放大装备的实际应用质量,在对发酵装置密封、进出料、喷淋循环系统等关键部件优化的基础上,探明了最优曝气量及实际应用中微好氧预升温阶段物质转化特性,揭示了微生物生态网络关系,评价了实际运行效果。结果表明:对关键部件的优化显著提升装备运行稳定性,微好氧同步预升温阶段最优曝气量为10 L/min,容积产气率达到1.20 m3/(m3·d)。物料在第40小时升温至42℃,曝气组各层物料温度较未曝气组均提高45.54%、32.46%和52.06%。同步预升温促进了物料各层纤维素和半纤维素的降解,提高了酸化效率,有机酸质量浓度分别提高59.83%、50.69%和20.85%,物料产气潜力提高34.9%。探明了微生物网络关系以及与发酵环境因子变化的相关性,发现微好氧预升温阶段具有协同作用的功能微生物SBR1031、Synergistale...  相似文献   
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