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Rumen bacterial community evaluated by 454 pyrosequencing and terminal restriction fragment length polymorphism analyses in dairy sheep fed marine algae

机译:通过454焦磷酸测序和末端限制性片段长度多态性分析评估奶牛饲喂海藻的瘤胃细菌群落

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摘要

Developing novel strategies to increase the content of bioactive unsaturated fatty acids (FA) in ruminant-derived products requires a deeper understanding of rumen biohydrogenation and bacteria involved in this process. Although high-throughput pyrosequencing may allow for a great coverage of bacterial diversity, it has hardly been used to investigate the microbiology of ruminal FA metabolism. In this experiment, 454 pyrosequencing and a molecular fingerprinting technique (terminal restriction fragment length polymorphism; T-RFLP) were used concurrently to assess the effect of diet supplementation with marine algae (MA) on the rumen bacterial community of dairy sheep. Eleven lactating ewes were divided in 2 lots and offered a total mixed ration based on alfalfa hay and concentrate (40:60), supplemented with 0 (control) or 8 (MA) g of MA/kg of dry matter. After 54 d on treatments, animals were slaughtered and samples of rumen content and fluid were collected separately for microbial analysis. Pyrosequencing yielded a greater coverage of bacterial diversity than T-RFLP and allowed the identification of low abundant populations. Conversely, both molecular approaches pointed to similar conclusions and showed that relevant changes due to MA addition were observed within the major ruminal phyla, namely Bacteroidetes, Firmicutes, and Proteobacteria. Decreases in the abundance of unclassified Bacteroi-dales, Porphyromonadaceae, and Ruminococcaceae and increases in as-yet uncultured species of the family Succinivibrionaceae, might be related to a potential role of these groups in different pathways of rumen FA metabolism. Diet supplementation with MA, however, had no effect on the relative abundance of Butyrivibrio and Pseudobutyrivibrio genera. In addition, results from both 454 pyrosequencing and T-RFLP indicate that the effect of MA was rather consistent in rumen content or fluid samples, despite inherent differences between these fractions in their bacterial composition.
机译:开发新的策略以提高反刍动物来源产品中生物活性不饱和脂肪酸(FA)的含量,需要对瘤胃生物氢化和此过程中涉及的细菌有更深入的了解。尽管高通量焦磷酸测序可允许细菌多样性的广泛覆盖,但几乎没有用于研究瘤胃FA代谢的微生物学。在该实验中,同时使用454焦磷酸测序和分子指纹技术(末端限制性片段长度多态性; T-RFLP)来评估日粮中添加海藻(MA)对奶牛瘤胃细菌群落的影响。将11头泌乳母羊分成两批,并根据苜蓿干草和浓缩物(40:60)提供总混合日粮,补充0(对照)或8(MA)g MA / kg干物质。处理54天后,将动物屠宰,并分别收集瘤胃含量和体液样本进行微生物分析。焦磷酸测序比T-RFLP产生更大的细菌多样性覆盖范围,并可以鉴定低丰度种群。相反,两种分子方法均得出相似的结论,并表明在主要瘤胃门(拟杆菌,硬毛虫和变形杆菌)中观察到由于MA添加引起的相关变化。未分类的拟杆菌,卟啉单胞菌科和Ruminococcaceae的数量减少,以及丁香弧菌科的尚未培养的物种的增加,可能与这些群体在瘤胃FA代谢的不同途径中的潜在作用有关。但是,日粮中添加MA不会对Butyrivibrio和Pseudobutyrivibrio属的相对丰度产生影响。此外,454焦磷酸测序和T-RFLP的结果均表明,尽管这些组分在细菌组成上存在固有差异,但在瘤胃含量或体液样品中,MA的效果相当一致。

著录项

  • 来源
    《Journal of dairy science》 |2014年第3期|1661-1669|共9页
  • 作者单位

    Instituto de Ganaderia de Montana, 24346 Grulleros, Leon, Spain,Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Aberystwyth SY23 3DA, United Kingdom;

    Instituto de Ganaderia de Montana, 24346 Grulleros, Leon, Spain;

    Instituto de Ganaderia de Montana, 24346 Grulleros, Leon, Spain;

    Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Aberystwyth SY23 3DA, United Kingdom;

    Instituto de Ganaderia de Montana, 24346 Grulleros, Leon, Spain;

    Instituto de Nutricion Animal, Estacion Experimental del Zaidin, 18008 Granada, Spain;

    Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Aberystwyth SY23 3DA, United Kingdom;

    Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Aberystwyth SY23 3DA, United Kingdom;

    Instituto de Ganaderia de Montana, 24346 Grulleros, Leon, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ewe; lipid; ruminal microbiota; 16S rDNA;

    机译:母羊;脂质瘤胃微生物群16S rDNA;
  • 入库时间 2022-08-17 23:23:54

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