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Corn silage in dairy cow diets to reduce ruminal methanogenesis: Effects on the rumen metabolically active microbial communities

机译:奶牛日粮中的玉米青贮饲料可降低瘤胃甲烷生成:对瘤胃代谢活性微生物群落的影响

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摘要

Methane produced by the methanogenic Archaea that inhabit the rumen is a potent greenhouse gas and represents an energy loss for the animal. Although several strategies have been proposed to mitigate enteric CH_4 production, little is known about the effects of dietary changes on the microbial consortia involved in ruminal methanogenesis. Thus, the current study aimed to examine how the metabolically active microbes are affected when dairy cows were fed diets with increasing proportions of corn silage (CS). For this purpose, 9 ruminally cannulated lactating dairy cows were used in a replicated 3×3 Latin square design and fed a total mixed ration (60:40 forage:concentrate ratio on a dry matter basis) with the forage portion being either alfalfa silage (0% CS), corn silage (100% CS), or a 50:50 mixture (50% CS). Enteric CH_4 production was determined using respiration chambers and total rumen content was sampled for the determination of fermentation characteristics and molecular biology analyses (cDNA-based length heterogeneity PCR, quantitative PCR). The cDNA-based length heterogeneity PCR targeting active microbes revealed similar bacterial communities in cows fed 0% CS and 50% CS diets, whereas important differences were observed between 0% CS and 100% CS diets, including a reduction in the bacterial richness and diversity in cows fed 100% CS diet. As revealed by quantitative PCR, feeding the 100% CS diet increased the number of total bacteria, Prevotella spp., Archaea, and methanogenic activity, though it reduced protozoal number. Meanwhile, increasing the CS proportion in the diet increased propionate concentration but decreased ruminal pH, CH_4 production (L/ kg of dry matter intake), and concentrations of acetate and butyrate. Based on these microbial and fermentation changes, and because CH_4 production was reduced by feeding 100% CS diet, this study shows that the use of cDNA-based quantitative PCR to estimate archaeal growth and activity is not reliable enough to reflect changes in ruminal methanogenesis. A more robust technique to characterize changes in archaeal community structures will help to better understand the microbial process involved in ruminal methanogenesis and, hence, enabling the development of more effective dietary CH_4 mitigation strategies.
机译:产于瘤胃的产甲烷古细菌产生的甲烷是一种有力的温室气体,对动物来说是一种能量损失。尽管已提出了几种减轻肠CH_4产生的策略,但对饮食变化对涉及瘤胃甲烷生成的微生物聚生体的影响知之甚少。因此,当前的研究旨在检验当奶牛饲喂日粮中增加玉米青贮(CS)的饲料时,对代谢活性微生物的影响。为此,将9个瘤胃插管的泌乳奶牛用于3×3拉丁方格复制设计,并饲喂总混合日粮(干物质比为60:40的草料:精料比率),其中草料部分为苜蓿青贮( 0%CS),玉米青贮饲料(100%CS)或50:50混合物(50%CS)。使用呼吸室确定肠CH_4的产生,并采样总瘤胃含量以测定发酵特性和分子生物学分析(基于cDNA的长度异质性PCR,定量PCR)。以cDNA为基础的长度异质性PCR靶向活性微生物显示,饲喂0%CS和50%CS日粮的母牛存在相似的细菌群落,而0%CS和100%CS日粮之间观察到重要的差异,包括细菌丰富度和多样性的降低在饲喂100%CS饲料的奶牛中。如定量PCR所示,饲喂100%CS饲料可增加细菌总数,普氏杆菌属,古生菌和产甲烷活性,但会减少原生动物的数量。同时,增加日粮中CS含量会增加丙酸盐浓度,但降低瘤胃pH值,CH_4产量(L / kg干物质摄入量)以及乙酸盐和丁酸盐的浓度。基于这些微生物和发酵的变化,并且由于饲喂100%CS饲料会降低CH_4的产生,这项研究表明,使用基于cDNA的定量PCR估算古细菌的生长和活性不足以反映瘤胃产甲烷作用的变化。表征古细菌群落结构变化的更强大的技术将有助于更好地了解瘤胃甲烷生成过程中涉及的微生物过程,因此,可以开发出更有效的饮食CH_4缓解策略。

著录项

  • 来源
    《Journal of dairy science》 |2013年第8期|5237-5248|共12页
  • 作者单位

    Agriculture and Agri-Food Canada, Dairy and Swine Research and Development Centre, 2000 College Street, Sherbrooke, Quebec,Canada J1M 0C8;

    Agriculture and Agri-Food Canada, Dairy and Swine Research and Development Centre, 2000 College Street, Sherbrooke, Quebec,Canada J1M 0C8;

    Agriculture and Agri-Food Canada, Dairy and Swine Research and Development Centre, 2000 College Street, Sherbrooke, Quebec,Canada J1M 0C8;

  • 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

    corn silage; alfalfa silage; ruminal methanogenesis; rumen microbe;

    机译:玉米青贮苜蓿青贮;瘤胃产甲烷瘤胃微生物;
  • 入库时间 2022-08-17 23:24:12

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