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首页> 外文期刊>Revista Brasileira de Zootecnia >Reconsidering rumen microbial consortia to enhance feed efficiency and reduce environmental impact of ruminant livestock production systems
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Reconsidering rumen microbial consortia to enhance feed efficiency and reduce environmental impact of ruminant livestock production systems

机译:重新考虑瘤胃微生物联盟,以提高饲料效率并减少反刍动物生产系统对环境的影响

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Because cultivation-based approaches to assess rumen microbiology assess only the minority of microbial groups and can miss opportunities to assess important functions, molecular-based approaches have flourished in microbial ecology and have been adapted to the rumen. Current approaches are described herein, specifically for a robust adaptation to nutrition studies or future opportunities. These included automated profiling techniques, density gradient gel electrophoresis, and future adaption of microarray or high-throughput sequencing technologies. Based on current knowledge, a more holistic approach is needed to describe various functional groups of microbes within the context of how they influence, and are influenced by, the whole consortium (combination of microbial groups). Such a perspective is applied to issues related to increasing fiber digestibility when feeding concentrate or unsaturated fats to high producing beef and dairy cattle. These same microbial populations should help to provide growth factors for fibrolytic bacteria while competing against the hyperammonia-producing bacteria such that there would be less need for excessive rumen-degraded protein as a safety factor. Moreover, these same dietary conditions influence the processes of biohydrogenation and methanogenesis. After accounting for population structures of bacteria, protozoa, methanogenic archaea, and even fungi, efforts to integrate molecular-based rumen microbial ecology with dietary conditions should allow us to better explain and therefore predict conditions that will improve feed efficiency and reduce environmental impact of ruminant production systems.
机译:由于基于培养的瘤胃微生物学评估方法仅评估少数微生物群,并且可能错过评估重要功能的机会,因此基于分子的方法在微生物生态学中蓬勃发展,并已适应瘤胃。本文描述了当前的方法,特别是针对营养研究或未来机会的稳健适应。其中包括自动分析技术,密度梯度凝胶电泳以及微阵列或高通量测序技术的未来适应性。基于当前的知识,需要一种更全面的方法来描述微生物的各种功能组,以了解它们如何影响整个财团以及受整个财团(微生物组的组合)的影响。这种观点适用于与向高产牛肉和奶牛饲喂浓缩脂肪或不饱和脂肪时增加纤维消化率有关的问题。这些相同的微生物种群应有助于为溶纤细菌提供生长因子,同时与产生高氨的细菌竞争,这样就不需要过多的瘤胃降解蛋白作为安全因子。此外,这些相同的饮食条件也会影响生物氢化和甲烷生成的过程。在考虑了细菌,原生动物,产甲烷菌,甚至真菌的种群结构之后,将基于分子的瘤胃微生物生态与饮食条件相结合的努力应使我们能够更好地进行解释,从而预测可以改善饲料效率并减少反刍动物对环境的影响的条件生产系统。

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