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Responses in the rumen microbiome of Bos taurus and indicus steers fed a low-quality rice straw diet and supplemented protein

机译:饲喂低质稻草饮食和补充蛋白质的金牛座和印度ste牛瘤胃微生物组的反应

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摘要

Bos indicus typically perform better than Bos taurus when consuming a low-quality diet; however, the response to supplementation is generally greater in B. taurus. The underlying mechanisms supporting these responses have not been fully elucidated. Characterization of differences in rumen prokaryotic populations and their functional role in the two subspecies may provide additional insight. Ten cannulated steers (5 Angus and 5 Brahman) were used in concurrent 5 × 5 Latin squares. Animals were offered ad libitum access to rice straw (4.7% >CP). Treatments consisted of an unsupplemented control diet and two levels (50 or 120 mg N/kg BW) of isonitrogenous supplements (30% CP), that were either high (H; 74%) or low (L; 26%) in undegradable intake protein. Rumen samples were collected at 0 and 4 h postfeeding and separated into liquid and solid fractions. Rumen bacterial taxa were sequenced utilizing a Roche 454 platform based on the 16s rRNA gene. At 97% sequence similarity, 97,826 operational taxonomic units were identified, which included 24 phyla, 108 families, and 255 genera. Analysis included SAS PROC mixed model, QIIME, and PICRUSt. Across all samples, Bacteroidetes and Firmicutes accounted for 65% and 28% of total bacterial abundance, respectively. The families Prevotellaceae (P = 0.05) and Ruminococcaceae (P = 0.004) and the genera Prevotellaceae (family; P = 0.003) within the phyla Bacteroidetes differed significantly in relative abundance with added protein when compared to the control. Consistent differences in the relative abundance of family and genus taxa between B. indicus and B. taurus suggest roles the symbiotic rumen microbiome may have in the capacity of B. indicus to utilize low-quality forage over a range of supplement types and levels including (Prevotella, Ruminococcus [family], Sphingobacteriaceae [family], Bacteroidales [order], Pontibacter, Bacteroides, Succiclasticum, Barnesiella, and Xylanibacter). Overall bacterial community diversity differences across parameters were limited. Rice straw is recalcitrant to bacterial digestion because of high levels of silica in the epidermis making this straw more resistant to bacterial attachment. Thus, this analysis represents the bacterial diversity and function of the rumen under conditions depleted CP, recalcitrant fiber matrix and restricted digestibility which appear to limit the microbial population to those capable of attaching and digesting complexed structural carbohydrates, resulting in reduced plasticity, and more evenness in diversity across parameters.
机译:食用低质饮食时,印度dic通常比金牛座表现更好。然而,金牛座牛对补充的反应一般较大。支持这些响应的基本机制尚未完全阐明。瘤胃原核生物种群的差异及其在两个亚种中的功能作用的表征可能会提供更多的见解。十个插管的ers牛(5个安格斯和5个婆罗门)用于并发的5×5拉丁方格。允许动物随意使用稻草(4.7%> CP )。治疗包括不补充对照饮食和两个水平(50或120 mg N / kg体重)的等氮补充剂(CP的30%),其不可降解摄入量高(H; 74%)或低(L; 26%)蛋白。进食后0和4小时收集瘤胃样品,并将其分离为液体和固体部分。利用基于16s rRNA基因的Roche 454平台对瘤胃细菌分类群进行测序。以97%的序列相似性,鉴定出97,826个可操作分类单元,包括24个门,108个科和255个属。分析包括SAS PROC混合模型,QIIME和PICRUSt。在所有样品中,拟杆菌属和硬菌纲分别占细菌总数的65%和28%。与对照相比,拟除蝇科中菌类的前枢藻科(P = 0.05)和Ruminococcaceae(P = 0.004)和前枢藻科(家族; P = 0.003)在相对丰度上有显着差异。 B. indicus和B. taurus之间的家庭和类群相对相对丰富度的一致差异表明,共生瘤胃微生物组可能在B. indicus利用各种补品类型和水平上利用低质饲料的能力中发挥了作用( Prevotella,Ruminococcus [家族],Sphingobacteriaceae [家族],Bacteroidales [顺序],Pontibacter,Bacteroides,Succiclasticum,Barnesiella和Xylanibacter)。跨参数的总体细菌群落多样性差异是有限的。由于表皮中的二氧化硅含量高,稻草难于细菌消化,因此这种稻草对细菌附着的抵抗力更高。因此,这种分析代表了在CP耗尽,顽固纤维基质和消化率受到限制的条件下,瘤胃的细菌多样性和功能,这似乎将微生物种群限制为能够附着和消化复杂结构碳水化合物的微生物,从而导致可塑性降低,更加均匀各个参数的多样性。

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