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Unveiling the relationships between diet composition and fermentation parameters response in dual-flow continuous culture system: a meta-analytical approach

机译:在双流连续培养系统中揭示饮食组成与发酵参数响应之间的关系:荟萃分析方法

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摘要

The objective of this study was to investigate the functional form of the relationship between diet composition (dietary crude protein [CP] and neutral detergent fiber [NDF]) and amount of substrate (fermenter dry matter intake [DMI]) with microbial fermentation end products in a dual-flow continuous culture system. A meta-analysis was performed using data from 75 studies. To derive the linear models, the MIXED procedure was used, and for nonlinear models, the NLMIXED procedure was used. Significance levels to fit the model assumed for fixed and random effects were ≤ 0.05. Independent variables were dietary NDF, CP, and fermenter DMI, whereas dependent variables were total volatile fatty acids (VFA) concentration; molar proportions of acetate, propionate, and butyrate; true ruminal digestibilities of organic matter (OM), CP, and NDF; ammonia nitrogen (NH –N) concentration and flows of NH –N; non-ammonia nitrogen; bacterial-N; dietary-N; and efficiency of microbial protein synthesis (EMPS). Ruminal digestibilities of OM, NDF, and CP decreased as fermenter DMI increased ( < 0.04). Dietary NDF and CP digestibilities were quadratically associated ( < 0.01). Total VFA linearly increased as DMI increased ( < 0.01), exponentially decreased as dietary NDF increased ( < 0.01), and was quadratically associated with dietary CP ( < 0.01), in which total VFA concentration was maximized at 18% dietary CP. Molar proportion of acetate exponentially increased ( < 0.01) as dietary NDF increased. Molar proportion of propionate linearly increased and exponentially decreased as DMI and dietary NDF increased, respectively ( < 0.01). Bacterial-N quadratically increased and dietary-N exponentially increased as DMI increased ( < 0.01). Flows of bacterial-N and dietary-N linearly decreased as dietary NDF increased ( < 0.02), and dietary-N flow was maximized at 18% CP. The EMPS linearly increased as dietary CP increased ( < 0.02) and was not affected by DMI or dietary NDF ( > 0.05). In summary, increasing fermenter DMI increased total VFA concentration and molar proportion of propionate, whereas, dietary NDF increased the molar proportion of acetate. Dietary CP increased bacterial-N flow and was positively associated with NH –N concentration. Overall, the analysis of this dataset demonstrates evidences that the dual-flow continuous culture system provides valuable estimates of ruminal digestibility, VFA concentration, and nitrogen metabolism.
机译:这项研究的目的是研究饮食组成(膳食粗蛋白[CP]和中性洗涤剂纤维[NDF])与微生物发酵终产物的底物量(发酵罐干物质摄入[DMI])之间的关系的功能形式。在双流连续培养系统中。使用来自75个研究的数据进行荟萃分析。为了导出线性模型,使用了MIXED过程,对于非线性模型,使用了NLMIXED过程。与固定和随机效应假设的模型相符的显着性水平≤0.05。自变量是饮食中的NDF,CP和发酵罐DMI,而因变量是总挥发性脂肪酸(VFA)的浓度。乙酸盐,丙酸盐和丁酸盐的摩尔比例;瘤胃中有机物(OM),CP和NDF的真实消化率;氨氮(NH –N)浓度和NH –N流量;非氨氮细菌氮饮食氮蛋白质合成(EMPS)的效率和效率。 OM,NDF和CP的瘤胃消化率随发酵罐DMI的增加而降低(<0.04)。膳食中的NDF和CP消化率呈二次相关性(<0.01)。总VFA随DMI的增加而线性增加(<0.01),随着饮食NDF的增加(<0.01)呈指数下降,并且与饮食CP呈二次相关性(<0.01),其中总VFA浓度在18%的饮食CP时最大。随着饮食中NDF的增加,乙酸盐的摩尔比例呈指数增加(<0.01)。随着DMI和日粮NDF的增加,丙酸的摩尔比例线性增加和呈指数下降(<0.01)。随着DMI的增加,细菌N呈方形增加,饮食N呈指数增加(<0.01)。随着日粮NDF的增加(<0.02),细菌氮和日粮N的流量线性下降,日粮N的流量在CP的18%时达到最大。 EMPS随着日粮CP的增加而线性增加(<0.02),并且不受DMI或日粮NDF的影响(> 0.05)。总之,增加发酵罐DMI会增加总VFA浓度和丙酸酯的摩尔比例,而日粮NDF会增加乙酸盐的摩尔比例。日粮CP增加了细菌氮的流量,并与NH-N浓度呈正相关。总体而言,对此数据集的分析表明,有证据表明双流连续培养系统可提供瘤胃消化率,VFA浓度和氮代谢的有价值的估计值。

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