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Magnesium absorption as influenced by the rumen passage kinetics in lactating dairy cows fed modified levels of fibre and protein

机译:镁吸收受到瘤胃通道动力学的影响,哺乳酸奶牛喂养改性水平的纤维和蛋白质

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The potassium sensitive magnesium absorption through the rumen wall may be influenced by additional dietary properties, such as diet type, forage type or forage to concentrate ratio. These properties are likely associated to rumen passage kinetics modified by dietary fibre content. The study aimed to assess the effects of rumen passage kinetics on apparent Mg absorption and retention in lactating dairy cows fed modified levels of fibre. Six lactating Red-Holstein and Holstein cows, including four fitted with ruminal cannulas were randomly assigned to a 3 × 3 cross-over design. The experimental diets consisted of early harvested low NDF (341 g NDF/kg DM) and late harvested high NDF (572 g NDF/kg DM) grass silage (80% DM) and of concentrates (20% of DM). As the low-fibre diet was excessive in protein, a third high-fibre diet was formulated to be balanced in digestible protein with the low-fibre diet to avoid any eventual confounding effects of NDF and protein excess. All diets were formulated to contain iso-Ca, -P, -Mg, -K and -Na. Passage kinetics of solid and liquid phase of rumen digesta were evaluated using ruminal marker disappearance profiles. Cows fed the low-fibre diet had compared to the other diets, an up to 40% lower solid and 26% lower liquid phase volume of rumen digesta and a 10% numerically higher fractional rumen liquid passage rate. Rumen pH lost 0.6 units and Mg concentration in the rumen liquid phase tripled when cows were fed the low-fibre diet. Faecal Mg excretion was up to 14% higher in cows fed the low-fibre diet and Mg absorbability was 12% compared to up to 19% in other diets. Urinary Mg excretion in cows fed the low-fibre diet was half of the ones in the other treatments, but Mg retention was not affected. Dietary protein excess neither affected rumen passage kinetics nor Mg absorption and retention. Absorption of Mg was correlated with rumen liquid volume which both decreased with decreasing daily NDF intake (NDFi, 11.8 ± 2.4 l/kg NDFi). Consequently, daily Mg absorption decreased by 1.32 ± 0.28 g/kg decreasing NDFi. To conclude, in addition to the known antagonistic effect of dietary K, the present data indicate that Mg absorption was dependent from NDFi which modified rumen liquid volume, but was independent of dietary protein excess likely associated to low NDF herbages.
机译:通过瘤胃壁的钾敏感的镁吸收可能受到额外膳食性质的影响,例如饮食类型,饲料型或饲料以浓缩比。这些性质可能与由膳食纤维含量改性的瘤胃动力学相关。该研究旨在评估瘤胃通道动力学对表观Mg吸收和哺乳酸奶牛喂养水平纤维水平的影响。六个哺乳动物红孔和荷斯坦奶牛,包括四个拟合瘤胃套管的血管套,随机分配到3×3交叉设计。实验饮食由早期收获的低NDF(341克NDF / kg DM)和后期收获的高NDF(572克NDF / kg DM)草青贮(80%DM)和浓缩物(20%的DM)。随着蛋白质低纤维饮食过量的,将第三种高纤维饮食配制成含有低纤维饮食的可消化蛋白质,以避免NDF和蛋白质过量的任何最终混淆效果。所有饮食均配制成含有ISO-CA,-P,-MG,-K和-NA。利用瘤胃标记消失型材评估瘤胃消失的瘤胃液相和液相的通道动力学。喂养低纤维饮食的奶牛与其他饮食相比,固体低至40%,瘤胃瘤瘤瘤率高的26%较低,分数较高的分数瘤液通率。在奶牛喂食低纤维饮食时,瘤胃液相增加了0.6个单位和Mg浓度增加了0.6单位和Mg浓度。粪便镁的粪便排泄高达14%,喂养低纤维饮食,Mg吸收性为12%,与其他饮食中的高达19%相比。喂养低纤维饮食的牛的尿mg排泄为其他治疗中的一半,但Mg保留不受影响。膳食蛋白缺乏影响瘤胃通道动力学和MG吸收和保留。 Mg的吸收与瘤胃液体体积相关,所述瘤胃液体体积随着每日NDF摄入量降低而降低(NDFI,11.8±2.4L / kg NDFI)。因此,每日Mg吸收减少1.32±0.28g / kg降低NdFi。为了得出结论,除了膳食K的已知拮抗作用外,本数据表明MG吸收依赖于改性瘤胃液体体积的NDFI,但与低NDF草本的膳食蛋白质过量无关。

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