首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Interactive Curve-Linear Relationship Between Alteration of Carbohydrate Macromolecular Structure Traits in Hulless Barley (Hordeum vulgare L.) Grain and Nutrient Utilization Biodegradation and Bioavailability
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Interactive Curve-Linear Relationship Between Alteration of Carbohydrate Macromolecular Structure Traits in Hulless Barley (Hordeum vulgare L.) Grain and Nutrient Utilization Biodegradation and Bioavailability

机译:大麦籽粒碳水化合物大分子结构性状变化与养分利用生物降解和生物利用度之间的交互曲线线性关系

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摘要

The aim of this study was to reveal an interactive curve-linear relationship between altered carbohydrate macromolecular structure traits of hulless barley cultivars and nutrient utilization, biodegradation, as well as bioavailability. The cultivars had different carbohydrate macromolecular traits, including amylose (A), amylopectin (AP), and β-glucan contents, as well as their ratios (A:AP). The parameters assessed included: (1) chemical and nutrient profiles; (2) protein and carbohydrate sub-fractions partitioned by the Cornell Net Carbohydrate and Protein System (CNCPS); (3) total digestible nutrients (TDN) and energy values; and (4) in situ rumen degradation kinetics of nutrients and truly absorbed nutrient supply. The hulless barley samples were analyzed for starch (ST), crude protein (CP), total soluble crude protein (SCP), etc. The in situ incubation technique was performed to evaluate the degradation kinetics of the nutrients, as well as the effective degradability (ED) and bypass nutrient (B). Results showed that the carbohydrates (g/kg DM) had a cubic relationship (p < 0.05), with the A:AP ratio and β-glucan level; while the starch level presented a quadratic relationship (p < 0.05), with the A:AP ratio and cubic relationship (p < 0.05), with β-glucan level. The CP and SCP contents had a cubic relationship (p < 0.05) with the A:AP ratio and β-glucan level. The altered carbohydrate macromolecular traits were observed to have strongly curve-linear correlations with protein and carbohydrate fractions partitioned by CNCPS. For the in situ protein degradation kinetics, there was a quadratic effect of A:AP ratio on the rumen undegraded protein (RUP, g/kg DM) and a linear effect of β-glucan on the bypass protein (BCP, g/kg DM). The A:AP ratio and β-glucan levels had quadratic effects (p < 0.05) on BCP and EDCP. For ST degradation kinetics, the ST degradation rate (Kd), BST and EDST showed cubic effects (p < 0.05) with A:AP ratio. The β-glucan level showed a cubic effect on EDST (g/kg DM) and a quadratic effect on BST (g/kg ST or g/kg DM) and EDST (g/kg DM). In conclusion, alteration of carbohydrate macromolecular traits in hulless barley significantly impacted nutrient utilization, metabolic characteristics, biodegradation, and bioavailability. Altered carbohydrate macromolecular traits curve-linearly affected the nutrient profiles, protein and carbohydrate fractions, total digestible nutrient, energy values, and in situ degradation kinetics.
机译:这项研究的目的是揭示无节制大麦品种碳水化合物大分子结构特征的变化与养分利用,生物降解以及生物利用度之间的相互作用曲线-线性关系。品种具有不同的碳水化合物大分子特性,包括直链淀粉(A),支链淀粉(AP)和β-葡聚糖含量及其比例(A:AP)。评估的参数包括:(1)化学和营养成分; (2)由康奈尔净碳水化合物和蛋白质系统(CNCPS)划分的蛋白质和碳水化合物子级分; (3)总可消化营养素(TDN)和能量值; (4)营养物质的原位瘤胃降解动力学和真正吸收的营养物质供应。对无麸质大麦样品进行了淀粉(ST),粗蛋白(CP),总可溶性粗蛋白(SCP)等分析。采用原位孵育技术评估营养物质的降解动力学以及有效降解能力。 (ED)和旁路养分(B)。结果表明,碳水化合物(g / kg DM)与A:AP比和β-葡聚糖水平呈三次方关系(p <0.05)。淀粉含量呈二次关系(p <0.05),A:AP比呈三次关系(p <0.05),呈β-葡聚糖含量。 CP和SCP含量与A:AP比和β-葡聚糖水平呈三次方关系(p <0.05)。观察到改变的碳水化合物大分子性状与由CNCPS分配的蛋白质和碳水化合物部分具有强烈的曲线线性相关性。对于原位蛋白质降解动力学,A:AP比对瘤胃未降解蛋白质(RUP,g / kg DM)有二次效应,而β-葡聚糖对旁路蛋白质(BCP,g / kg DM)有线性效应。 )。 A:AP比和β-葡聚糖水平对BCP和EDCP具有二次效应(p <0.05)。对于ST降解动力学,在A:AP比下,ST降解速率(Kd),BST和EDST表现出立方效应(p <0.05)。 β-葡聚糖水平对EDST(g / kg DM)有立方效应,对BST(g / kg ST或g / kg DM)和EDST(g / kg DM)有二次效应。总之,无粒大麦中碳水化合物大分子性状的改变显着影响了养分利用,代谢特性,生物降解和生物利用度。改变的碳水化合物大分子特征曲线线性地影响营养成分,蛋白质和碳水化合物组分,总可消化营养成分,能量值以及原位降解动力学。

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