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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Relationship of carbohydrate molecular spectroscopic features in combined feeds to carbohydrate utilization and availability in ruminants
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Relationship of carbohydrate molecular spectroscopic features in combined feeds to carbohydrate utilization and availability in ruminants

机译:混合饲料中碳水化合物分子光谱特征与反刍动物碳水化合物利用和有效性的关系

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摘要

To date, there is no study on the relationship between carbohydrate (CHO) molecular structures and nutrient availability of combined feeds in ruminants. The objective of this study was to use molecular spectroscopy to reveal the relationship between CHO molecular spectral profiles (in terms of functional groups (biomolecular, biopolymer) spectral peak area and height intensity) and CHO chemical profiles, CHO subfractions, energy values, and CHO rumen degradation kinetics of combined feeds of hulless barley with pure wheat dried distillers grains with solubles (DDGS) at five different combination ratios (hulless barley to pure wheat DDGS: 100:0, 75:25, 50:50, 25:75, 0:100). The molecular spectroscopic parameters assessed included: lignin biopolymer molecular spectra profile (peak area and height, region and baseline: ca. 1539-1504 cm ~(-1)); structural carbohydrate (STCHO, peaks area region and baseline: ca. 1485-1186 cm ~(-1)) mainly associated with hemi- and cellulosic compounds; cellulosic materials peak area (centered at ca. 1240 cm ~(-1) with region and baseline: ca. 1272-1186 cm ~(-1)); total carbohydrate (CHO, peaks area region and baseline: ca. 1186-946 cm ~(-1)). The results showed that the functional groups (biomolecular, biopolymer) in the combined feeds are sensitive to the changes of carbohydrate chemical and nutrient profiles. The changes of the CHO molecular spectroscopic features in the combined feeds were highly correlated with CHO chemical profiles, CHO subfractions, in situ CHO rumen degradation kinetics and fermentable organic matter supply. Further study is needed to investigate possibility of using CHO molecular spectral features as a predictor to estimate nutrient availability in combined feeds for animals and quantify their relationship.
机译:迄今为止,尚无关于反刍动物中碳水化合物(CHO)分子结构与混合饲料养分利用率之间关系的研究。这项研究的目的是使用分子光谱学来揭示CHO分子光谱图谱(就官能团(生物分子,生物聚合物)的光谱峰面积和高度强度而言)与CHO化学图谱,CHO亚组分,能量值和CHO之间的关系。大麦与纯麦干酒与可溶物(DDGS)混合饲料在5种不同混合比下的瘤胃降解动力学(大麦与纯麦DDGS:100:0,75:25,50:50,25:75,0 :100)。评估的分子光谱参数包括:木质素生物聚合物分子光谱图(峰面积和高度,区域和基线:约1539-1504 cm〜(-1));主要与半纤维素和纤维素化合物相关的结构性碳水化合物(STCHO,峰面积和基线:约1485-1186 cm〜(-1));纤维素材料的峰面积(中心在大约1240 cm〜(-1),区域和基线:大约1272-1186 cm〜(-1));总碳水化合物(CHO,峰面积和基线:约1186-946 cm〜(-1))。结果表明,混合饲料中的官能团(生物分子,生物聚合物)对碳水化合物化学和营养成分的变化敏感。混合饲料中CHO分子光谱特征的变化与CHO化学特性,CHO亚组分,原位CHO瘤胃降解动力学和可发酵有机物供应高度相关。需要进行进一步的研究以调查使用CHO分子光谱特征作为预测因子的可能性,以估计动物混合饲料中的养分利用率并量化它们之间的关系。

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