首页> 外文期刊>Journal of dairy science >Molecular basis of protein structure in combined feeds (hulless barley with bioethanol coproduct of wheat dried distillers grains with solubles) in relation to protein rumen degradation kinetics and intestinal availability in dairy cattle
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Molecular basis of protein structure in combined feeds (hulless barley with bioethanol coproduct of wheat dried distillers grains with solubles) in relation to protein rumen degradation kinetics and intestinal availability in dairy cattle

机译:混合饲料(无麸质大麦与小麦干酒糟中含有可溶物的生物乙醇副产物)中蛋白质结构的分子基础,与奶牛蛋白质瘤胃降解动力学和肠道利用率有关

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摘要

The objectives of this study were to reveal protein molecular structure in relation to rumen degradation kinetics and intestinal availability in combined feeds of hulless barley with bioethanol coproduct [pure wheat dried distillers grains with solubles (DDGS)] at 5 differ-ent ratios (100:0, 75:25, 50:50, 25:75, and 0:100) in dairy cattle. The parameters assessed included 1) protein chemical profiles, 2) protein subfractions partitioned by the Cornell Net Carbohydrate and Protein System, 3) in situ protein degradation kinetics, 4) truly absorbed protein supply in the small intestine (DVE), metabo-lizable protein characteristics and degraded protein balance (OEB), 5) protein molecular structure spectral profiles, and 6) correlation between protein molecular structure and protein nutrient profiles and metabolic characteristics. We found that 1) with increasing in-clusion of wheat DDGS in feed combinations, protein chemical compositions of crude protein (CP), neutral detergent-insoluble CP, acid detergent-insoluble CP, and nonprotein N were increased, whereas soluble CP was decreased linearly; CP subfractions A, B_3, and C were increased linearly, but CP subfractions B_1 and B_2 were decreased; truly digestible CP increased but total digestible nutrients at 1× maintenance decreased lin-early; protein degradation rate was decreased without affecting potentially soluble, potentially degradable, and potentially undegradable fractions, and both rumen-degradable protein and rumen-undegradable protein were increased; by using the DVE/OEB system, the DVE and OEB values were increased from 98 to 226 g/kg of dry matter and -1 to 105 g/kg of dry matter, respectively; 2) by using the molecular spectroscopy technique, the spectral differences in protein molecular structure were detected among the feed combinations; in the original combined feeds, amide I and Ⅱ peak area and ratio of amide I to Ⅱ were increased linearly; although no difference existed in α-helix and β-sheet height among the combinations, the ratio of α-helix to β-sheet height was changed quadratically; 3) in the in situ 48-h residue samples, amide I and amide Ⅱ peak area intensities were increased linearly and the ratio of amide I to Ⅱ peak area was decreased linearly from 4.28 to 2.63; α-helix and β-sheet height of rumen residues were similar among 5 feed combinations; and 4) the ratio of α-helix to β-sheet height in original feed combi-nations was strongly correlation with protein chemical and nutrient profiles, but the ratio of amide I to Ⅱ area had no significant correlation with all items that were tested; no correlation was found between the ratio of α-helix to β-sheet height of the in situ rumen residues and protein chemical and nutrient profiles. In conclu-sion, by integration of hulless barley with bioethanol coproduct of wheat DDGS, feed quality in combined feeds was improved and more optimized. Adding wheat DDGS increased linearly CP, truly digestible CP, ru-men-degradable protein, rumen-undegradable protein, DVE, and OEB values in combined feeds. The molecu-lar spectral differences of protein molecular structures (amide Ⅰ and Ⅱ area intensities, the ratio of amide I to amide Ⅱ, and the ratio of α-helix to β-sheet height among feed combinations) were detected among the combinations. This may partially explain the biologi-cal differences in protein chemical profiles and protein utilization and availability in dairy cattle. In the origi-nal combined feeds, protein α-helix-to-β-sheet ratio had significant correlations with protein chemical and nutrient profiles, but in in situ 48-h residue samples, protein amide Ⅰ-to-Ⅱ ratio had significant correlations with protein chemical and nutrient profiles. This study may provide an insight into how to more efficiently use hulless barley grain (high energy and high degradation rate) and wheat DDGS (high metabolizable protein and low degradation rate) in beef and dairy production systems.
机译:这项研究的目的是揭示以5种不同比例混合的无头大麦与生物乙醇副产物[纯麦干蒸馏酒含可溶物(DDGS)]混合饲料中与瘤胃降解动力学和肠道利用率相关的蛋白质分子结构。 0、75:25、50:50、25:75和0:100)。评估的参数包括1)蛋白质化学特征,2)由Cornell净碳水化合物和蛋白质系统划分的蛋白质亚组分,3)原位蛋白质降解动力学,4)小肠(DVE)中真正吸收的蛋白质供应,可代谢的蛋白质特征和降解的蛋白质平衡(OEB),5)蛋白质分子结构光谱图和6)蛋白质分子结构与蛋白质营养素图谱和代谢特征之间的相关性。我们发现1)随着饲料组合中小麦DDGS含量的增加,粗蛋白(CP),中性去污剂不溶性CP,酸性去污剂不溶性CP和非蛋白N的蛋白质化学组成增加,而可溶性CP降低线性CP子级分A,B_3和C线性增加,而CP子级分B_1和B_2减少;真正可消化的CP增加,但维持1倍的总可消化养分在早期减少。降低了蛋白质的降解速率,而不影响潜在的可溶,潜在可降解和潜在不可降解的组分,瘤胃可降解蛋白和瘤胃不可降解蛋白均增加了;通过使用DVE / OEB系统,DVE和OEB值分别从98增至226 g / kg干物质和-1增至105 g / kg干物质。 2)利用分子光谱技术,检测了饲料组合中蛋白质分子结构的光谱差异;在最初的混合饲料中,酰胺I和Ⅱ的峰面积和酰胺I与Ⅱ的比例线性增加。虽然在组合中α-螺旋和β-折叠高度没有差异,但是α-螺旋与β-折叠高度的比例是二次变化的。 3)在原位48 h残留样品中,酰胺I和酰胺Ⅱ峰面积强度线性增加,酰胺I与Ⅱ峰面积之比从4.28线性降低至2.63; 5种饲料组合中瘤胃残留的α-螺旋和β-折叠高度相似。 4)原始饲料组合中α-螺旋与β-片层高度的比值与蛋白质的化学和营养状况密切相关,但酰胺I与Ⅱ面积的比值与所测试的所有项目均无显着相关性;在原位瘤胃残基的α-螺旋与β-折叠高度之比与蛋白质化学和营养成分之间未发现相关性。结论是,通过将无粒大麦与小麦DDGS的生物乙醇副产物整合,可提高并优化组合饲料的饲料质量。添加小麦DDGS线性增加了复合饲料中的CP,真正可消化的CP,瘤胃可降解蛋白,瘤胃不可降解蛋白,DVE和OEB值。检测了饲料组合中蛋白质分子结构的分子光谱差异(酰胺Ⅰ和Ⅱ的面积强度,酰胺Ⅰ与酰胺Ⅱ的比率以及α-螺旋与β-折叠高度的比率)。这可能部分解释了奶牛蛋白质化学特性以及蛋白质利用和可用性方面的生物学差异。在原始混合饲料中,蛋白质α-螺旋与β-片层之比与蛋白质化学和营养成分有显着相关性,但在原位48小时残留样品中,蛋白质酰胺Ⅰ与Ⅱ之比具有显着相关性具有蛋白质化学成分和营养成分。这项研究可以为如何在牛肉和奶制品生产系统中更有效地利用无粒大麦籽粒(高能量和高降解率)和小麦DDGS(高代谢蛋白和低降解率)提供一个见识。

著录项

  • 来源
    《Journal of dairy science》 |2012年第6期|p.3363-3379|共17页
  • 作者

    X. Zhang; P. Yu;

  • 作者单位

    Department of Animal and Poultry Science, College of Agriculture and Bioresources University of Saskatchewan, Saskatoon SK S7N 5A8, Canada,Department of Animal Science, Tianjin Agricultural University, Tianjin, 300384, China;

    Department of Animal and Poultry Science, College of Agriculture and Bioresources University of Saskatchewan, Saskatoon SK S7N 5A8, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    protein molecular structure; truly absorbed protein in small intestine; hulless barley; wheat dried distillers grains with solubles;

    机译:蛋白质分子结构;真正吸收小肠中的蛋白质;无情的大麦小麦干酒糟与可溶物;
  • 入库时间 2022-08-17 23:24:25

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