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Gas production and starch degradability of corn and barley meals differing in mean particle size

机译:玉米粉和大麦粉的产气量和淀粉降解性的平均粒径不同

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摘要

The objective of this study was to verify the effect of mean particle size (mPS) on both gas production and in vitro rumen starch degradability (IVSD) of corn and barley meals (Cm and Bm, respectively). Batches of the same Cm or Bm were separately processed through 2 different mills (i.e., a cutter mill or a rotor speed mill) equipped with or without different screens to achieve different mPS for each tested meal. Samples were analyzed accordingly to a completely randomized design and the main tested effect of model was mPS (n = 11, from 0.46 to 3.50 mm mPS for Cm or n = 10, from 0.11 to 2.98 mm mPS for Bm). For both in vitro assays, the rumen inocula were collected from 2 rumen-fistulated Holstein lactating dairy cows fed a total mixed ration with 16.2% crude protein, 28.5% starch, and 35.0% neutral detergent fiber on a dry matter basis. To fit gas production data, 1-pool exponential model and 1-pool or 2-pool Gompertz models were adopted. The rate of gas production decreased and lag increased by increasing mPS of both Cm and Bm, irrespective of adopted 1-pool models. When the 2-pool Gompertz model was used to fit gas production data, a shift of particles from fast to slow fermentable pools was measured by increasing mPS. In particular, the ratio between fast and slow final volumes ranged from 0.90 at 0.11 mm mPS to 0.10 at 2.98 mm mPS for Bm. For Cm, the ratio between fast and slow final volumes decreased quadratically by increasing mPS, with the highest value (i.e., 0.58) measured at the lowest tested mPS. Values lower than 0.10 were measured for mPS greater than 1.93 mm for Cm. Concerning IVSD data, linear decreases in rate of starch degradation equal to -0.049 or -0.092 h~(-1) for each 1-mm increase in mPS were achieved for Cm and Bm, respectively. The 7-h IVSD decreased by 6.3 or 6.5% starch for each 1-mm increase in mPS of Cm or Bm, respectively. Present findings supported the hypothesis that different particle sizes within the same starch source represent an important factor influencing both fermentation kinetic parameters and IVSD.
机译:这项研究的目的是验证平均粒径(mPS)对玉米和大麦粕(分别为Cm和Bm)的产气量和体外瘤胃淀粉降解性(IVSD)的影响。同一批Cm或Bm的批次分别通过配备或不配备不同筛网的2个不同的工厂(即切碎机或转子速度粉碎机)进行处理,以针对每种测试餐获得不同的mPS。相应地,对样品进行了完全随机设计的分析,模型的主要测试效果是mPS(对于Cm,n = 11,从0.46至3.50 mm mPS;对于Bm,n = 10,从0.11至2.98 mm mPS)。对于两种体外测定,均从2只瘤胃造瘘的荷斯坦泌乳奶牛中收集瘤胃接种物,以总干粮为基础,混合比例为16.2%的粗蛋白,28.5%的淀粉和35.0%的中性洗涤剂纤维。为了拟合天然气产量数据,采用了1池指数模型和1池或2池Gompertz模型。 Cm和Bm的mPS均增加,气体生产率降低而滞后增加,而与采用的1池模型无关。当使用2池Gompertz模型拟合气体产量数据时,通过增加mPS来测量颗粒从快速发酵池向缓慢发酵池的转移。特别地,对于Bm,快速和慢速最终体积之间的比率范围从0.11 mm mPS时的0.90到2.98 mm mPS时的0.10。对于Cm,快速和慢速最终体积之间的比率通过增加mPS二次方降低,在最低的测试mPS处测得最大值(即0.58)。对于Cm,对于大于1.93 mm的mPS,测量的值小于0.10。关于IVSD数据,对于Cm和Bm,每增加1 mm mPS,淀粉降解速率的线性下降分别等于-0.049或-0.092 h〜(-1)。 Cm或Bm的mPS每增加1mm,7-h IVSD减少6.3或6.5%淀粉。目前的发现支持以下假设:同一淀粉源中的不同粒径代表了影响发酵动力学参数和IVSD的重要因素。

著录项

  • 来源
    《Journal of dairy science》 |2016年第6期|4347-4359|共13页
  • 作者单位

    Feed and Food Science and Nutrition Institute, Facolta di Scienze Agrarie, Alimentari e Ambientali, Universita Cattolica del Sacro Cuore, 29122 Piacenza, Italy;

    Feed and Food Science and Nutrition Institute, Facolta di Scienze Agrarie, Alimentari e Ambientali, Universita Cattolica del Sacro Cuore, 29122 Piacenza, Italy;

    Feed and Food Science and Nutrition Institute, Facolta di Scienze Agrarie, Alimentari e Ambientali, Universita Cattolica del Sacro Cuore, 29122 Piacenza, Italy;

  • 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

    cereal; particle size; gas production; starch degradation;

    机译:谷类;粒度天然气生产;淀粉降解;
  • 入库时间 2022-08-17 23:23:21

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