首页> 外文期刊>Journal of dairy science >Short communication: Effect of washing method, grinding size, and the determination of an indigestible fraction on in situ degradation of starch in mature corn grain
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Short communication: Effect of washing method, grinding size, and the determination of an indigestible fraction on in situ degradation of starch in mature corn grain

机译:简短交流:洗涤方法,研磨尺寸和确定难消化部分对成熟玉米籽粒中淀粉原位降解的影响

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The objectives of this study were to determine (1) the effect of grinding size (1, 2, 4, and 6 mm) to determine effective ruminal disappearance (ERD); (2) the most adequate method to estimate the rapidly degradable fraction (A); (3) a time point to measure the indigestible fraction (C); and (4) the viability of using fewer time points to estimate starch fractional disappearance rate (k(d)) of mature corn grain. Fraction A was determined by rinsing in a bucket or washing machine, rumen immersion followed by bucket or washing machine, and water immersion for 30 min followed by bucket or washing machine. Ruminal in situ incubations were performed at 48, 72, 96, and 120 h to determine fraction C, and at 0 (washing machine), 3, 6, 12, 18, 24, and 48 h to determine the kinetics of starch disappearance. Models were used with either 2 or 3 pools and k d was determined by the linear slope of the log-transformed bag residues as a proportion of incubated samples over time. The ERD was calculated as A + B [k(d) /(k(d) + k(p))], where kp is the ruminal fractional passage rate , 16.0% h(-1). Data were analyzed using PROC MIXED of SAS (SAS Institute Inc., Cary, NC) with the fixed effects of run (for fraction A analysis only) method (either washing or model), grinding size, and method by grinding size interaction, with cow as a random effect. Correlation between estimates calculated using all time points or combinations of 2 and 3 time points were determined using PROC CORR. Fraction A was reduced as grinding size increased, but was not altered by washing method. Samples ground at 6 mm had greater fraction C than other grinding sizes at 48, 72, or 96 h, but not at 120 h. Model affected the slowly degradable fraction (B) values solely, but the difference was minor (0.5 percentage units). Greater fractions B and C but reduced k d and ERD were observed as grinding size increased. Based on correlation analysis the 2-pool model, incubation times of 0, 3, and 48 h were suitable to evaluate ruminal starch degradation kinetics in mature corn. Ruminal in situ incubation at 120 h highlighted the lack of a fraction C of starch (0.13% of starch). Washing method did not affect determination of fraction A of starch. Ruminal in situ incubations of 0, 3, and 48 h for starch degradation kinetics using a 2-pool model were adequate for mature ground corn, but 120 h of incubation is suggested to confirm the existence or absence of a fraction C. Grinding size affected starch degradation kinetics and fraction A determination.
机译:这项研究的目的是确定(1)磨削尺寸(1、2、4和6 mm)对确定有效瘤胃消失(ERD)的影响; (2)最快速估计可降解分数(A)的方法; (3)测量难消化分数(C)的时间点; (4)使用较少的时间点来估计成熟玉米籽粒淀粉分数消失率(k(d))的可行性。通过在水桶或洗衣机中漂洗,将瘤胃浸入水桶或洗衣机中,然后在水桶中浸入30分钟,然后在水桶或洗衣机中漂洗来确定级分A。在48、72、96和120 h进行瘤胃原位温育以确定级分C,在0(洗衣机),3、6、12、18、24和48 h进行淀粉原位温育以确定淀粉消失的动力学。模型使用2个或3个合并池,并且k d由对数转换后的袋残余物(随时间推移培养的样品的比例)的线性斜率确定。 ERD的计算公式为A + B [k(d)/(k(d)+ k(p))],其中kp是瘤胃通过率,即16.0%h(-1)。使用SAS的PROC MIXED(位于北卡罗来纳州卡里的SAS Institute Inc.公司)的数据进行分析,具有运行(仅用于馏分A分析)方法(洗涤或模型),磨削尺寸以及通过磨削尺寸相互作用的固定效果的固定影响,牛为随机效应。使用PROC CORR确定使用所有时间点或2和3个时间点的组合计算出的估计值之间的相关性。随着研磨尺寸的增加,馏分A减少,但洗涤方法不变。在48、72或96小时而非120小时时,在6毫米处研磨的样品具有比其他研磨尺寸更大的分数C。模型仅影响可缓慢降解的分数(B)值,但差异很小(0.5个百分点单位)。随着研磨尺寸的增加,观察到较大的B和C级分,但k d和ERD降低。基于相关分析,两池模型,0、3和48 h的孵育时间适合评估成熟玉米的瘤胃淀粉降解动力学。在120 h的瘤胃原位温育强调了缺乏淀粉级分C(淀粉的0.13%)。洗涤方法不影响淀粉级分A的测定。使用2池模型对淀粉降解动力学进行0、3和48 h的原位原位培养对于成熟的玉米粉来说是足够的,但是建议进行120 h的培养以确认是否存在C级分。淀粉降解动力学和馏分A的测定。

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