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用于估算百慕大草牧场每日总可消化养分的累加方程修正。

Modification of the summative equation to estimate daily total digestible nutrients for bermudagrass pasture.

作者信息

Woli Prem, Rouquette Francis M, Long Charles R, Tedeschi Luis O, Scaglia Guillermo

机构信息

Texas A&M AgriLife Research Center, Overton, TX.

Department of Animal Science, Texas A&M University, College Station, TX.

出版信息

J Anim Sci. 2020 Nov 1;98(11). doi: 10.1093/jas/skaa354.

Abstract

In forage-animal nutrition modeling, diet energy is estimated mainly from the forage total digestible nutrients (TDN). As digestibility trials are expensive, TDN is usually estimated using summative equations. Early summative equations assumed a fixed coefficient to compute digestible fiber using the lignin-to-neutral detergent fiber (NDF) ratio. Subsequently, a structural coefficient (φ) was added to the summative equations to reflect an association between lignin and cell wall components. Additional modifications to the summative equations assumed a constant φ value, and they have been used as a standard method by many commercial laboratories and scientists. For feeds with nutritive values that do not change much over time, a constant φ value may suffice. However, for forages with nutritive values that keep changing during the grazing season owing to changes in weather and plant maturity, a constant φ value may add a systematic bias to prediction because it is associated with the variable lignin-to-NDF ratio. In this study, we developed a model to estimate φ as a function of the day of the year by using the daily TDN values of bermudagrass [Cynodon dactylon (L.) Pers.], a popular warm-season perennial grass in the southern United States. The variable φ model was evaluated by using it in the TDN equation and comparing the estimated values with the observed ones obtained from several locations. Values of the various measures of fit used-the Willmott index (WI), the modeling efficiency (ME), R2, root mean square error (RMSE), and percent error (PE)-showed that using the variable φ vis-à-vis the constant φ improved the TDN equation significantly. The WI, ME, R2, RMSE, and PE values of 0.94, 0.80, 0.80, 2.5, and 4.7, respectively, indicated that the TDN equation with the variable φ model was able to mimic the observed values of TDN satisfactorily. Unlike the constant φ, the variable φ predicted more closely the forage nutritive value throughout the grazing season. The variable φ model may be useful to forage-beef modeling in accurately reflecting the impacts of plant maturity and weather on daily forage nutritive value and animal performance.

摘要

在牧草动物营养模型中,日粮能量主要通过牧草总可消化养分(TDN)来估算。由于消化率试验成本高昂,TDN通常使用累加方程来估算。早期的累加方程使用木质素与中性洗涤纤维(NDF)的比例来计算可消化纤维,并假设一个固定系数。随后,累加方程中加入了一个结构系数(φ),以反映木质素与细胞壁成分之间的关联。对累加方程的进一步修正假设φ值恒定,许多商业实验室和科学家已将其作为标准方法使用。对于营养价值随时间变化不大的饲料,恒定的φ值可能就足够了。然而,对于由于天气和植物成熟度变化而在放牧季节营养价值不断变化的牧草,恒定的φ值可能会给预测带来系统偏差,因为它与木质素与NDF比例的变化有关。在本研究中,我们利用美国南部一种常见的暖季多年生牧草百慕大草(狗牙根)[Cynodon dactylon (L.) Pers.]的每日TDN值,开发了一个模型来估算作为一年中日期函数的φ。通过将可变φ模型应用于TDN方程,并将估算值与从多个地点获得的观测值进行比较,对该模型进行了评估。所使用的各种拟合度测量指标——威尔莫特指数(WI)、建模效率(ME)、R²、均方根误差(RMSE)和百分比误差(PE)——表明,相对于恒定φ,使用可变φ显著改进了TDN方程。WI、ME、R²、RMSE和PE值分别为0.94、0.80、0.80、2.5和4.7,这表明具有可变φ模型的TDN方程能够令人满意地模拟TDN的观测值。与恒定φ不同,可变φ在整个放牧季节更紧密地预测了牧草营养价值。可变φ模型可能有助于牧草牛肉模型准确反映植物成熟度和天气对每日牧草营养价值和动物性能的影响。

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