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Corn Silage Management: Effects of Hybrid, Chop Length, and Mechanical Processing on Digestion and Energy Content

机译:玉米青贮饲料管理:杂种,排骨长度和机械加工对消化和能量含量的影响

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Two experiments were conducted to evaluate the effects of chop length and mechanical processing of two hybrids of whole plant corn on digestion and energy content of the total mixed ration (TMR). The experimental designs in experiments 1 and 2 were 6x6 and 4 x 4 Latin squares, respectively. In the first experiment, Pioneer hybrid 3845 was harvested at three theoretical lengths of cut: 11.1, 27.8, and 39.7 mm. At each chop length, corn was harvested with and without mechanical processing using a John Deere 5830 harvester with an onboard kernel processor. In the second experiment, Pioneer hybrid Quanta was harvested at two theoretical lengths of cut: 27.8 and 39.7 mm, with and without mechanical processing. In both experiments, the increase in the theoretical length of cut of corn silage increased the average length of cut and tended to increase the percentage of particles greater than 19 mm and lower the percentage of particles between 8 and 19 mm. In experiment 1, apparent total tract dry matter, organic matter, and neutral detergent fiber (NDF) digestibilities were lower for cows fed diets containing corn silage harvested at a short chop length (11.1 mm) than for corn silage harvested at a long chop length (39.7 mm). The lower total tract digestibility of nutrients may have contributed to the lower TDN, metaboliz-able energy (percentage of digestible energy), and NE_L concentration of diets containing the short chop length corn silage (experiment 1). In experiment 2, total tract starch digestibility was greater for cows fed medium chop (27.8 mm) corn silage diets, and total tract NDF digestibility was greater for cows fed long chop (39.7 mm) corn silage diets. The opposing effect of total tract starch and fiber digestibilities between chop lengths may have contributed to the lack of difference in energy content of the diets in experiment 2. The TDN and concentrations of the processed corn silage diets were greater than the unprocessed corn silage diets in experiment 1. The increase in energy concentration for the processed corn silage diet was due to greater total tract digestibility of organic matter and ether extract. Total tract starch digestibility was greater, and total tract NDF digestibility was lower for cows fed processed corn silage diets than unprocessed corn silage diets in experiment 2. The opposing effect of total tract starch and fiber digestibilities between processed and unprocessed corn silage may have contributed to the lack of difference in energy content of the diets.
机译:进行了两个实验,以评估整株玉米的两个杂交种的剁碎长度和机械加工对总混合日粮(TMR)的消化和能量含量的影响。实验1和2中的实验设计分别是6x6和4 x 4拉丁方块。在第一个实验中,Pioneer hybrid 3845以三个理论的切割长度收获:11.1、27.8和39.7 mm。在每个排骨长度下,使用带有机载内核处理器的John Deere 5830收割机,在进行机械加工和不进行机械加工的情况下,均收获玉米。在第二个实验中,采用机械加工和不采用机械加工的两种理论切割长度分别收获了先锋杂交种Quanta:27.8和39.7 mm。在这两个实验中,玉米青贮饲料理论切割长度的增加会增加平均切割长度,并倾向于增加大于19毫米的颗粒的百分比,并降低8至19毫米之间的颗粒的百分比。在实验1中,饲喂含有短排长(11.1 mm)收获的玉米青贮饲料的母牛的表观总干物质,有机质和中性清洁剂纤维(NDF)的消化率低于长排长的玉米青贮饲料(39.7毫米)。营养成分的总道消化率较低,可能导致较低的TDN,可代谢能(可消化能百分比)和含有短排骨玉米青贮饲料的日粮NE_L浓度降低(实验1)。在实验2中,饲喂中等排骨(27.8毫米)玉米青贮饲料的母牛的总淀粉消化率更高,饲喂长排骨(39.7毫米)玉米青贮饲料的母牛的总NDF消化率更高。在短切长度之间,总淀粉和纤维消化率的相反作用可能是导致实验2中日粮能量含量缺乏差异的原因。在玉米中,加工的青贮饲料的TDN和浓度高于未加工的青贮饲料。实验1.加工的玉米青贮饲料的能量浓度增加是由于有机物和乙醚提取物的总道消化率更高。在实验2中,饲喂加工玉米青贮饲料的母牛的全道淀粉消化率更高,而总膳食NDF消化率则比未加工玉米青贮饲料的母牛低。加工和未加工玉米青贮饲料之间的总淀粉和纤维消化率的相反作用可能是导致饮食中能量含量缺乏差异。

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