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豆粕粒度对保育猪生长性能的影响。

Effects of soybean meal particle size on growth performance of nursery pigs.

作者信息

Lawrence K R, Hastad C W, Goodband R D, Tokach M D, Dritz S S, Nelssen J L, DeRouchey J M, Webster M J

机构信息

Department of Animal Sciences and Industry, Kansas State University, Manhattan 66506-0201, USA.

出版信息

J Anim Sci. 2003 Sep;81(9):2118-22. doi: 10.2527/2003.8192118x.

Abstract

We used 360 nursery pigs (35 +/- 3 d of age) in two 21-d growth assays to determine the effects of soybean meal particle size on growth performance. In both trials, there were six pigs per pen and 10 pens per treatment. Pigs were weaned on d 21 and fed the same phase I diet for 7 d after weaning, followed by a phase II diet from d 7 to 14. On d 14, all pigs were weighed and randomly allotted to one of three dietary treatments. Experimental diets contained 61.9% corn, 34.4% soybean meal, and 3.7% vitamins and minerals. In Exp. 1, 90 barrows and 90 gilts (9.2 +/- 2.3 kg BW) were fed diets containing extruded-expelled soybean meal ground to 965, 742, or 639 microm, which resulted in whole-diet particle sizes of 728, 719, and 697 microm, respectively. Reducing extruded-expelled soybean meal particle size from 965 or 742 to 639 microm in the diet did not affect (P > 0.10) ADG (541, 538, and 542 g/d), ADFI (886, 875, and 855 g/d; as-fed basis), or gain:feed ratio (0.61, 0.61, 0.64), respectively. In Exp. 2, 90 barrows and 90 gilts (9.9 +/- 2.6 kg BW) were fed diets containing solvent-extracted soybean meal ground to 1,226, 797, or 444 microm, which resulted in whole-diet particle sizes of 732, 681, and 629 microns, respectively. Like Exp. 1, reducing particle size of solvent-extracted soybean meal did not affect (P > 0.10) ADG (482, 487, and 484 g/d), ADFI (738, 742, and 736 g/d; as-fed), or gain:feed (0.65, 0.65, and 0.65). Reducing particle size of extruded-expelled soybean meal or solvent-extracted soybean meal increased the angle of repose (maximum degree at which a pile of material retains its slope), indicating that as particle size decreased, flowability characteristics decreased. However, the angle of repose of the complete diets was greater than that for the soybean meals, which indicates that decreasing the particle size of soybean meal had minimal effects on flow characteristics of the complete diet. Previous research has shown that decreasing grain particle size improves digestibility and feed efficiency, and decreased soybean meal particle size has resulted in improved amino acid digestibility. However, the results of our experiments suggest decreasing particle size of either extruded-expelled soybean meal or solvent-extracted soybean meal does not affect nursery pig growth performance.

摘要

我们在两项为期21天的生长试验中使用了360头保育猪(35±3日龄),以确定豆粕粒度对生长性能的影响。在两项试验中,每栏饲养6头猪,每个处理设10个重复栏。仔猪在21日龄断奶,断奶后7天饲喂相同的I期日粮,然后从第7天至第14天饲喂II期日粮。在第14天,对所有仔猪进行称重,并随机分配到三种日粮处理之一。试验日粮包含61.9%的玉米、34.4%的豆粕以及3.7%的维生素和矿物质。在试验1中,90头公猪和90头母猪(体重9.2±2.3千克)饲喂含有挤压膨化豆粕的日粮,这些豆粕分别研磨至965、742或639微米,日粮的全颗粒大小分别为728、719和697微米。日粮中挤压膨化豆粕粒度从965或742微米降至639微米,对平均日增重(分别为541、538和542克/天)、平均日采食量(分别为886、875和855克/天,以风干基础计)或料重比(分别为0.61、0.61、0.64)均无显著影响(P>0.10)。在试验2中,90头公猪和90头母猪(体重9.9±2.6千克)饲喂含有溶剂浸提豆粕的日粮,这些豆粕分别研磨至1226、797或444微米,日粮的全颗粒大小分别为732、681和629微米。与试验1类似,溶剂浸提豆粕粒度降低对平均日增重(分别为(482、487和484克/天)、平均日采食量(分别为738、742和736克/天,以风干计)或料重比(分别为0.65、0.65和0.65)均无显著影响(P>0.10)。挤压膨化豆粕或溶剂浸提豆粕粒度降低会使静止角增加(物料堆保持其坡度的最大角度),这表明随着粒度减小,流动性特征降低。然而,全价日粮的静止角大于豆粕的静止角,这表明豆粕粒度减小对全价日粮的流动特性影响极小。先前的研究表明,谷物粒度减小可提高消化率和饲料效率,豆粕粒度减小可提高氨基酸消化率。然而,我们的试验结果表明,挤压膨化豆粕或溶剂浸提豆粕粒度减小并不影响保育猪的生长性能。

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