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艾诺基因饲料玉米和传统黄色马齿型玉米的粒度对保育猪和育肥猪性能、胴体特性及胃形态的影响。

The influence of particle size of Enogen Feed corn and conventional yellow dent corn on nursery and finishing pig performance, carcass characteristics and stomach morphology.

作者信息

Williams Hadley R, Tokach Mike D, Woodworth Jason C, DeRouchey Joel M, Goodband Robert D, Gebhardt Jordan T, Paulk Chad B

机构信息

Department of Animal Sciences and Industry, College of Agriculture, Kansas State University, Manhattan, KS 66506, USA.

Department of Diagnostic Medicine/Pathobiology, College of Veterinary Medicine, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Transl Anim Sci. 2021 Jul 16;5(3):txab120. doi: 10.1093/tas/txab120. eCollection 2021 Jul.

Abstract

Enogen Feed corn is a variety developed by Syngenta Seeds (Downers Grove, IL) that has been genetically modified to contain an α-amylase enzyme trait (SYT-EFC). Originally, Enogen feed corn was developed for the ethanol industry due to its reduction in viscosity of the corn mash, thus eliminating the need to add a liquid form of the α-amylase enzyme. However, there is a potential application for Enogen Feed corn to be used in livestock diets due to the increase in α-amylase enzyme potential to increase starch digestibility. A more common method of increasing starch digestibility in corn is to finely grind it to reduce particle size. This increases the surface area and allows for greater interaction with digestive enzymes. We hypothesized that pigs fed Enogen feed corn potentially could achieve similar gain:feed ratio (G:F) at larger particle sizes than conventional corn because of the differences in starch digestibility. In experiment 1, a total of 360 pigs (DNA 200 × 400, Columbus, NE; initially 6.6 ± 0.1 kg BW) were used with five pigs per pen and 12 pens per treatment. Treatments were arranged in a 2 × 3 factorial with main effects of corn source (Enogen Feed corn or conventional yellow dent corn) and ground corn particle size (300, 600, or 900 µm). Overall, there was a corn source × particle size interaction (linear, = 0.027) for G:F. There was no effect due to particle size when pigs were fed conventional yellow dent corn, but in pigs fed Enogen Feed corn, G:F increased with decreasing particle size. Neither corn source nor particle size affected ( > 0.05) overall average daily gain (ADG) or average daily feed intake (ADFI). In experiment 2, a total of 323 pigs (241 × 600; DNA, Columbus, NE; initially 50.0 ± 1.3 kg) were used with nine pigs per pen and six pens per treatment. Treatments were identical as experiement 1. Overall, corn source had no effect on finishing pig ADG, ADFI or G:F. For corn particle size, ADG and G:F increased (linear, < 0.014) and ADFI decreased ( = 0.043) as particle size decreased. For stomach morphology, there was a tendency for a corn source × particle size interaction ( = 0.055) for keratinization score with keratinization increasing linearly ( = 0.001) as particle size of the corn decreased for yellow dent corn with no change in keratinization score as particle size decreased for Enogen Feed corn. In summary, reducing corn particle size improved G:F with no major differences observed between corn sources for overall pig performance.

摘要

益农饲料玉米是先正达种子公司(伊利诺伊州唐纳斯格罗夫)培育的一个品种,已通过基因改造使其含有一种α -淀粉酶酶性状(SYT - EFC)。最初,益农饲料玉米是为乙醇行业开发的,因为它能降低玉米糊的粘度,从而无需添加液态α -淀粉酶。然而,由于α -淀粉酶潜力的增加会提高淀粉消化率,益农饲料玉米在牲畜日粮中也有潜在应用。提高玉米淀粉消化率的一种更常见方法是将其精细研磨以减小颗粒大小。这增加了表面积,使与消化酶的相互作用更强。我们推测,由于淀粉消化率的差异,饲喂益农饲料玉米的猪在颗粒尺寸比传统玉米更大时可能实现相似的增重:饲料比(G:F)。在实验1中,总共使用了360头猪(DNA 200×400,内布拉斯加州哥伦布;初始体重6.6±0.1千克),每栏5头猪,每个处理12栏。处理按2×3析因设计,主要因素为玉米来源(益农饲料玉米或传统黄色马齿玉米)和粉碎玉米颗粒大小(300、600或900微米)。总体而言,对于G:F存在玉米来源×颗粒大小的交互作用(线性, = 0.027)。当猪饲喂传统黄色马齿玉米时,颗粒大小没有影响,但在饲喂益农饲料玉米的猪中,G:F随颗粒大小减小而增加。玉米来源和颗粒大小均未影响( > 0.05)总体平均日增重(ADG)或平均日采食量(ADFI)。在实验2中,总共使用了323头猪(241×600;DNA,内布拉斯加州哥伦布;初始体重50.0±1.3千克),每栏9头猪,每个处理6栏。处理与实验1相同。总体而言,玉米来源对育肥猪的ADG、ADFI或G:F没有影响。对于玉米颗粒大小,随着颗粒大小减小,ADG和G:F增加(线性, < 0.014),ADFI降低( = 0.043)。对于胃形态,在角质化评分方面存在玉米来源×颗粒大小的交互作用趋势( = 0.055),随着黄色马齿玉米颗粒大小减小,角质化呈线性增加( = 0.001),而对于益农饲料玉米,随着颗粒大小减小,角质化评分没有变化。总之,减小玉米颗粒大小可提高G:F,在整体猪性能方面,玉米来源之间未观察到重大差异。

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