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玉米青贮杂交种及其添加量对育肥牛性能的影响以及青贮杂交种对生长牛消化率和性能的影响。

The effect of corn silage hybrid and inclusion on performance of finishing steers and silage hybrid effects on digestibility and performance of growing steers.

作者信息

Hilscher F Henry, Bittner Curt J, Gramkow Jana L, Jolly-Breithaupt Melissa L, Norman Mitch M, Wilson Hannah C, Watson Andrea K, MacDonald James C, Anderson John N, Erickson Galen E

机构信息

Department of Animal Science, University of Nebraska-Lincoln, Lincoln, NE 68583, USA.

Dow AgroSciences, Mycogen Seeds, Indianapolis, IN 46268, USA.

出版信息

Transl Anim Sci. 2022 Nov 2;6(4):txac147. doi: 10.1093/tas/txac147. eCollection 2022 Oct.

Abstract

Three experiments evaluated the effects of three corn silage hybrids, inclusion, and nutrient digestibility in growing and finishing diets. The three hybrids tested included a control (CON), a hybrid containing a brown midrib () trait (BM3), and an experimental hybrid with the soft endosperm trait (BM3-SOFT). Experiment 1 utilized 360 crossbred steers (body weight [BW] = 334; SD = 25 kg) to evaluate inclusion of silage in a finishing diet at (15% or 45% of diet dry matter [DM]) and silage hybrid (CON, BM3, or BM3-SOFT). Experiment 2 and 3 utilized 216 crossbred steers (BW = 324; SD = 10 kg) and six ruminally fistulated steers (BW = 274; SD = 27 kg), respectively, to evaluate effects of either CON, BM3, or BM3-SOFT silage hybrids on performance and nutrient digestibility in growing diets. In Exp. 1, there was a silage inclusion × hybrid interaction for average daily gain (ADG) and gain-to-feed ratio (G:F). All treatments with 15% silage had greater ( ≤ 0.04) ADG and G:F compared with 45% silage. Cattle fed BM3-SOFT had greater ADG and G:F than cattle fed CON or BM3 when silage was included at 15% of the diet. When silage was fed at 45% of the diet DM, ADG did not differ between cattle fed either hybrid. Cattle fed BM3 had the greatest G:F ( < 0.01), with no difference between BM3-SOFT and CON. At 15% silage inclusion, hot carcass weight (HCW) was greater ( < 0.01) for cattle fed BM3-SOFT compared with cattle fed CON and BM3 but did not differ between cattle fed BM3 and CON. At 45% silage inclusion, steers fed either hybrid did not differ in HCW but were both heavier ( < 0.01) compared with cattle fed CON. In Exp. 2, ending BW, dry matter intake (DMI), and ADG were greater ( < 0.01) for steers fed either hybrid compared to steers fed the CON, but not different between steers fed the hybrids. There were no differences ( = 0.26) in G:F between the silage hybrids. In Exp. 3, steers fed either had greater ( < 0.01) neutral detergent fiber (NDF) and acid detergent fiber (ADF) digestibility than steers fed the CON. Ruminal pH was lower ( < 0.01), and total volatile fatty acid (VFA) concentration was greater ( < 0.01) for steers fed hybrids compared to steers fed CON. Feeding silage with the trait improved fiber digestibility, which increased DMI and subsequent ADG in high-forage growing diets. Feeding corn silage with the trait improved performance compared to non- corn silage when included above typical roughage concentration.

摘要

三项试验评估了三种玉米青贮杂交种、添加量以及育成期和肥育期日粮中养分消化率的影响。所测试的三种杂交种包括一个对照品种(CON)、一个具有棕色中脉()性状的杂交种(BM3)以及一个具有软胚乳性状的试验杂交种(BM3 - SOFT)。试验1使用360头杂交阉牛(体重[BW]=334;标准差=25千克)来评估青贮料在肥育期日粮中的添加量(占日粮干物质[DM]的15%或45%)以及青贮杂交种(CON、BM3或BM3 - SOFT)。试验2和试验3分别使用216头杂交阉牛(BW = 324;标准差=10千克)和6头瘤胃造瘘阉牛(BW = 274;标准差=27千克)来评估CON、BM3或BM3 - SOFT青贮杂交种对育成期日粮性能和养分消化率的影响。在试验1中,平均日增重(ADG)和增重/饲料比(G:F)存在青贮料添加量×杂交种的互作效应。与45%青贮料相比,所有含15%青贮料的处理组ADG和G:F更高(P≤0.04)。当日粮中青贮料添加量为15%时,饲喂BM3 - SOFT的牛比饲喂CON或BM3的牛ADG和G:F更高。当日粮中青贮料添加量为45%时,饲喂任一杂交种的牛ADG无差异。饲喂BM3的牛G:F最高(P<0.01),BM3 - SOFT和CON之间无差异。在青贮料添加量为15%时,饲喂BM3 - SOFT的牛热胴体重(HCW)比饲喂CON和BM3的牛更高(P<0.01),但饲喂BM3和CON的牛之间无差异。在青贮料添加量为45%时,饲喂任一杂交种的阉牛HCW无差异,但均比饲喂CON的牛更重(P<0.01)。在试验2中,与饲喂CON的阉牛相比,饲喂任一杂交种的阉牛末重、干物质采食量(DMI)和ADG更高(P<0.01),但饲喂这两种杂交种的阉牛之间无差异。青贮杂交种之间的G:F无差异(P = 0.26)。在试验3中,饲喂任一杂交种的阉牛中性洗涤纤维(NDF)和酸性洗涤纤维(ADF)消化率比饲喂CON的阉牛更高(P<0.01)。与饲喂CON的阉牛相比,饲喂杂交种的阉牛瘤胃pH更低(P<0.01),总挥发性脂肪酸(VFA)浓度更高(P<0.01)。饲喂具有该性状的青贮料可提高纤维消化率,这在高粗饲料育成期日粮中增加了DMI并随后提高了ADG。与非该性状玉米青贮料相比,当添加量高于典型粗饲料浓度时,饲喂具有该性状的玉米青贮料可提高性能。

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