劉 凱,李 飛,唐德富,李發(fā)弟,3,梁玉生,李國(guó)彰,鄧 穎
(1.草地農(nóng)業(yè)生態(tài)系統(tǒng)國(guó)家重點(diǎn)實(shí)驗(yàn)室 蘭州大學(xué)草地農(nóng)業(yè)科技學(xué)院,甘肅 蘭州 730020;2.甘肅農(nóng)業(yè)大學(xué)動(dòng)物科學(xué)技術(shù)學(xué)院,甘肅 蘭州 730070; 3.甘肅省肉羊繁育生物技術(shù)工程實(shí)驗(yàn)室,甘肅 武威 733300)
日糧甜菜堿和過(guò)瘤胃脂肪對(duì)育肥湖羊生長(zhǎng)性能和消化參數(shù)的影響
劉 凱1,李 飛1,唐德富2,李發(fā)弟1,3,梁玉生1,李國(guó)彰1,鄧 穎1
(1.草地農(nóng)業(yè)生態(tài)系統(tǒng)國(guó)家重點(diǎn)實(shí)驗(yàn)室 蘭州大學(xué)草地農(nóng)業(yè)科技學(xué)院,甘肅 蘭州 730020;2.甘肅農(nóng)業(yè)大學(xué)動(dòng)物科學(xué)技術(shù)學(xué)院,甘肅 蘭州 730070; 3.甘肅省肉羊繁育生物技術(shù)工程實(shí)驗(yàn)室,甘肅 武威 733300)
選取48只3月齡湖羊公羔,隨機(jī)分為6個(gè)處理組、每個(gè)處理組8個(gè)重復(fù),每個(gè)重復(fù)1只羊,試驗(yàn)過(guò)渡期10 d、預(yù)試期7 d、試驗(yàn)期50 d。采用2×3雙因素試驗(yàn),即兩個(gè)RPF添加濃度(0和2.4 %),3個(gè)Bet水平(0、4和8 g·d-1)。旨在研究添加甜菜堿(betaine,Bet)和過(guò)瘤胃脂肪(rumen protected fat,RPF)對(duì)育肥湖羊生長(zhǎng)性能、血液參數(shù)和瘤胃發(fā)酵參數(shù)的影響。結(jié)果表明,1)添加2.4%的RPF能顯著降低湖羊日增重、采食量和末體重(P<0.05),顯著提高血漿中膽固醇(TCH)和甘油三酯(TG)含量(P<0.05),對(duì)血漿中的葡萄糖(Glu)含量無(wú)顯著影響(P>0.05);日糧添加Bet對(duì)育肥湖羊生長(zhǎng)性能和血液指標(biāo)無(wú)顯著影響(P>0.05)。二者交互對(duì)育肥湖羊生長(zhǎng)性能和血液指標(biāo)無(wú)顯著作用(P>0.05)。2)添加2.4%的RPF能顯著降低飼料中中性洗滌纖維(NDF)和酸性洗滌纖維(ADF)消化率(P<0.05),對(duì)干物質(zhì)(DM)、有機(jī)物(OM)和粗蛋白(CP)消化率無(wú)顯著影響(P>0.05),對(duì)瘤胃揮發(fā)性脂肪酸濃度及比例無(wú)顯著影響(P>0.05);日糧添加Bet對(duì)養(yǎng)分消化率和瘤胃揮發(fā)性脂肪酸濃度及比例無(wú)顯著影響(P>0.05)。二者互作對(duì)瘤胃發(fā)酵和養(yǎng)分消化率無(wú)顯著影響(P>0.05)。綜上可知,在本研究條件下,甜菜堿對(duì)湖羊無(wú)調(diào)控作用,RPF主要通過(guò)降低湖羊采食量及纖維消化率影響生產(chǎn)性能。實(shí)際生產(chǎn)中,若以羊肉產(chǎn)量為目標(biāo)不宜添加2.4%RPF。
甜菜堿;過(guò)瘤胃脂肪;湖羊
甜菜堿(betaine,Bet)又稱甘氨酸甜菜堿,即三甲基甘氨酸,是高效的甲基供體,也是細(xì)胞滲透調(diào)節(jié)劑、酶保護(hù)劑,有抗應(yīng)激作用[1-2],被作為飼料添加劑廣泛應(yīng)用于動(dòng)物飼糧。飼料中添加Bet可增加肌肉比例、降低脂肪含量,進(jìn)而提高肉品質(zhì)[3-4],其對(duì)豬和家禽都有很好的應(yīng)用效果[5-6],對(duì)反芻動(dòng)物肝臟有一定保健作用[7]。在反芻動(dòng)物體內(nèi),Bet能維持細(xì)胞滲透壓,同時(shí)其在甜菜堿同性半胱氨酸甲基轉(zhuǎn)移酶(BHMT)催化下為同型半胱氨酸甲基化反應(yīng)提供甲基供體以生成蛋氨酸(Met)。需要明確的是,Bet在消化道黏膜細(xì)胞中作為滲透壓調(diào)節(jié)物影響營(yíng)養(yǎng)物質(zhì)的消化率,通過(guò)提高蛋氨酸的利用率增加蛋白質(zhì)產(chǎn)量,且因?yàn)锽HMT也是滲透壓調(diào)節(jié)物的載體[8-9],因此Bet的兩種作用不是相互獨(dú)立的。本研究希望通過(guò)Bet的供甲基作用和滲透調(diào)節(jié)作用來(lái)維護(hù)幼齡育肥湖羊生理健康并提高幼齡育肥湖羊生長(zhǎng)性能。
過(guò)瘤胃脂肪(rumen protected fat,RPF)有能值高、穩(wěn)定性好和成本低等特點(diǎn),它能在不改變瘤胃微生物正?;顒?dòng)的情況下,提高動(dòng)物日糧能量水平,還能使脂肪順利通過(guò)瘤胃進(jìn)入皺胃和十二指腸消化,在小腸中吸收利用。研究發(fā)現(xiàn),飼料中添加RPF可以較好的解決綿羊育肥效果低下的問(wèn)題,并且能提高采食量和日增重[10]。Bet具有提高動(dòng)物日采食量和生產(chǎn)性能的作用[4-5],但是關(guān)于Bet和RPF共同使用對(duì)湖羊生產(chǎn)的影響尚未見(jiàn)報(bào)道。有報(bào)道稱Bet和RPF都是促進(jìn)動(dòng)物生長(zhǎng)的飼料添加劑[2,10],本研究通過(guò)分析Bet和RPF對(duì)育肥湖羊生產(chǎn)性能和消化參數(shù)的影響,以期確定Bet和RPF在育肥湖羊日糧中的適宜添加比例,為湖羊育肥日糧配制提供科學(xué)依據(jù)。
1.1 試驗(yàn)材料
Bet購(gòu)于丹尼斯克動(dòng)物營(yíng)養(yǎng)公司,純度96.0%。RPF成分為棕櫚油,購(gòu)于新奧農(nóng)牧發(fā)展有限公司,純度99.5%。
1.2 試驗(yàn)動(dòng)物及飼糧
試驗(yàn)動(dòng)物選取48只體重為(22±1) kg、健康且日齡接近3月齡的湖羊公羔,由民勤中天羊業(yè)有限公司提供。
1.3 試驗(yàn)設(shè)計(jì)和飼養(yǎng)管理
試驗(yàn)采用2×3析因設(shè)計(jì),將48只湖羊公羔隨機(jī)分成6個(gè)處理組,每個(gè)處理組8個(gè)重復(fù),每個(gè)重復(fù)1只羊。設(shè)置兩個(gè)RPF添加濃度(0和2.4%),3個(gè)Bet水平(0、4和8 g·d-1),試驗(yàn)設(shè)計(jì)見(jiàn)表1。
表1 試驗(yàn)設(shè)計(jì)Table 1 Experiment design
試驗(yàn)過(guò)渡期為10 d,預(yù)試期7 d,試驗(yàn)期50 d。整個(gè)試驗(yàn)期每只羊采用單欄飼喂,每日飼喂3次(07:00、13:00和19:00),自由飲水,每天記錄每只羊采食量,試驗(yàn)結(jié)束后進(jìn)行屠宰。試驗(yàn)飼糧參考美國(guó)國(guó)家科學(xué)院(National Research Council,NRC)(2007)[11]育肥羊標(biāo)準(zhǔn)配制(表2),日糧精粗比為60∶40。
1.4 測(cè)定指標(biāo)及方法
1.4.1 育肥湖羊生產(chǎn)性能測(cè)定 在整個(gè)試驗(yàn)期內(nèi),每10 d稱重一次,并記錄每處理組每只羊平均日采食量和平均日增重。
1.4.2 育肥湖羊血液指標(biāo)測(cè)定 試驗(yàn)期第50天06:00頸靜脈采血,使用肝素抗凝管采集約10 mL血液,3 500 r·min-1離心10 min,制備血漿,-20 ℃保存,用于測(cè)定血漿血糖(Glu)、總膽固醇(TCH)和甘油三酯(TG)。提取Glu、TCH和TG的試劑盒購(gòu)于南京建成生物工程研究所,采用Mapada UV-1800分光光度儀測(cè)定,于蘭州大學(xué)草地農(nóng)業(yè)科技學(xué)院反芻動(dòng)物實(shí)驗(yàn)室完成。
1.4.3 育肥湖羊瘤胃參數(shù)測(cè)定 湖羊屠宰后,取出整個(gè)胃室,將瘤胃壁用滅菌后的剪刀剪一個(gè)5~10 cm口徑,將瘤胃內(nèi)容物使用無(wú)菌4層紗布過(guò)濾,濾液裝入50 mL離心管,-20 ℃保存,用于測(cè)定瘤胃液揮發(fā)性脂肪酸含量和比例。
1.4.4 育肥湖羊養(yǎng)分消化率測(cè)定 分別測(cè)定飼料和糞樣中的干物質(zhì)(DM)、有機(jī)物(OM)、粗蛋白(CP)、中性洗滌纖維(NDF)和酸性洗滌纖維(ADF)等指標(biāo)。測(cè)定方法參照《飼料分析及飼料質(zhì)量檢測(cè)技術(shù)(第二版)》[12]。
1.5 數(shù)據(jù)處理方法
試驗(yàn)數(shù)據(jù)經(jīng)Excle 2007處理后,采用SPSS 17.0軟件進(jìn)行多因素方差分析,用Duncan法進(jìn)行多重比較,0.01≤P<0.05為差異顯著,P<0.01為差異極顯著。
表2 日糧處理組成和營(yíng)養(yǎng)水平(風(fēng)干基礎(chǔ))Table 2 Diet composition and nutrient levels(Air-dry matter basis)
注:②1%預(yù)混料為每千克精料提供不低于維生素A 1 250 IU,維生素E 11.5 IU,鐵115 mg,銅14.8 mg,錳37.2 mg,鋅54 mg,鈷7.9 mg。③RPF為棕櫚油脂肪酸,粗脂肪含量99.5%。④表示營(yíng)養(yǎng)水平為計(jì)算值。
Note:①DDGS means distillers dried grains with soluble. ②1% Premix provided the following per kg of the concentrate: VA 1 250 IU, VE 11.5 IU, Fe 11.5 mg, Cu 14.8 mg, Mn 37.2 mg, Zn 54 mg, Co 7.9 mg. ③Rumen protected fat was palm oil fatty acids containning 99.5% EE. ④indicate nutrient levels were calculated values.
2.1 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊生長(zhǎng)育肥性能的影響
6個(gè)處理間育肥湖羊初始體重差異不顯著(P>0.05);Ⅱ組的日增重顯著高于Ⅴ組和Ⅵ組(P<0.05);Ⅰ組、Ⅱ組和Ⅳ組日采食量顯著高于Ⅵ組;Ⅵ組的飼料轉(zhuǎn)化率極顯著高于Ⅰ組和Ⅱ組(P<0.01);在Ⅳ、Ⅴ和Ⅵ組中,隨著Bet水平的升高,育肥湖羊日采食量和日增重下降。日糧添加2.4%RPF可極顯著降低育肥湖羊日增重和末體重(P<0.01),顯著提高飼料轉(zhuǎn)化率和尾重,顯著降低日采食量;日糧添加Bet對(duì)湖羊生產(chǎn)性能無(wú)顯著影響;Bet和RPF互作對(duì)湖羊生長(zhǎng)育肥性能無(wú)顯著影響(表3)。
2.2 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊血漿TCH、TG和Glu的影響
Ⅰ組和Ⅲ組TCH含量極顯著低于Ⅵ組(P<0.01);Ⅳ和Ⅵ組TG含量極顯著高于Ⅲ組;在Ⅳ、Ⅴ和Ⅵ組中,隨著Bet水平的提高,育肥湖羊血漿TCH含量有提高趨勢(shì),但差異不顯著(P>0.05)。日糧添加2.4%RPF能極顯著提高育肥湖羊血漿中TCH和TG含量,對(duì)血漿中Glu含量無(wú)顯著影響;日糧添加Bet對(duì)育肥湖羊血漿中TCH、TG和Glu均無(wú)顯著影響;日糧添加Bet和RPF互作對(duì)血漿中TCH、TG和Glu均無(wú)顯著影響(表4)。
2.3 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊瘤胃發(fā)酵的影響
日糧添加Bet對(duì)育肥湖羊瘤胃pH和揮發(fā)性脂肪酸含量無(wú)顯著影響(P>0.05);日糧添加2.4%RPF對(duì)育肥湖羊瘤胃pH和揮發(fā)性脂肪酸種類及含量無(wú)顯著影響(P>0.05);日糧添加Bet和RPF互作對(duì)育肥湖羊瘤胃pH和揮發(fā)性脂肪酸種類及含量無(wú)影響(表5)。
2.4 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)育肥湖羊養(yǎng)分消化率的影響
Ⅰ、Ⅱ、Ⅲ組的NDF和ADF消化率均顯著高于Ⅵ組(P<0.05)。日糧添加2.4%RPF顯著降低育肥湖羊飼料中NDF和ADF消化率(P<0.05),對(duì)其它養(yǎng)分消化率均無(wú)顯著影響(P>0.05);日糧添加Bet對(duì)湖羊營(yíng)養(yǎng)物質(zhì)消化率無(wú)顯著影響(P>0.05);日糧添加Bet和RPF互作對(duì)湖羊營(yíng)養(yǎng)物質(zhì)消化率無(wú)顯著影響(P>0.05)(表5)。
3.1 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊生長(zhǎng)育肥性能的影響
育肥湖羊的快速生長(zhǎng)表現(xiàn)為體格增大、體重增加、體組織快速發(fā)育和采食量提高等方面,這些生長(zhǎng)表現(xiàn)指標(biāo)的高低會(huì)受到機(jī)體遺傳因素調(diào)控,也受飼養(yǎng)管理的影響,同時(shí)外界環(huán)境也是主要因素之一[13]。研究表明,Bet有促進(jìn)動(dòng)物生長(zhǎng)的作用[14-15],Bet對(duì)反芻動(dòng)物生長(zhǎng)的促進(jìn)作用取決于飼料中蛋氨酸(Met)水平的高低。當(dāng)飼料缺乏Met時(shí),添加Bet能顯著提高動(dòng)物生長(zhǎng)育肥性能,過(guò)量添加外源Bet時(shí),刺激肝臟中胱硫醚β合酶(CβS)活性提高,大部分同型半胱氨酸在CβS催化下,通過(guò)轉(zhuǎn)硫途徑生成胱硫醚,使體內(nèi)的甲基處于代謝平衡[16]。研究表明,過(guò)高的Bet添加量并不能進(jìn)一步提高動(dòng)物生產(chǎn)性能,對(duì)羔羊飼喂Bet后發(fā)現(xiàn),對(duì)照組和試驗(yàn)組羔羊胴體品質(zhì)和生產(chǎn)性能無(wú)顯著差異,原因在于動(dòng)物處在正常生理狀態(tài)下時(shí),Bet并沒(méi)有明顯的益生作用,只有當(dāng)動(dòng)物缺乏Met,或機(jī)體處于應(yīng)激狀態(tài)下,Bet促進(jìn)生長(zhǎng)作用才能得到發(fā)揮[17]。許多報(bào)道稱Bet能提高肥育豬和蛋雞日增重和飼料轉(zhuǎn)化率[18-19],但也有研究表明Bet對(duì)豬和禽類日增重?zé)o顯著影響[20-21],其原因是Bet對(duì)家畜生長(zhǎng)性能的影響還與飼料營(yíng)養(yǎng)水平(蛋白質(zhì)、能量和Met等),或者Bet添加量、飼喂時(shí)間、家畜品種和飼養(yǎng)管理有關(guān)。研究表明,Bet對(duì)豬促生長(zhǎng)效果不僅受到日糧中粗蛋白水平的影響[21],同時(shí)也受日糧的能量濃度影響,還有報(bào)道稱Bet添加效果還受動(dòng)物性別影響[22],日糧中添加Bet會(huì)降低母豬采食量,提高飼料轉(zhuǎn)化率,同時(shí)在賴氨酸和消化能較低的情況下添加Bet能顯著提高育肥豬日采食量和日增重,但消化能和賴氨酸水平正常情況下,Bet則無(wú)促進(jìn)作用[22],研究還發(fā)現(xiàn)隨著Bet飼喂時(shí)間的延長(zhǎng)Bet對(duì)肉雞生長(zhǎng)發(fā)育的影響減弱[23]。在本研究中,基礎(chǔ)日糧蛋白質(zhì)水平及代謝能水平基本滿足育肥湖羊生長(zhǎng)需要,因此額外添加Bet對(duì)湖羊生長(zhǎng)育肥能無(wú)顯著影響。
二級(jí)運(yùn)算放大電路主要用于將一級(jí)放大結(jié)果放大調(diào)理以滿足A/D轉(zhuǎn)換芯片輸入范圍,獲取最大的檢測(cè)精度。其電路結(jié)構(gòu)如圖4所示。
關(guān)于添加RPF對(duì)反芻動(dòng)物生產(chǎn)的影響,國(guó)內(nèi)外報(bào)道不一致。奶牛日糧中添加400和600 g·d-1RPF能顯著提高奶牛泌乳量[24];在育肥肉牛日糧中添加2%或4%RPF能顯著提高肉牛中期的日增重[25],但在前期和后期與未添加對(duì)照組卻沒(méi)有明顯差異;正常能量水平下在羔羊日糧中添加RPF對(duì)飼料轉(zhuǎn)化率和日增重沒(méi)有顯著影響[26];也有研究表明,在正常能量水平下添加6%RPF會(huì)顯著降低綿羊平均日增重[27],原因是高能值的RPF引起了綿羊采食量的下降,且飼料轉(zhuǎn)化率未沒(méi)得改善;在500~600 kg的泌乳奶牛日糧中添加200 g·d-1RPF對(duì)奶牛干物質(zhì)采食量無(wú)顯著影響[28],但添加400 g·d-1RPF會(huì)顯著降低奶牛干物質(zhì)采食量,作者認(rèn)為RPF的添加劑量需要根據(jù)奶牛日糧能量水平和脂肪含量來(lái)確定,添加過(guò)量RPF會(huì)降低奶牛采食量。本研究表明,日糧添加2.4%RPF可顯著降低日增重、日采食量和末體重,提高料重比,其中主要的原因是添加RPF顯著降低了湖羊采食量,從而降低日增重,提高料重比。有學(xué)者建議奶牛日糧中RPF適宜添加量為3%,但肉羊RPF適宜添加劑量尚未見(jiàn)報(bào)道。筆者認(rèn)為,應(yīng)根據(jù)動(dòng)物種類、健康狀況和日糧組成調(diào)整RPF添加量,本研究2.4%RPF添加劑量可能超過(guò)了幼齡湖羊的利用能力,不利于育肥湖羊的生長(zhǎng)和采食。
表3 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊生長(zhǎng)育肥性能的影響Table 3 Effects of dietary betaine and rumen protected fat on the production performance of finishing Hu sheep
項(xiàng)目Item組別Treatmentgroup膽固醇Totalcholesterol(TCH)/mmol·L-1甘油三酯Totaltriglyceride(TG)/mmol·L-1葡萄糖Glucose(Glu)/mmol·L-1Ⅰ1.61±0.30Bb0.33±0.04ABbc4.87±0.21Ⅱ1.79±0.36ABab0.33±0.05ABbc4.93±0.31Ⅲ1.66±0.46Bb0.33±0.03Bbc4.74±0.35Ⅳ1.91±0.43ABab0.40±0.08Aa4.96±0.46Ⅴ1.93±0.32ABab0.34±0.04ABabc4.71±0.58Ⅵ2.11±0.58Aa0.40±0.11Aa4.69±0.45過(guò)瘤胃脂肪RPF/%01.67±0.36Bb0.33±0.04Bb4.85±0.302.42.00±0.45Aa0.38±0.08Aa4.78±0.49甜菜堿Betaine/g·d-101.75±0.560.36±0.094.91±0.3941.85±0.350.34±0.054.83±0.4681.88±0.390.37±0.074.72±0.34P過(guò)瘤胃脂肪RPF0.0090.0070.593甜菜堿Betaine0.6990.3170.401過(guò)瘤胃脂肪×交甜菜堿RPF×Betaine0.7840.5770.559
3.2 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊血液參數(shù)的影響
研究表明,Bet對(duì)維護(hù)動(dòng)物肝臟健康有益。當(dāng)外源補(bǔ)充Bet時(shí),山羊血液中的甘油三酯含量會(huì)明顯降低[16],這可能是Bet促進(jìn)了肝臟肉堿的合成增強(qiáng)線粒體細(xì)胞脂肪酸β-氧化,從而使動(dòng)物脂肪酶活性受到反饋性刺激,降低了血清中甘油三酯的含量,同時(shí)增加脂肪酶的活性。使用小鼠模型研究高脂日糧誘導(dǎo)非酒精脂肪肝,飼糧中添加Bet可減輕肝臟病變,提高肝臟調(diào)節(jié)脂肪的生理功能[29]。在夏季,反芻動(dòng)物在機(jī)體能量負(fù)平衡的狀態(tài)下,主要靠游離脂肪酸的氧化提供能量,Bet因其含有活性甲基,可以加速脂肪酸的氧化作用。但一些研究表明Bet并不影響反芻動(dòng)物血液指標(biāo),奶牛日糧中添加不同劑量的復(fù)合包膜Bet,發(fā)現(xiàn)Bet對(duì)奶牛的產(chǎn)奶性能和能量代謝有關(guān)的血液指標(biāo)無(wú)顯著影響[30];在肥育豬日糧中添加1 250 mg·kg-1Bet對(duì)血清TCH和TG含量無(wú)顯著影響[31]。本研究表明,基礎(chǔ)日糧中添加Bet對(duì)血漿中甘油三酯含量無(wú)影響,這和關(guān)于Bet對(duì)豬的生長(zhǎng)性能、胴體組成和肉質(zhì)影響的研究結(jié)果一致[32-33]。筆者認(rèn)為,機(jī)體對(duì)糖、氨基酸、脂肪酸三者間的調(diào)控作用使它們處于動(dòng)態(tài)平衡,機(jī)體脂肪的分解過(guò)程維持了血漿中TG濃度,添加Bet不能使血漿TG產(chǎn)生顯著變化。膽固醇在血液中的運(yùn)輸需要依靠低密度脂蛋白和高密度脂蛋白的分泌,從本研究結(jié)果還可以看出,補(bǔ)充4和8 g·d-1Bet分別比不添加Bet血漿中膽固醇含量高出5.7%和7.43%。這與前人的研究結(jié)果一致[34],其認(rèn)為可能的原因是Bet在調(diào)整半胱氨酸代謝的同時(shí),還提高了富含半胱氨酸Ⅰ型B類清除劑受體蛋白(SR-BI)等膜蛋白的合成,這些膜蛋白可以協(xié)助肝細(xì)胞攝入高密度脂蛋白微粒,從而使膽固醇含量升高。由于日糧中能量需要已滿足湖羊生長(zhǎng)所需,因此,Bet并不會(huì)引起血漿中葡萄糖含量的變化。
表5 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊瘤胃發(fā)酵和消化率的影響Table 5 Effects of dietary betaine and rumen protected fat on rumen fermentation adn digestibility in finishing Hu sheep
研究發(fā)現(xiàn),奶牛血漿Glu含量將隨著瘤胃保護(hù)脂肪的添加而降低[35]。在奶牛日糧中添加400 g·d-1RPF能顯著提高血漿Glu含量,但血漿中TCH 和TG含量與對(duì)照組相比無(wú)顯著差異[24],200和400 g·d-1添加劑量對(duì)血漿Glu、TCH和TG含量無(wú)顯著影響。在本研究中,日糧添加2.4%RPF并不能改變血糖的濃度,而血糖含量的高低還受機(jī)體內(nèi)糖原的合成與消耗、轉(zhuǎn)運(yùn)及代謝水平的影響,綿羊能量代謝水平可以通過(guò)血糖濃度得到體現(xiàn),本研究中綿羊不存在能量負(fù)平衡,因此各組間血糖濃度未出現(xiàn)差異。有研究發(fā)現(xiàn),400 g·d-1RPF可以提高肉牛血漿TG水平[36];另有研究表明,添加4%和6%的棕櫚油能顯著提高綿羊血清中TG和TCH含量[37],可能是添加棕櫚油增加了長(zhǎng)鏈脂肪酸的吸收量,從而提高了血清TCH含量。添加RPF后,血清中TG含量升高是由于棕櫚油在皺胃中大量被分解成單不飽和脂肪酸和甘油分子,運(yùn)輸?shù)叫∧c被吸收入血液,再酯化生成甘油三酯。本研究中2.4%RPF能顯著的增加血漿中TCH和TG的濃度,這和關(guān)于RPF對(duì)綿羊肝臟和腎臟功能以及對(duì)血液中TG和TCH含量影響的研究結(jié)果一致[37]??赡苁怯捎谘獫{中的脂肪酸與白蛋白結(jié)合,運(yùn)輸至其他組織被利用,以TG的形式貯存在組織內(nèi),也可能是由于提高了脂肪酸的消化和攝取總量。
3.3 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)湖羊瘤胃參數(shù)的影響
本研究表明,日糧中添加Bet對(duì)屠宰后瘤胃pH沒(méi)有顯著影響,瘤胃pH能維持在正常范圍(5.5~7.5)內(nèi)。VFA濃度和比例能夠反映瘤胃營(yíng)養(yǎng)攝入模式,研究表明,丙酸的產(chǎn)生主要依靠非結(jié)構(gòu)性碳水化合物(NSC)發(fā)酵,乙酸的產(chǎn)生主要依靠纖維類物質(zhì)發(fā)酵。在45 mL瘤胃液中添加33.4 mg·L-1Bet鹽酸鹽能提高瘤胃液中乙酸、丙酸、丁酸和總揮發(fā)性脂肪酸(TVFA)含量,DM消化率也隨之提高[38];過(guò)去的研究發(fā)現(xiàn),Bet可增加瘤胃內(nèi)纖毛蟲的活力[39],提高日糧粗纖維的利用率;在45 mL人工瘤胃液中添加3.6 mg Bet可降低瘤胃pH,提高產(chǎn)氣量和干物質(zhì)降解率,對(duì)照組和3.6、1.2 mg Bet添加組相比,瘤胃內(nèi)菌體蛋白產(chǎn)量、乙酸含量、丙酸含量和TVFA含量并沒(méi)顯著差異[40]。本研究發(fā)現(xiàn),各組揮發(fā)性脂肪酸(VFA)含量無(wú)顯著差異,說(shuō)明添加Bet對(duì)瘤胃發(fā)酵的VFA產(chǎn)生無(wú)影響,Bet具有較好的過(guò)瘤胃效果,不影響瘤胃正常發(fā)酵。
關(guān)于RPF對(duì)VFA、乙酸/丙酸和瘤胃發(fā)酵的影響,已有的研究結(jié)果不完全一致。在人工瘤胃中添加8%RPF表明,8%RPF能降低乙酸、丙酸、丁酸、總揮發(fā)酸含量和乙酸/丙酸值[41];也有研究發(fā)現(xiàn),日糧中添加400 g·d-1棕櫚油脂肪粉不影響乙酸、丙酸含量和乙酸/丙酸值[42]。研究表明,瘤胃中VFA的含量與瘤胃24 h可發(fā)酵有機(jī)物質(zhì)(FOM)存在正相關(guān)關(guān)系,瘤胃中乙酸/丙酸值與NDF/FOM值有關(guān),瘤胃中各類揮發(fā)性脂肪酸含量與瘤胃原蟲種類和數(shù)量有關(guān),而瘤胃原蟲種類和數(shù)量又受日糧類型影響[43]。本研究中,基礎(chǔ)日糧中FOM和NDF含量一定,額外添加2.4%的RPF對(duì)瘤胃VFA含量無(wú)顯著影響。
3.4 日糧甜菜堿和過(guò)瘤胃脂肪對(duì)育肥湖羊養(yǎng)分消化率的影響
研究表明,適量的RPF添加劑量不會(huì)降低機(jī)體對(duì)飼料中纖維物質(zhì)的消化率,但過(guò)量的添加RPF會(huì)造成NDF和ADF消化率下降。在西門塔爾雜交肉牛日糧中添加300和500 g·d-1RPF研究其對(duì)營(yíng)養(yǎng)物質(zhì)消化率的影響,發(fā)現(xiàn)添加RPF對(duì)全消化道OM、NDF和ADF消化率無(wú)顯著影響[47];在泌乳奶牛中添加4%RPF,結(jié)果顯示RPF對(duì)飼料中DM、OM、NDF、ADF和CP消化率無(wú)顯著影響[48];在泌乳奶牛日糧中分別添加2%、4%和6%RPF,研究它們對(duì)養(yǎng)分消化率的影響,結(jié)果表明日糧中添加6%RPF會(huì)顯著降低飼料NDF和ADF消化率[49],本研究中,2.4%RPF會(huì)降低NDF消化率,可能是RPF不能100%達(dá)到過(guò)瘤胃效果,有少部分在瘤胃中降解,降低了瘤胃中纖維分解菌數(shù)量,但又不足以影響瘤胃正常發(fā)酵,也可能是添加2.4%RPF降低了瘤胃內(nèi)纖維素酶與作用底物的結(jié)合率,抑制了纖維素分解菌的活性。
1)日糧添加2.4%RPF降低湖羊干物質(zhì)采食量、日增重和末體重,提高尾重,降低飼料中NDF、ADF消化率,提高血漿中TCH和TG含量;對(duì)DM、OM和CP消化率,瘤胃pH、瘤胃VFA比例以及含量沒(méi)有影響。
2)日糧添加Bet對(duì)育肥湖羊其生長(zhǎng)育肥性能、血液指標(biāo)、瘤胃pH、瘤胃VFA比例以及含量沒(méi)有顯著影響。
3)在本研究條件下,Bet對(duì)育肥湖羊生長(zhǎng)性能無(wú)調(diào)控作用,RPF主要通過(guò)降低采食量及纖維消化率影響生長(zhǎng)性能。實(shí)際生產(chǎn)中,若以羊肉產(chǎn)量為目標(biāo)不宜添加RPF。
References:
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(責(zé)任編輯 茍燕妮)
Effects of betaine and rumen-protected fat onfinishing production performance and regulation of digestion and metabolismin Hu sheep
Liu Kai1, Li Fei1, Tang De-fu2, Li Fa-di1,3, Liang Yu-sheng1, Li Guo-zhang1, Deng Ying1
(1.Key Laboratory of Grassland Farming Systems, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, China;(2.Paracultural College of Gansu Agricultural University, Lanzhou 730070, China;(3.Mutton Sheep Breeding Biotechnology Engineering Laboratory of Gansu, Wuwei 733300, China)
This study was conducted to investigate the effects of different levels of betaine and rumen-protected fat on production performance, blood parameters, and rumen fermentation in Hu sheep. We used a 2×3 dual-factor experiment, consisting of three levels of betaine(0,4, and 8 g·d-1) and two rumen-protected fat concentrations (0, and 2.4%). In the experiment,48 3 month-old Hu sheep lambs were randomly arranged into six groups with eight duplicates of one sheep. The experiment included three periods: an acclimation period of 10 days, a pre-trial period of 7 days, and a trial period of 50 days. Dietary 2.4% rumen-protected fat significantly reduced the production performance, final weight, and carcass weight (P<0.05), whereas it remarkably improved plasma triglycerides and cholesterol content of Hu sheep fat-tail weight (P<0.05). Dietary betaine had no effect on blood parameters, production performance, slaughter performance, and blood parameters of Hu sheep (P>0.05). Betaine and rumen-protected fat had no interaction effect on production performance or blood parameters of Hu sheep. Dietary 2.4% rumen-protected fat could significantly reduce the digestibility of NDF and ADF (P<0.05), with no obvious impact on DM, OM, or CP digestibility, rumen fermentation, or different types of fatty acids of Hu sheep (P>0.05), whereas dietary betaine had no significant effect on nutrient digestibility, rumen fermentation, or different types of fatty acids (P>0.05). There was no interaction effect on rumen fermentation or nutrient digestibility (P>0.05). The results suggest that under the conditions in this study, betaine had no regulatory effect on fattening production of Hu sheep, whereas rumen-protected fat played a role through ingestion, fat metabolism, and decomposition of fibre. Dietary 2.4% rumen-protected fat reduced fattening production of Hu sheep. In actual production, rumen-protected fat is inadvisable as a dietary additive to influence high meat production.
betaine; rumen protected fat; Hu sheep
Li Fei E-mail:lfei@lzu.edu.cn
2016-02-29接受日期:2016-06-14
現(xiàn)代農(nóng)業(yè)產(chǎn)業(yè)技術(shù)體系建設(shè)專項(xiàng)(CARS-39);蘭州大學(xué)中央高?;究蒲袠I(yè)務(wù)費(fèi)專項(xiàng)資金(lzujbky-2015-43)
劉凱(1991-),男,四川成都人,在讀碩士生,研究方向?yàn)榉雌c動(dòng)物營(yíng)養(yǎng)學(xué)。E-mail:liuk13@lzu.edu.cn
李飛(1985-),男,遼寧沈陽(yáng)人,副教授,博士,研究方向?yàn)榉雌c動(dòng)物營(yíng)養(yǎng)學(xué)。E-mail:lfei@lzu.edu.cn
10.11829/j.issn.1001-0629.2016-0099
S816;S826
A
1001-0629(2016)12-2565-11*
劉凱,李飛,唐德富,李發(fā)弟,梁玉生,李國(guó)彰,鄧穎.日糧甜菜堿和過(guò)瘤胃脂肪對(duì)育肥湖羊生長(zhǎng)性能和消化參數(shù)的影響.草業(yè)科學(xué),2016,33(12):2565-2575.
Liu K,Li F,Tang D F,Li F D,Liang Y S,Li G Z,Deng Y.Effects of betaine and rumen-protected fat onfinishing production performance and regulation of digestion and metabolismin Hu sheep.Pratacultural Science,2016,33(12):2565-2575.