综述 REVIEW

放牧家畜采食量的测定

  • 金有顺 ,
  • 侯扶江
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  • 兰州大学草地农业生态系统国家重点实验室, 兰州大学农业农村部草牧业创新重点实验室, 兰州大学草地农业科技学院, 兰州 730020
金有顺(1996-),男,甘肃平川人,硕士研究生,从事草地放牧管理研究。E-mail:jinysh19@lzu.edu.cn

收稿日期: 2019-12-24

  网络出版日期: 2020-07-15

基金资助

国家自然科学基金项目(31672472);长江学者和创新团队发展计划(IRT_17R50)

Determination of Feed Intake of Grazing Livestock

  • JIN Youshun ,
  • HOU Fujiang
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  • State Key Laboratory of Grassland Agro-Ecosystems, Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs, College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou 730020, China

Received date: 2019-12-24

  Online published: 2020-07-15

摘要

采食是动物-植物相互作用的重要途径,是维持生态系统物质和能量循环的主要过程。动物的生产水平和草地的可持续性取决于动物的采食量,明确放牧家畜采食量是草地管理的关键之一。目前,直接观测法、指示剂法、粪氮指数法和近红外光谱法等现有技术被广泛运用到采食量的测定中。直接观测法利用较低成本对采食量进行计算,但主观性较强;食道瘘管法能够把握采食量却忽略了动物福利;近红外光谱法和饱和链烷烃法在测定采食量的同时能够认识家畜的择食特征。为此,本文对现有常规测定方法进行综述,分析影响测定放牧家畜采食量的主要因素,并提出放牧行为与无人机技术相结合等新思路,为今后草原精准化管理提供技术支撑。

本文引用格式

金有顺 , 侯扶江 . 放牧家畜采食量的测定[J]. 动物营养学报, 2020 , 32(7) : 3012 -3030 . DOI: 10.3969/j.issn.1006-267x.2020.07.010

Abstract

Intake is an important way for animal-plant interaction, and also constitute the main process of maintaining substances and energy cycle of the ecosystem. The level of animal production and the sustainability of grassland depend on the intake of livestock, accurate measurement of feed intake of grazing livestock is one of the keys of grassland management. At present, existing techniques such as direct observation method, indicator method, fecal nitrogen index method and near infrared spectrum method are widely used in the measurements of feed intake. For example, direct observation method is capable of completing the measurements by using lower cost but is characterized by the strong subjectivity. The esophageal fistula method is able to measure accurately feed intake while it ignores animal welfare. The near infrared spectroscopy method and saturate alkane method can measure intake, and at the same time, they can observe some features of food selection of livestock. For those reasons, this thesis discussed the existing conventional measurement methods, and also analyzed the main factors that influenced the results of measurement, and proposed some new conceptions, such as the combination of grazing behavior and unmanned aerial vehicle technology, which aimed to provide technical support for accurate grassland management in the future.

参考文献

[1] WANG L,DELGADO-BAQUERIZO M,WANG D L,et al.Diversifying livestock promotes multidiversity and multifunctionality in managed grasslands[J].Proceedings of the National Academy of Sciences of the United States of America,2019,116(13):6187-6192.  
[2] 侯扶江,杨中艺.放牧对草地的作用[J].生态学报,2006,26(1):244-264.
[3] 侯扶江,南志标,任继周.作物-家畜综合生产系统[J].草业学报,2009,18(5):211-234.
[4] 侯扶江,王春梅,娄珊宁,等.我国草原生产力[J].中国工程科学,2016,18(1):80-93.
[5] ERIZIAN E.A new method for estimation of the quantity of pasture eaten by cattle[J].Zeitschrift Fur ZuchtungReihe B,1932(5):12-13.
[6] SMITH A M,REID J T.Use of chromic oxide as an indicator of fecal output for the purpose of determining the intake of pasture herbage by grazing cows[J].Journal of Dairy Science,1955,38(5):515-524.  
[7] 任继周,金巨和.牦牛群放牧习性的观察研究[J].中国兽医杂志,1956(2):58-62.
[8] TILLEY J M A,TERRY R A.A two-stage technique for the in vitro digestion of forage crops[J].Grass and Forage Science,2006,18(2):104-111.
[9] MAYES R W,LAMB C S,COLGROVE P M.The use of dosed and herbage n-alkanes as markers for the determination of herbage intake[J].The Journal of Agricultural Science,1986,107(1):161-170.  
[10] NORRIS K H,BARNES R F R,MOORE J E,et al.Predicting forage quality by infrared replectance spectroscopy[J].Journal of Animal Science,1976,43(4):889-897.  
[11] GREENWOOD P L,PAULL D R,MCNALLY J,et al.Use of sensor-determined behaviours to develop algorithms for pasture intake by individual grazing cattle[J].Crop and Pasture Science,2017,68(12):1091.
[12] 张玉,齐景伟,金晓,等.信息技术在放牧绵羊福利中应用的研究进展[J].家畜生态学报,2018,39(3):8-11.
[13] 张晓庆,侯向阳,张英俊.放牧家畜采食量和采食成分测定技术评述[J].草业科学,2012(2):291-300.
[14] MIN B R,SOLAIMAN S.Prediction of feed intake and its relationships with chemical composition of diets in goats consuming concentrate,bahiagrass pasture and mimosa browse[J].Open Journal of Animal Sciences,2015,5(3):283-293.  
[15] GIBB M J,HUCKLE C A,NUTHALL R.Effect of time of day on grazing behaviour by lactating dairy cows[J].Grass and Forage Science,2008,53(1):41-46.
[16] ROOK A J,HARVEY A,PARSONS A J,et al.Bite dimensions and grazing movements by sheep and cattle grazing homogeneous perennial ryegrass swards[J].Applied Animal Behaviour Science,2004,88(3/4):227-242.
[17] BOVAL M,FANCHONE A,ARCHIMÈDE H,et al.Effect of structure of a tropical pasture on ingestive behaviour,digestibility of diet and daily intake by grazing cattle[J].Grass and Forage Science,2007,62(1):44-54.  
[18] 张涛.藏羊在高寒草甸的放牧行为与耗能[D].硕士学位论文.兰州:兰州大学,2012.
[19] GREGORINI P,GUNTER S A,MASINO C A,et al.Effects of ruminal fill on short-term herbage intake rate and grazing dynamics of beef heifers[J].Grass and Forage Science,2007,62(3):346-354.  
[20] GEREMIA E V,CRESTANI S,MASCHERONI J D C,et al.Sward structure and herbage intake of Brachiaria brizantha cv. Piatã in a crop-livestock-forestry integration area[J].Livestock Science,2018,212:83-92.
[21] 侯扶江,李广,杨逢刚.甘肃马鹿夏冬季在祁连山高山草地的放牧行为[J].生态学报,2003,23(9):1807-1815.
[22] 魏鹏,安沙舟,孙宗玖,等.放牧条件下乳用伊犁马采食量的初步研究[J].草业科学,2015,32(1):114-118.
[23] DALE A J,MAYNE C S,LAIDLAW A S,et al.Effect of altering the grazing interval on growth and utilization of grass herbage and performance of dairy cows under rotational grazing[J].Grass and Forage Science,2008,63(2):257-269.  
[24] RUGOHO I,EDWARDS G R.Dry matter intake,body condition score,and grazing behavior of nonlactating,pregnant dairy cows fed kale or grass once versus twice daily during winter[J].Journal of Dairy Science,2017,101(1):257-267.
[25] AHARONI Y,HENKIN Z,EZRA A,et al.Grazing behavior and energy costs of activity:a comparison between two types of cattle[J].Journal of Animal Science,2009,87(8):2719-2731.  
[26] PÉREZ-PRIETO L A,PEYRAUD J L,DELAGARDE R.Does pre-grazing herbage mass really affect herbage intake and milk production of strip-grazing dairy cows?[J].Grass and Forage Science,2013,68(1):93-109.  
[27] TAWEEL H Z,TAS B M,DIJKSTRA J,et al.Intake regulation and grazing behavior of dairy cows under continuous stocking[J].Journal of Dairy Science,2004,87(10):3417-3427.  
[28] DOVE H,MAYES R W.The use of plant wax alkanes as marker substances in studies of the nutrition of herbivores:a review[J].Australian Journal of Agricultural Research,1991,42(6):913-952.  
[29] DOVE H,MAYES R W,LAMB C S,et al.Factors influencing the release rate of alkanes from an intra-ruminal,controlled-release device,and the resultant accuracy of intake estimation in sheep[J].Australian Journal of Agricultural Research,2002,53(6):681-696.  
[30] DOVE H,FREER M,FOOT J Z.The nutrition of grazing ewes during pregnancy and lactation:a comparison of alkane-based and chromium/in vitro-based estimates of herbage intake[J].Australian Journal of Agricultural Research,2000,51(6):765-777.  
[31] ELWERT C,DOVE H.Estimation of roughage intake in sheep using a known daily intake of a labelled supplement[J].Animal Science,2005,81(1):47-56.  
[32] AGUIAR A D S,FORBES T D A,ROUQUETTE F M,et al.Evaluating the statistical variation in estimating forage dry matter intake of grazing Brahman bulls using n-alkanes[J].The Journal of Agricultural Science,2013,151(1):129-140.  
[33] CHARMLEY E,DOVE H.Using plant wax markers to estimate diet composition and intakes of mixed forages in sheep by feeding a known amount of alkane-labelled supplement[J].Australian Journal of Agricultural Research,2007,58(12):1215-1225.  
[34] BOLAND H T,SCAGLIA G,NOTTER D R,et al.Diet composition and dry matter intake of beef steers grazing tall fescue and Alfalfa[J].Crop Science,2012,52(6):2817-2825.  
[35] VULICH S A,O'RIORDAN E G,HANRAHAN J P.Use of n-alkanes for the estimation of herbage intake in sheep:accuracy and precision of the estimates[J].The Journal of Agricultural Science,1991,116(2):319-323.  
[36] NARVAEZ N,BROSH A,PITTROFF W.Use of n-alkanes to estimate seasonal diet composition and intake of sheep and goats grazing in California chaparral[J].Small Ruminant Research,2012,104(1/2/3):129-138.
[37] 谷英,桑丹,孙海洲,等.鄂尔多斯细毛羊后备母羊牧草采食量测定[J].家畜生态学报,2017,38(4):68-70.
[38] SMIT H J,TAWEEL H Z,TAS B M,et al.Comparison of techniques for estimating herbage intake of grazing dairy cows[J].Journal of Dairy Science,2005,88(5):1827-1836.  
[39] MARTÍNEZ J M,MORRIS S T,PARKINSON T J.Estimation of herbage intake of Angus heifers from growth rate and milk production selection lines[J].New Zealand Journal of Agricultural Research,2010,53(1):29-35.  
[40] LI C Q,ALATENGDALAI,XUE S Y,et al.Estimation of herbage intake and digestibility of grazing sheep in Zhenglan banner of Inner Mongolia by using n-alkanes[J].Animal Nutrition,2015(4):324-328.
[41] MATTIAUDA D A,GIBB M J,CARRIQUIRY M,et al.Effect of timing of corn silage supplementation to Holstein dairy cows given limited daily access to pasture:intake and performance[J].Animal,2018,13(1):127-135.
[42] RUGOHO I,GIBBS S J,EDWARDS G R.Dry matter intake and body condition score gain of dairy cows offered kale and grass[J].New Zealand Journal of Agricultural Research,2014,57(2):110-121.  
[43] MIRAGLIA N,BERGERO D,BASSANO B,et al.Studies of apparent digestibility in horses and the use of internal markers[J].Livestock Production Science,1999,60(1):21-25.  
[44] BERGERO D,MIRAGLIA N,ABBA C,et al.Apparent digestibility of mediterranean forages determined by total collection of faeces and acid-insoluble ash as internal marker[J].Livestock Production Science,2004,85(2):235-238.
[45] JURJANZ S,FEIDT C,PÉREZ-PRIETO L A,et al.Soil intake of lactating dairy cows in intensive strip grazing systems[J].Animal,2012,6(8):1350-1359.  
[46] 欧阳熙,王茜飞,王杰,等.藏山羊放牧采食量及牧草干物质消化率测定方法的比较研究[J].西南民族大学学报(自然科学版),2000,26(2):188-191.
[47] 张晓庆,那日苏,赵青山,等.营养补添对草原放牧育肥期羔羊采食量及增重的影响[J].黑龙江畜牧兽医,2008(6):27-29.
[48] CHEMMAM M,MOUJAHED N,OUZROUT R,et al.Seasonal variations of chemical composition,intake and digestibility by ewes of natural pasture in the south-eastern regions of Algeria[C]//Options Méditerranéennes Series A:Mediterranean Seminars.Zaragoza,Spain:IAMZ-CIHEAM Mediterranean Agronomic Institute,2009.
[49] LEE C,HRISTOV A N.Short communication:evaluation of acid-insoluble ash and indigestible neutral detergent fiber as total-tract digestibility markers in dairy cows fed corn silage-based diets[J].Journal of Dairy Science,2013,96(8):5295-5299.  
[50] MIN B R,SOLAIMAN S.Prediction of feed intake and its relationships with chemical composition of diets in goats consuming concentrate,bahiagrass pasture and mimosa browse[J].Open Journal of Animal Sciences,2015,5(3):283-293.  
[51] BERGERO D,PRÉFONTAINE C,MIRAGLIA N,et al.A comparison between the 2N and 4N HCl acid-insoluble ash methods for digestibility trials in horses[J].Animal,2009,3(12):1728-1732.  
[52] KANGA J S,KANENGONI A T,MAKGOTHI O G,et al.Estimating pasture intake and nutrient digestibility of growing pigs fed a concentrate-forage diet by n-alkane and acid-insoluble ash markers[J].Tropical Animal Health and Production,2012,44(7):1797-1802.  
[53] 孙东峰.三江平原小叶章草甸放牧肉牛四季补饲的研究[D].硕士学位论文.哈尔滨:东北农业大学,2013.
[54] FERREIRA L M,OLIVÁN M,RODRIGUES M A M,et al.Estimation of feed intake by cattle using controlled-release capsules containing n-alkanes or chromium sesquioxide[J].The Journal of Agricultural Science,2004,142(2):225-234.  
[55] KOTB A R,LUCKEY T D.Markers in nutrition[J].Nutrition Abstracts and Reviews,1972,42(3):813-845.
[56] MAEDA E M,ZEOULA L M,GOMES H C C,et al.Evaluation of markers used in the studies of intake and digestibility in cattle and buffalo[J].Archivos De Zootecnia,2011,60(229):123-131.
[57] DE SOUZA J,BATISTEL F,WELTER K C,et al.Evaluation of external markers to estimate fecal excretion,intake,and digestibility in dairy cows[J].Tropical Animal Health and Production,2015,47(1):265-268.  
[58] AZEVEDO E B,POLI C H E C,DAVID D B,et al.Use of faecal components as markers to estimate intake and digestibility of grazing sheep[J].Livestock Science,2014,165:42-50.
[59] CASASÚS I,ALBANELL E.Prediction of faecal output and hay intake by cattle from NIRS estimates of faecal concentrations of orally-dosed polyethyleneglycol[J].Animal Feed Science and Technology,2014,192:48-61.
[60] VELÁSQUEZ A V,DA SILVA G G,SOUSA D O,et al.Evaluating internal and external markers versus fecal sampling procedure interactions when estimating intake in dairy cows consuming a corn silage-based diet[J].Journal of Dairy Science,2018,101(7):5890-5901.  
[61] 吴伟生,郑群英,刘刚,等.应用粪氮指数法检测青藏高原草甸区成年母牦牛青草期放牧采食量[J].家畜生态学报,2015,36(7):33-38.
[62] BÖSING B M,SUSENBETH A,HAO J,et al.Effect of concentrate supplementation on herbage intake and live weight gain of sheep grazing a semi-arid grassland steppe of North-Eastern Asia in response to different grazing management systems and intensities[J].Livestock Science,2014,165:157-166.
[63] 焦婷,吴铁成,吴建平,等.不同类型藏羊消化率与采食量的比较研究[J].草业学报,2019,28(5):100-108.
[64] BARBIERI C W,QUADROS F L F D,JOCHIMS F,et al.Beef heifers grazing behavior and herbage intake in natural grassland under rotational grazing[J].Ciência Rural,2015,45(11):2056-2062.  
[65] DICKHOEFER U,HAO J,BÖSING B M,et al.Feed intake and performance of sheep grazing semiarid grassland in response to different grazing systems[J].Rangeland Ecology & Management,2014,67(2):145-153.  
[66] DAVID D B,POLI C H E C,SAVIAN J V,et al.Faecal index to estimate intake and digestibility in grazing sheep[J].Journal of Agricultural Science,2013,9(4):1-8.
[67] FANCHONE A,BOVAL M,LECOMTE P.Faecal indices based on near infrared spectroscopy to assess intake,in vivo digestibility and chemical composition of the herbage ingested by sheep (crude protein,fibres and lignin content)[J].Journal of Near Infrared Spectroscopy,2007,15(2):107-113.  
[68] KENNEDY W K,CARTER A H,LANCASTER R J.Comparison of faecal pigments and faecal nitrogen as digestibility indicators in grazing cattle studies[J].New Zealand Journal of Agricultural Research,2011,2(3):627-638.
[69] FERRET A,PLAIXATS J,CAJA G,et al.Using markers to estimate apparent dry matter digestibility,faecal output and dry matter intake in dairy ewes fed Italian ryegrass hay or alfalfa hay[J].Small Ruminant Research,1999,33(2):145-152.  
[70] BEECHER M,BAUMONT R,O'DONOVAN M,et al.Effects of harvesting perennial ryegrass at different levels of herbage mass on voluntary intake and in vivo digestibility in sheep[J].Grass and Forage Science,2018,73(2):553-561.  
[71] SAVIAN J V,GENRO T C M,NETO A B,et al.Comparison of faecal crude protein and n-alkanes techniques to estimate herbage intake by grazing sheep[J].Animal Feed Science and Technology,2018,242:144-149.
[72] PERIPOLLI V,PRATES Ê R,BARCELLOS J O J,et al.Fecal nitrogen to estimate intake and digestibility in grazing ruminants[J].Animal Feed Science and Technology,2011,163(2/3/4):170-176.
[73] WANG C J,TAS B M,GLINDEMANN T,et al.Fecal crude protein content as an estimate for the digestibility of forage in grazing sheep[J].Animal Feed Science and Technology,2009,149(3/4):199-208.
[74] PÉREZ-RAMÍREZ E,PEYRAUD J L,DELAGARDE R.N-alkanes vytterbium/faecal index as two methods for estimating herbage intake of dairy cows fed on diets differing in the herbage:maize silage ratio and feeding level[J].Animal,2012,6(2):232-244.  
[75] KOZLOSKI G V,OLIVEIRA L,POLI C H E C,et al.Faecal nitrogen excretion as an approach to estimate forage intake of wethers[J].Journal of Animal Physiology and Animal Nutrition,2014,98(4):659-666.  
[76] VAN BARNEVELD R J,GRAHAM H,DIFFEY S M.Predicting the nutritional quality of feed ingredients for pigs using near-infrared spectroscopy (NIRS) and chemical analysis[J].Animal Production Science,2018,58(4):709-718.  
[77] DECRUYENAERE V,FROIDMONT E,BARTIAUX-THILL N,et al.Faecal near-infrared reflectance spectroscopy (NIRS) compared with other techniques for estimating the in vivo digestibility and dry matter intake of lactating grazing dairy cows[J].Animal Feed Science and Technology,2012,173(3/4):220-234.
[78] HASSOUN P,BASTIANELLI D,FOULQUIÉ D,et al.Polyethylene glycol marker measured with NIRS gives a reliable estimate of the rangeland intake of grazing sheep[J].Animal,2016,10(5):771-778.  
[79] STARKS P J,BROWN M A.Estimation of dry-matter intake in lambs via field-based NIR proximal sensing[J].Grass and Forage Science,2018,73(4):841-851.  
[80] GLASSER T,LANDAU S,UNGAR E D,et al.A fecal near-infrared reflectance spectroscopy-aided methodology to determine goat dietary composition in a Mediterranean shrubland[J].Journal of Animal Science,2008,86(6):1345-1356.  
[81] BOVAL M,COATES D B,LECOMTE P,et al.Faecal near infrared reflectance spectroscopy (NIRS) to assess chemical composition,in vivo digestibility and intake of tropical grass by Creole cattle[J].Animal Feed Science and Technology,114(1/2/3/4):19-29.
[82] 陈友慷.放牧家畜采食量和消化率的测定方法[J].中国牦牛,1994(2):42-49.
[83] COATES D B,DIXON R M.Faecal near infrared reflectance spectroscopy (F.NIRS) measurements of non-grass proportions in the diet of cattle grazing tropical rangelands[J].The Rangeland Journal,2007,29(1):51-63.  
[84] 孟玉萍,李坤,张林源,等.北京麋鹿苑麋鹿采食量测定分析[J].特产研究,2010(4):43-46.
[85] DU W C,YAN T,CHANG S H,et al.Seasonal hogget grazing as a potential alternative grazing system for the Qinghai-Tibetan plateau:weight gain and animal behaviour under continuous or rotational grazing at high or low stocking rates[J].The Rangeland Journal,2017,39(4):329-339.  
[86] 周静静,马红彬,周瑶,等.轮牧方式对荒漠草原滩羊牧食特征、体重及繁殖性能的影响[J].中国农业科学,2017,50(8):1525-1534.
[87] AMARAL M F,MEZZALIRA J C,BREMM C,et al.Sward structure management for a maximum short-term intake rate in annual ryegrass[J].Grass and Forage Science,2013,68(2):271-277.  
[88] UNDI M,WILSON C,OMINSKI K H,et al.Comparison of techniques for estimation offorage dry matter intake by grazing beef cattle[J].Canadian Journal of Animal Science,2008,88(4):693-701.  
[89] LEAVER J D.Herbage intake handbook[M].Hurley:British Grassland Society,1982.
[90] ALLEN M S,BRADFORD B J,HARVATINE K J.The cow as a model to study food intake regulation[J].Annual Review of Nutrition,2005,25(1):523-547.  
[91] FORBES J M.A model of the short-term control of feeding in the ruminant:effects of changing animal or feed characteristics[J].Appetite,1980,1(1):21-41.  
[92] MERTENS D R.Predicting intake and digestibility using mathematical models of ruminal function[J].Journal of Animal Science,1987,64(5):1548-1558.  
[93] HUHTANEN P,RINNE M,MÄNTYSAARI P,et al.Integration of the effects of animal and dietary factors on total dry matter intake of dairy cows fed silage-based diets[J].Animal,2011,5(5):691-702.  
[94] ZOM R L G,ANDRÉ G,VAN VUUREN A M.Development of a model for the prediction of feed intake by dairy cows:1.Prediction of feed intake[J].Livestock Science,2012,143(1):43-57.  
[95] HAYIRLI A,GRUMMER R R,NORDHEIM E V,et al.Models for predicting dry matter intake of Holsteins during the prefresh transition period[J].Journal of Dairy Science,2003,86(5):1771-1779.  
[96] NRC.Nutrient requirements of dairy cattle[S].Washington,D.C.:National Academy Press,2001.
[97] YANG C T,GAO P,HOU F J,et al.Relationship between chemical composition of native forage and nutrient digestibility by Tibetan sheep on the Qinghai-Tibetan plateau[J].Journal of Animal Science,2018,96(4):1140-1149.
[98] WENSVOORT J.Energy and protein requirements of ruminants[J].British Veterinary Journal,1995,151(4):465-466.
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