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对印度亚热带潮湿气候中的多种用途树叶作为草料的质量评价(英文) 被引量:1

Assessment of fodder quality of leaves of multipurpose trees in subtropical humid climate of India
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摘要 多种用途树种和灌木在农业系统中有重要的作用,在减少饲料供求矛盾和补充世界各地饲料赤字,提高动物生产力方面有很大的潜力。同时,评价草料各种营养特性,利于生产定量平衡的饲料。评价12种多种用途树种(Acacia auri-culiformis,Albizzia procera,Dalbergia sissoo,Gliricidia macu-lata,Leucaena leucocephala,Samanea saman,Azadirachta in-dica,Eucalyptus hybrida,Gmelina arborea,Michelia champaca,Morus alba,和Tectona grandis)的树叶的营养特性,其中分别包括6种豆科和非豆科树种,指标包括:常规成分,细胞壁成分,总鞣质含量,大量(Ca和P)与微量元素(Fe,Cu,Zn,Mn和Co)含量,干物质体外消化率与有机物消化率以及代谢能量值。结果表明上述各参数都有明显的差异。有机物,粗蛋白质含量,石油醚提取物总量,粗纤维含量,无氮浸出物,总灰分的平均值分别为:(92.02±0.30)%,(16.00±0.74)%,(3.05±0.13)%,(18.97±1.07)%,(54.00±1.12)%和(7.98±0.30)%。豆科树种较非豆科树种有更高的粗蛋白质含量(18.30%和13.70%)。细胞壁成分中的中性洗涤纤维素,酸性洗涤纤维,半纤维,纤维素,酸性木质素含量平均值分别为:(52.48±1.05)%,(31.72±0.97)%,(20.76±0.88)%,(16.97±0.70)%和(9.57±0.62)%。总鞣质含量为(4.22±0.32)%。Ca与P之比合理,多种树种叶中Fe和Mn含量丰富,P,Cu,Zn和Co水平低于标准水平含量。干物质体外消化率与有机物消化率平均值分别为(48.96±1.30)%和(50.69±1.36)%。代谢能量值为(6.95±0.11)MJ·kg-1。粗蛋白质含量与干物质体外消化率与有机物消化率和代谢能量值成正相关;而这三个参数与中性洗涤纤维素,酸性洗涤纤维,和酸性木质素含量成负相关。结果表明:银合欢可作为优良饲料的树种,因为它具有最高的干物质体外消化率与有机物消化率以及代谢能量值(65.20%,67.66%和7.95MJ·kg-1),而Gliricidia maculata,Morus alba,Azadirachta indica,Dalbergia sissoo和Samanea saman可做较好类型饲料的树种,其它树种做饲料质量差。 The leaves of 12 species (Acacia auriculiformis, Albizzia procera, Dalbergia sissoo, Gliricidia maculata, Leucaena leuco- cephala, Samanea saman, Azadirachta indica, Eucalyptus hybrida, Gmelina arborea, Michelia champaca, Morus alba, and Tectona grandis) of Multipurpose trees and shrubs (MPTs) grown in the agroforestry arboretum were evaluated for their nutritional characteristics in terms of proximate composition, cell wall constituents, total tannins, major (Ca and P) and trace minerals (Fe, Cu, Zn, Mn and Co), in vitro dry matter and organic matter digestibility (IVDMD and IVOMD) and metabolisable energy (ME) values. There were significant (P〈0.01) variations among MPTs for all parameters studied. The average values of (92.02±0.30)%, (16.00±0.74)%, (3.05±0.13)%, (18.97±1.07)%, (54.00±1.12)% and (7.98 ± 0.30)% (DM basis) were observed for OM (organic matter), CP (crude protein), EE (ether extract), CF (crude fibre), NFE (nitrogen-free extract) and total ash, respectively. Leguminous trees had high CP compared to nonleguminous ones (18.30% vs 13.70%). The mean values for cell wall constituents viz., NDF (neutral detergent fibre), ADF (acid detergent fibre), hemi cellulose, cellulose and ADL (acid detergent lignin) were found to be (52.48±1.05)%, (31.72±0.97)%, (20.76±0.88)%, (16.97±0.70)% and (9.57±0.62)%, respectively. The total tannin contents averaged (4.22±0.32)%. The ratio of Ca to P was quite wider. The levels of Fe and Mn were adequate to rich in all the MPTs while many of the tree species possessed P, Cu, Zn and Co level below the critical limits for the animals. The average IVDMD and IVOMD values were found to be (48.96±1.30)% and (50.69±1.36)%, respectively. The ME value averaged (6.95i-0.11) MJ·kg-1 DM. The CP content had significant positive correlation with IVDMD, IVOMD and ME val- ues while NDF, ADF, ADL and total tannins showed negative correlations with these three parameters. Based on the results, Leucaena Leucocephala could be considered as good quality fodder as it had the highest level of IVDMD/IVOMD (65.20%/67.66%) and ME (7.95 MJ·kg-1 DM) while G. maculata, M. alba, A. indica, D. sissoo and S. saman were of medium type and rest of poor quality.
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2008年第3期209-214,共6页 林业研究(英文版)
关键词 符合农业林 饲料质量 消化率 矿物质 agroforestry cell wall composition fodder quality in vitro digestibility proximate composition macro and trace minerals total tannins metabolisable energy multipurpose tree species
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  • 1Adem K, Onder C, Yaviuz G, Osman O and Emin O. 2005. Chemical composition and its relationship to in vitro gas production of several tannin containing trees and shrub leaves. Asian-Australasian Journal of Animal Sciences, 18: 203-205.
  • 2Alam MP, Djajanigara A. 1994. Nutritive value and yield of potential tree leaves and shrubs in Bangladesh. In: Sukmawati, A. (ed), Procedings of 7th AAAP Animal Science Congress on Sustainable Animal Production and Environment, Vol-2, held at Bali, Indonesia from July 6 to 11, 1994. 317-318.
  • 3AOAC. 1995. OfficialMethods of Analysis. 16th ed. Washington, D.C.: Association of Official Analytical Chemists, 906p.
  • 4Barbind RP, Waghmare PS, Patel PM. 1994. Nutritive value of some top feeds and cultivated fodders. Indian Journal of Animal Nutrition, 10:59-61.
  • 5Bhatia DR. 1983. Feeding value of common top feeds of semi arid regions for sheep. In: Manohar Singh (ed), Top feed resources, their production, utilization and constraints. Rajasthan, India: Central Sheep and Wool Research Institute, Avikangar-304501, 158-173.
  • 6Chander Datt, Aruna Chhabra, Bujarbaruah KM, Dhiman KR and Singh NP. 2007. Nutritional evaluation of leaves of trees and shrubs as fodder for ruminants in Tripura. Indian J. Dairy Science, 60:184-190.
  • 7Chander Datt, Datta M, Suklabaidya A. 2004. Mineral status of tree leaves commonly used as fodder in Tripura. In: Proceedings of Ⅺ Animal Nutrition Conference held at JNKVV, Jabalpur, MP, India (Jan.5 to 7, 2004). Karnal, India: National Dairy Research Institute, 1-325.
  • 8Chander Datt, Niranjan M, Aruna Chhabra, Chatopadhyaya K, Dhiman KR. 2006. Forage yield, chemical composition and in vitro digestibility of different cultivars of Maize (Zea mays L.). Indian Journal of Dairy Science, 59: 177-180.
  • 9Chander Datt. 2005. Nutritional Characteristics of fodder species. In: B.P. Bhatt and K. M. Bujarbaruah (eds.), Agroforestry in north-east India: Opporttmities and Challenges. Meghalaya, India: ICAR Research Complex for NEH Region, Umiam, Meghalaya, India. pp367-373.
  • 10Chew BP. 2000. Micronutrients play role in stress, production in dairy cattle. Feedstuffs, 72:11-15.

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