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Farklı Olgunlaşma Dönemlerinde Hasat Edilen Nohut Geveni (Astragalus cicer L.) Otunun Besleme Değerinin Saptanması

Year 2019, Volume: 6 Issue: 4, 745 - 752, 16.10.2019
https://doi.org/10.30910/turkjans.633582

Abstract

Bu çalışma, farklı olgunlaşma dönemlerinde hasat edilen nohut geveni (Astragalus cicer L.) otunun kimyasal bileşimi, in vitro gaz üretimi, metabolik enerji (ME), organik madde sindirimi (OMS) ve nispi yem değerini (NYD) saptamak için yapılmıştır. Nohut geveni otlarının in vitro gaz üretim miktarları 3, 6, 12, 24, 48, 72 ve 96 saat aralıklarla saptanmış ve inkübasyon süreleri arası farklılıklar önemli bulunmuştur (P<0.01). Ayrıca nohut geveni otunun olgunlaşması sonucunda kimyasal bileşimler, ME, OMS ve NYD düzeyleri önemli derecede etkilemiştir (P<0.01). Gelişme dönemine bağlı olarak nohut geveni otlarının NDF, ADF ve ADL içerikleri artmış, ham protein, ME, OMS ve NYD ise azalmıştır (P<0.01). Sonuç olarak hasat dönemleri nohut geveni otlarının yem değerini etkilemiştir. En yüksek yem değerine sahip ot vejetatif ve çiçeklenme döneminde hasat edilenlerde saptanmıştır.

References

  • Acharya, S.N., Kastelic, J.P., Beauchemin, K.A., Messenger, D.F. 2006. A review of research progress on cicer milkvetch (Astragalus cicer L.). Can. J. Plant Sci., 86: 49-62.
  • Açıkgöz, E. 2001. Yem Bitkileri (3. Baskı). Uludağ Üni. Güçlendirme Vakfı Yay. No: 182, Bursa, 584 s.
  • AOAC, 2000. Official Methods of Analysis (17th ed. 5th rev.). Association of Official Analytical Chemists. Arlington, VA, USA, pp. 930-954. Bolletta, A., Villalba, J., Dai, X., MacAdam, J. 2018. PSVIII-34 In vitro digestibility and fermentation kinetics of six irrigated forage hays in the US Intermountain. West. J. Anim. Sci., 96(3): 218-219.
  • Bozkurt Kiraz, A. 2011. Determination of relative feed value of some legume hays harvested at flowering stage. Asian J. Anim. Vet. Adv., 6(5): 525-530.
  • Buxton, D.R. 1996. Quality related characteristics of forages as influenced by plant environment and agronomic factors. Anim Feed Sci. Tech., 59: 37-49.
  • Canbolat, Ö., Sincik, M. 2007. Farklı olgunlaşma dönemlerinde hasat edilen kenaf çeşitlerinin (Hibiscus cannabinus L.) sindirim derecesi ve metabolik enerji değerlerinin in-vitro gaz tekniği ile belirlenmesi. IV. Ulusal Zootekni Bilim Kongresi, 6-8 Eylül, Van.
  • Canbolat, O., Karaman, Ş. 2009. Bazı baklagil kaba yemlerinin in vitro gaz üretimi, organik madde sindirimi, nispi yem değeri ve metabolik enerji içeriklerinin karşılaştırılması. Tarım Bilimleri Dergisi, 5(2): 188-195.
  • Canbolat, Ö. 2013. Farklı olgunlaşma dönemlerinin kolza otunun (Brassica napus L.) potansiyel besleme değeri üzerine etkisi. Ankara Üniv. Vet. Fak. Derg., 60: 145-150.
  • Dahlberg, E.M., Stern, M.D., Ehle, F.R. 1988. Effects of forage source on ruminal microbial nitrogen metabolism and carbohydrate digestion in continuous culture. J. Anita Sci., 66(8): 2071-2083.
  • Davis, P.H. 1970. Flora of Turkey and East Egean Islands. Vol. 3, Edinburg Univ Press. Ensminger, M.E., Oldfield, J.E., Heinemann, W.W. 1990. Feed and Nutrition (2. ed.). The Ensminger Publishing Company, England, pp. 1280-1288.
  • Figueiredo, M.V.B., Burity, H.A., Martinez, C.R., Chanway, C.P. 2008. Alleviation of drought stress in the common bean (Phaseolus vulgaris L.) by co-inoculation with Paenibacillus polymyxa and Rhizobium tropici. Appl. Soil Ecol., 40: 182-188.
  • Hayat, R., Ali, S., Siddique, M.T., Chatha, T.H. 2008. Biological nitrogen fixation of summer legumes and their residual effects on subsequent rainfed wheat yield. Pak. J. Bot., 40(2): 711-722.
  • Jeranyama, P., Garcia, A.D. 2004. Understanding Relative Feed Value (RFV) and Relative Forage Quality (RFQ). SDSU Extension Extra, Paper, 352 p.
  • Johnston, A., Smoliak, S., Hanna, M.R., Hironaka, R. 1975. Cicer milkvetch for Western Canada. Agric. Can. Publ., 1536: 1-16.
  • Kamalak, A., Canbolat, O., Gurbuz, Y., Erol, A., Ozay, O. 2005. Effect of maturity stage on chemical composition, in vitro and in situ dry matter degradation of tumbleweed hay (Gundelia tournefortii L.). Small Ruminant Res., 58: 149-156. Kamalak, A., Canbolat, Ö. 2010. Determination of nutritive value of wild narrow-leaved clover (Trifolium angustifolium) hay harvested at three maturity stages using chemical composition and in vitro gas production. Trop. Grasslands, 44: 128-133.
  • Karabulut, A., Canbolat, O., Kalkan, H., Gurbuzol, F., Sucu, E., Filya, I. 2007. Comparison of in vitro gas production, metabolizable energy, organic matter digestibility and microbial protein production of some legume hays. Asian-Australas J. Anim. Sci., 20(4): 517-522.
  • Karabulut, A., Canbolat, O., Kamalak, A. 2006. Effect of maturity stage on the nutritive value of birdsfoot trefoil (Lotus corniculatus L.) hays. Lotus Newsletter, 36(1): 11-21.
  • Karakurt, E. 1999. Ankara kıraç koşullarında nohut geveni (Astragalus cicer L.) hat ve çeşitlerinde ot verimi ile bazı tarımsal özellikler. Tarla Bitkileri Merkez Araş. Enst. Derg., 10(1-2): 75-82.
  • Kephart, K.D., Higley, L.G., Buxton, D.R., Pedigo, L.P. 1990. Cicer milkvech forage yield, quality and acceptability to insects. Agron. J., 82: 477-483.
  • Larbi, A., Smith, J.W., Kurdi, I.O., Raji, A.M., Ladipo, D.O. 1998. Chemical composition rumen degradation and gas production characteristics of some multipurpose fodder trees and shrubs during wet and dry season in humid tropics. Anim. Feed Sci. Tech., 72: 81-96.
  • Lardner, H., Pearce, L., Damiran, D. 2019. Evaluation of cicer milkvetch and alfalfa cultivars for nutritive value, anti-quality factors and animal preference. Sustainable Agriculture Research, 8(1): 1-10.
  • Loeppky, H.A., Bittman, S., Hiltz, M.R., Frick, B. 1996. Seasonal changes in yield and nutritional quality of cicer milkvetch and alfalfa in northeastern Saskatchewan. Can. J. Plant Sci., 76: 441-446.
  • Majak, W., Hall, W., McCaughey, W.P. 1995. Pasture management strategies for reducing the risk of bloat in cattle. J. Anim. Sci., 73(5): 1493-1498.
  • Marten, G.C., Ehle, F.R., Ristau, E.A. 1987. Performance and photosensitization of cattle related to forage quality of four legumes. Crop Sci., 27: 138-145.
  • Marten, G.C., Jordan, R.M., Ristau, E.A. 1990. Performance and adverse response of sheep during grazing of four legumes. Crop Sci., 30: 860-866.
  • Menke, K.H., Raab, L., Salewski, A., Steingass, H., Fritz, D., Schneider, W. 1979. The estimation of the digestibility and metabolizable energy content of ruminant feedstuffs from the gas production when they are incubated with rumen liquor. J. Agri. Sci., 93(1): 217-222.
  • Menke, K.H., Steingass, H. 1988. Estimation of the energetic feed value obtained from chemical analysis and in vitro gas production using rumen fluid. Anim. Res. Devel., 28: 7-55.
  • Miklas, P.N., Townsend, C.E., Ladd, S.I. 1987. Seed coat anatomy and the scarification of cicer milkvetch. Crop Sci., 27: 766-772.
  • Miller, D.A., Hoveland, C.S. 1995. Other Temperate Legumes Forages. In: The Science of Grassland Agriculture. (eds.) Barnes, R.F., Miller, D.A., Nelson. C.J., Blackwell Publishing, Oxford, pp. 273-281.
  • Morrison, J.M. 1980. Changes in the lignin and hemicellulose concentration of ten varieties of temperate grasses with increasing maturity. J. British Grassland Society, 35(4): 287-293.
  • Noviandi, C.T., Neal Eun, J.S., Peel, M.D., Waldron, B.L., ZoBel, D.R., Min, B.R. 2014. Comparison of alfalfa, birdsfoot trefoil, and cicer milkvetch in combination with 25, 50, or 75% tall fescue in a continuous-culture system. The Professional Animal Scientist, 30(1): 23-32.
  • Rohweder, D.A., Barnes, R.F., Jorgensen, N. 1978. Proposed hay grading standards based on laboratory analyses for evaluating quality. J. Anim. Sci., 47(3): 747-759.
  • SAS (Statistical Analysis Systems), 2004. SAS Procedures Quide. Release 9.1. SAS Institute Inc.: Cary, NC.
  • Scott, D.W. 1999. Environmental Skin Diseases. In: Current Veterinary Therapy 4: Food Animal Practice, (Eds.) Howard J.L., Smith R.A., Saunders WB Co, Philadelphia, pp. 714-720.
  • Smoliak, S., Hanna, M.R. 1974. Productivity of alfalfa, sainfoin and cicer milkvetch on subirrigated land when grazed by sheep. Can. J. Plant Sci., 55: 415-420.
  • Snedecor, G.W., Cochran, W. 1976. Statistical Methods. The Iowa State Univ. Pres. Amer. IA. USA. Townsend, C.E., Kenno, H., Brick, M.A. 1990. Compatibility of cicer milkvetch in mixtures with cool season grasses. Agron. J., 82: 262-266.
  • Ünal, S., Fırıncıoğlu, H.K. 2002. Kıraç şartlarda yetiştirilen nohut geveni populasyonunda bazı fenolojik ve morfolojik özelliklerin belirlenmesi üzerine bir araştırma. Tarla Bitkileri Merkez Araş. Enst. Derg. 11.(1-2).1-14.
  • Van Soest, P.J., Robertson, J.B, Lewis, B.A. 1991. Methods for dietary fiber, neutral detergent fiber and nonstarch polysaccharides in relation to animal nutrition. J. Dairy Sci., 74(10): 3583-3597.
  • Van Soest, P.J. 1994. Nutritional Ecology of the Ruminant (2. Ed.). Cornell University Press. Ithaca, NY, 528p.
  • Wilson, J.R., Deinum, H., Engels, E.M. 1991. Temperature effects on anatomy and digestibility of leaf and stem of tropical and temperate forage species. Netherlands-J. Agric. Sci., 39(1): 31-48.

Determination of Feed Value of Cicer Milkvetch (Astragalus cicer L.) Hays Harvested in Different Maturation Periods

Year 2019, Volume: 6 Issue: 4, 745 - 752, 16.10.2019
https://doi.org/10.30910/turkjans.633582

Abstract

This study was conducted to determine the cicer milkvetch (Astragalus cicer L.) harvested in different ripening periods, the chemical composition of the grass, the in vitro gas production, the metabolic energy (ME), the organic matter digestion (OMD) and the relative feed values (RFV). In vitro gas production amounts of cicer milkvetch hays were determined at 3, 6, 12, 24, 48, 72 and 96 hours intervals and differences between incubation times were found to be significant (P<0.01). In addition, the maturation of cicer milkvetch hays significantly affected the chemical composition of ME, OMD and RFV (P<0.01). Depending on the development period, neutral detergent fiber (NDF), acid detergent fiber (ADF) and acid detergent lignin (ADL) contents of cicer milkvetch hays were increased, crude protein (CP), ME, OMD and RFV decreased (P<0.01). As a result, the harvesting periods affected the feed value of cicer milkvetch hays. The highest feed value was determined in vegetative and flowering period (P<0.01).

References

  • Acharya, S.N., Kastelic, J.P., Beauchemin, K.A., Messenger, D.F. 2006. A review of research progress on cicer milkvetch (Astragalus cicer L.). Can. J. Plant Sci., 86: 49-62.
  • Açıkgöz, E. 2001. Yem Bitkileri (3. Baskı). Uludağ Üni. Güçlendirme Vakfı Yay. No: 182, Bursa, 584 s.
  • AOAC, 2000. Official Methods of Analysis (17th ed. 5th rev.). Association of Official Analytical Chemists. Arlington, VA, USA, pp. 930-954. Bolletta, A., Villalba, J., Dai, X., MacAdam, J. 2018. PSVIII-34 In vitro digestibility and fermentation kinetics of six irrigated forage hays in the US Intermountain. West. J. Anim. Sci., 96(3): 218-219.
  • Bozkurt Kiraz, A. 2011. Determination of relative feed value of some legume hays harvested at flowering stage. Asian J. Anim. Vet. Adv., 6(5): 525-530.
  • Buxton, D.R. 1996. Quality related characteristics of forages as influenced by plant environment and agronomic factors. Anim Feed Sci. Tech., 59: 37-49.
  • Canbolat, Ö., Sincik, M. 2007. Farklı olgunlaşma dönemlerinde hasat edilen kenaf çeşitlerinin (Hibiscus cannabinus L.) sindirim derecesi ve metabolik enerji değerlerinin in-vitro gaz tekniği ile belirlenmesi. IV. Ulusal Zootekni Bilim Kongresi, 6-8 Eylül, Van.
  • Canbolat, O., Karaman, Ş. 2009. Bazı baklagil kaba yemlerinin in vitro gaz üretimi, organik madde sindirimi, nispi yem değeri ve metabolik enerji içeriklerinin karşılaştırılması. Tarım Bilimleri Dergisi, 5(2): 188-195.
  • Canbolat, Ö. 2013. Farklı olgunlaşma dönemlerinin kolza otunun (Brassica napus L.) potansiyel besleme değeri üzerine etkisi. Ankara Üniv. Vet. Fak. Derg., 60: 145-150.
  • Dahlberg, E.M., Stern, M.D., Ehle, F.R. 1988. Effects of forage source on ruminal microbial nitrogen metabolism and carbohydrate digestion in continuous culture. J. Anita Sci., 66(8): 2071-2083.
  • Davis, P.H. 1970. Flora of Turkey and East Egean Islands. Vol. 3, Edinburg Univ Press. Ensminger, M.E., Oldfield, J.E., Heinemann, W.W. 1990. Feed and Nutrition (2. ed.). The Ensminger Publishing Company, England, pp. 1280-1288.
  • Figueiredo, M.V.B., Burity, H.A., Martinez, C.R., Chanway, C.P. 2008. Alleviation of drought stress in the common bean (Phaseolus vulgaris L.) by co-inoculation with Paenibacillus polymyxa and Rhizobium tropici. Appl. Soil Ecol., 40: 182-188.
  • Hayat, R., Ali, S., Siddique, M.T., Chatha, T.H. 2008. Biological nitrogen fixation of summer legumes and their residual effects on subsequent rainfed wheat yield. Pak. J. Bot., 40(2): 711-722.
  • Jeranyama, P., Garcia, A.D. 2004. Understanding Relative Feed Value (RFV) and Relative Forage Quality (RFQ). SDSU Extension Extra, Paper, 352 p.
  • Johnston, A., Smoliak, S., Hanna, M.R., Hironaka, R. 1975. Cicer milkvetch for Western Canada. Agric. Can. Publ., 1536: 1-16.
  • Kamalak, A., Canbolat, O., Gurbuz, Y., Erol, A., Ozay, O. 2005. Effect of maturity stage on chemical composition, in vitro and in situ dry matter degradation of tumbleweed hay (Gundelia tournefortii L.). Small Ruminant Res., 58: 149-156. Kamalak, A., Canbolat, Ö. 2010. Determination of nutritive value of wild narrow-leaved clover (Trifolium angustifolium) hay harvested at three maturity stages using chemical composition and in vitro gas production. Trop. Grasslands, 44: 128-133.
  • Karabulut, A., Canbolat, O., Kalkan, H., Gurbuzol, F., Sucu, E., Filya, I. 2007. Comparison of in vitro gas production, metabolizable energy, organic matter digestibility and microbial protein production of some legume hays. Asian-Australas J. Anim. Sci., 20(4): 517-522.
  • Karabulut, A., Canbolat, O., Kamalak, A. 2006. Effect of maturity stage on the nutritive value of birdsfoot trefoil (Lotus corniculatus L.) hays. Lotus Newsletter, 36(1): 11-21.
  • Karakurt, E. 1999. Ankara kıraç koşullarında nohut geveni (Astragalus cicer L.) hat ve çeşitlerinde ot verimi ile bazı tarımsal özellikler. Tarla Bitkileri Merkez Araş. Enst. Derg., 10(1-2): 75-82.
  • Kephart, K.D., Higley, L.G., Buxton, D.R., Pedigo, L.P. 1990. Cicer milkvech forage yield, quality and acceptability to insects. Agron. J., 82: 477-483.
  • Larbi, A., Smith, J.W., Kurdi, I.O., Raji, A.M., Ladipo, D.O. 1998. Chemical composition rumen degradation and gas production characteristics of some multipurpose fodder trees and shrubs during wet and dry season in humid tropics. Anim. Feed Sci. Tech., 72: 81-96.
  • Lardner, H., Pearce, L., Damiran, D. 2019. Evaluation of cicer milkvetch and alfalfa cultivars for nutritive value, anti-quality factors and animal preference. Sustainable Agriculture Research, 8(1): 1-10.
  • Loeppky, H.A., Bittman, S., Hiltz, M.R., Frick, B. 1996. Seasonal changes in yield and nutritional quality of cicer milkvetch and alfalfa in northeastern Saskatchewan. Can. J. Plant Sci., 76: 441-446.
  • Majak, W., Hall, W., McCaughey, W.P. 1995. Pasture management strategies for reducing the risk of bloat in cattle. J. Anim. Sci., 73(5): 1493-1498.
  • Marten, G.C., Ehle, F.R., Ristau, E.A. 1987. Performance and photosensitization of cattle related to forage quality of four legumes. Crop Sci., 27: 138-145.
  • Marten, G.C., Jordan, R.M., Ristau, E.A. 1990. Performance and adverse response of sheep during grazing of four legumes. Crop Sci., 30: 860-866.
  • Menke, K.H., Raab, L., Salewski, A., Steingass, H., Fritz, D., Schneider, W. 1979. The estimation of the digestibility and metabolizable energy content of ruminant feedstuffs from the gas production when they are incubated with rumen liquor. J. Agri. Sci., 93(1): 217-222.
  • Menke, K.H., Steingass, H. 1988. Estimation of the energetic feed value obtained from chemical analysis and in vitro gas production using rumen fluid. Anim. Res. Devel., 28: 7-55.
  • Miklas, P.N., Townsend, C.E., Ladd, S.I. 1987. Seed coat anatomy and the scarification of cicer milkvetch. Crop Sci., 27: 766-772.
  • Miller, D.A., Hoveland, C.S. 1995. Other Temperate Legumes Forages. In: The Science of Grassland Agriculture. (eds.) Barnes, R.F., Miller, D.A., Nelson. C.J., Blackwell Publishing, Oxford, pp. 273-281.
  • Morrison, J.M. 1980. Changes in the lignin and hemicellulose concentration of ten varieties of temperate grasses with increasing maturity. J. British Grassland Society, 35(4): 287-293.
  • Noviandi, C.T., Neal Eun, J.S., Peel, M.D., Waldron, B.L., ZoBel, D.R., Min, B.R. 2014. Comparison of alfalfa, birdsfoot trefoil, and cicer milkvetch in combination with 25, 50, or 75% tall fescue in a continuous-culture system. The Professional Animal Scientist, 30(1): 23-32.
  • Rohweder, D.A., Barnes, R.F., Jorgensen, N. 1978. Proposed hay grading standards based on laboratory analyses for evaluating quality. J. Anim. Sci., 47(3): 747-759.
  • SAS (Statistical Analysis Systems), 2004. SAS Procedures Quide. Release 9.1. SAS Institute Inc.: Cary, NC.
  • Scott, D.W. 1999. Environmental Skin Diseases. In: Current Veterinary Therapy 4: Food Animal Practice, (Eds.) Howard J.L., Smith R.A., Saunders WB Co, Philadelphia, pp. 714-720.
  • Smoliak, S., Hanna, M.R. 1974. Productivity of alfalfa, sainfoin and cicer milkvetch on subirrigated land when grazed by sheep. Can. J. Plant Sci., 55: 415-420.
  • Snedecor, G.W., Cochran, W. 1976. Statistical Methods. The Iowa State Univ. Pres. Amer. IA. USA. Townsend, C.E., Kenno, H., Brick, M.A. 1990. Compatibility of cicer milkvetch in mixtures with cool season grasses. Agron. J., 82: 262-266.
  • Ünal, S., Fırıncıoğlu, H.K. 2002. Kıraç şartlarda yetiştirilen nohut geveni populasyonunda bazı fenolojik ve morfolojik özelliklerin belirlenmesi üzerine bir araştırma. Tarla Bitkileri Merkez Araş. Enst. Derg. 11.(1-2).1-14.
  • Van Soest, P.J., Robertson, J.B, Lewis, B.A. 1991. Methods for dietary fiber, neutral detergent fiber and nonstarch polysaccharides in relation to animal nutrition. J. Dairy Sci., 74(10): 3583-3597.
  • Van Soest, P.J. 1994. Nutritional Ecology of the Ruminant (2. Ed.). Cornell University Press. Ithaca, NY, 528p.
  • Wilson, J.R., Deinum, H., Engels, E.M. 1991. Temperature effects on anatomy and digestibility of leaf and stem of tropical and temperate forage species. Netherlands-J. Agric. Sci., 39(1): 31-48.
There are 40 citations in total.

Details

Primary Language Turkish
Journal Section Research Articles
Authors

Ahmet Uzatıcı

Publication Date October 16, 2019
Submission Date July 22, 2019
Published in Issue Year 2019 Volume: 6 Issue: 4

Cite

APA Uzatıcı, A. (2019). Farklı Olgunlaşma Dönemlerinde Hasat Edilen Nohut Geveni (Astragalus cicer L.) Otunun Besleme Değerinin Saptanması. Turkish Journal of Agricultural and Natural Sciences, 6(4), 745-752. https://doi.org/10.30910/turkjans.633582