Physical Quality and pH of Chicory Silase (Cichorium Intybus L) and Onggok with the Addition of Tannins as Additives
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This study aims to examine the effect of the addition of tannins as additives on the physical quality of chicory mixed silage (Cichorium intybus L.) and onggok. The method used was a Complete Random Design (RAL) consisting of 5 treatments and 5 replicates. The treatment used consisted of P0(-) (100% onggory without the addition of tannins), P1(+) (100% onggok + 12 grams of tannins), P2 (chicory 75% + 25% onggok + tannin 12 grams), P3 (chicory 50% + onggok 50% + tannins 12 grams), P4 (chicory 25% + onggok 75% + tannins 12 grams). The data was analyzed by Kruskal Wallis analysis, if there was a real difference, the Dunn test was continued. The results showed that tannins significantly improved the physical quality of silage with parameters in the form of color, aroma, texture, the presence of mold, and pH. Chicory increases the nutrient content, while tannins play the role of special antibacterial and antifungal agents that can make bacteria and fungi brittle. This makes silage have a longer shelf life for the effectiveness of ruminant feed.
Abdelhadi, L. O., Santini, F. J., & Gagliostro, G. A. (2005). Corn silage or high moisture corn supplements for beef heifers grazing temperate pastures: Effects on performance, ruminal fermentation and in situ pasture digestion. Animal Feed Science and Technology, 118(1–2), 63–78. https://doi.org/10.1016/j.anifeedsci.2004.09.007
Aglazziyah, H., Ayuningsih, B., & Khairani, L. (2020). The Effect Of The Use Of Fermented Bran On The Physical Quality And Ph Of Elephant Grass Silage (Pennisetum purpureum). Journal of Tropical Animal Nutrition and Feed Science, 2(3), 156–165. https://doi.org/10.24198/jnttip.v2i3.30290
Burns, R. G. (1982). The biochemistry of silage. Trends in Biochemical Sciences, 7(3), 120. https://doi.org/10.1016/0968-0004(82)90170-0
Febrianti, T., Oedjijono, O., & Iriyanti, N. (2017). Nutrient Content Improvement Of Tapioca Waste And Rice Bran As Ingredients Trough Fermentation Using Azospirillum sp. JG3. Widyariset, 3(2), 173. https://doi.org/10.14203/widyariset.3.2.2017.173-182
Gibson, G. R., Scott, K. P., Rastall, R. A., Tuohy, K. M., Hotchkiss, A., Dubert-Ferrandon, A., Gareau, M., Murphy, E. F., Saulnier, D., Loh, G., Macfarlane, S., Delzenne, N., Ringel, Y., Kozianowski, G., Dickmann, R., Lenoir-Wijnkoop, I., Walker, C., & Buddington, R. (2010). Dietary prebiotics: current status and new definition. Food Science & Technology Bulletin: Functional Foods, 7(1), 1–19. https://doi.org/10.1616/1476-2137.15880
Jayanegara, A., Ridla, M., Laconi, E. B., & Nahrowi, N. (2018). Tannin as a feed additive for mitigating enteric methane emission from livestock: Meta-analysis from RUSITEC experiments. IOP Conference Series: Materials Science and Engineering, 434(1). https://doi.org/10.1088/1757-899X/434/1/012108
Kumar, R., & Singh, M. (1984). Tannins: Their Adverse Role in Ruminant Nutrition. Journal of Agricultural and Food Chemistry, 32(3), 447–453. https://doi.org/10.1021/jf00123a006
Kurniawan D, Erwanto, and F. F. (2015). Pengaruh penambahan berbagai starter pada pembuatan silase terhadap kualitas fisik dan ph silase ransum berbasis limbah pertanian The Effect of Starter Addition in Silage Making to Physic Quality and pH Silage of Feed from Agriculture Waste. Scientific Journal of Integrated Animal Husbandry, 3(November), 191–195.
Lamid, M., Koesnoto, S., Chusniati, S., Hidayatik, N., & Vina, E. V. F. (2012). Characteristics Of Silage Of Sugarcane Shoots ( Saccharum officinarum , Linn ). 1(1), 5–10.
Li, G., & Kemp, P. D. (2005). Forage Chicory (Cichorium intybus L.): A Review of Its Agronomy and Animal Production. Advances in Agronomy, 88(05), 187–222. https://doi.org/10.1016/S0065-2113(05)88005-8
Logtenberg, M. J., Akkerman, R., An, R., Hermes, G. D. A., de Haan, B. J., Faas, M. M., Zoetendal, E. G., Schols, H. A., & de Vos, P. (2020). Fermentation of Chicory Fructo-Oligosaccharides and Native Inulin by Infant Fecal Microbiota Attenuates Pro-Inflammatory Responses in Immature Dendritic Cells in an Infant-Age-Dependent and Fructan-Specific Way. Molecular Nutrition and Food Research, 64(13). https://doi.org/10.1002/mnfr.202000068
Makkar, H. P. S. (2003). Effects and fate of tannins in ruminant animals, adaptation to tannins, and strategies to overcome detrimental effects of feeding tannin-rich feeds. Small Ruminant Research, 49(3), 241–256. https://doi.org/10.1016/S0921-4488(03)00142-1
Mueller-Harvey, I. (2006). Perfil de eficacia y seguridad de Echinacea purpurea en la prevención de episodios de resfriado común: Estudio clínico aleatorizado, doble ciego y controlado con placebo. The Science OfFood and Agriculture. https://doi.org/10.1002/jsfa
Perovi?, J., Tumbas Šaponjac, V., Koji?, J., Krulj, J., Moreno, D. A., García-Viguera, C., Bodroža-Solarov, M., & Ili?, N. (2021). Chicory (Cichorium intybus L.) as a food ingredient – Nutritional composition, bioactivity, safety, and health claims: A review. Food Chemistry, 336(February 2020), 127676. https://doi.org/10.1016/j.foodchem.2020.127676
Raza, K., Wang, G., Naqvi, S. A. A., & ul Hassan, R. H. (2021). Efficacy of feed improvement in livestock farming to offset climate variations in Punjab, Pakistan: silage as an example. Environmental Science and Pollution Research, 28(28), 37279–37291. https://doi.org/10.1007/s11356-021-13181-5
Rufino, L. D. de A., Pereira, O. G., Ribeiro, K. G., Leandro, E. S., Santos, S. A., Bernardes, T. F., de Paula, R. A., & Agarussi, M. C. N. (2022). Effects of lactic acid bacteria with bacteriocinogenic potential on the chemical composition and fermentation profile of forage peanut (Arachis pintoi) silage. Animal Feed Science and Technology, 290(October 2020). https://doi.org/10.1016/j.anifeedsci.2022.115340
Scalbert, A. (1991). Antimicrobial properties of tannins. Phytochemistry, 30(12), 3875–3883. https://doi.org/10.1016/0031-9422(91)83426-L
Sriroth, K., Chollakup, R., Chotineeranat, S., Piyachomkwan, K., & Oates, C. G. (2000). Processing of cassava waste for improved biomass utilization. Bioresource Technology, 71(1), 63–69. https://doi.org/10.1016/S0960-8524(99)00051-6
Wati, W. S., Mashudi, & Irsyammawati, A. (2018). Quality of odot grass silage (Pennisetum purpureum CV . Mott ) at different incubation times. Journal of Tropical Livestock Nutrition, 1(1), 45–53.
Vienna, E. (2005). Technology for the Utilization of Microorganisms in Feed to Increase the Productivity of Ruminant Livestock in Indonesia. Wartazoa, 15(4), 173–186.
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