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Journal : Indonesian Journal of Animal and Veterinary Sciences

Utilization of mixed cellulolytic microbes from termite extract, elephant faecal solution and buffalo ruminal fluid to increase in vitro digestibility of King Grass Prabowo, Agung; Padmowijoto, Soemitro; Bachruddin, Zaenal; Syukur, Abdul
Indonesian Journal of Animal and Veterinary Sciences Vol 12, No 2 (2007)
Publisher : Indonesian Animal Sciences Society

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (59.38 KB) | DOI: 10.14334/jitv.v12i2.547

Abstract

Cellulose is a compound of plant cell walls which is difficult to be degraded because it composed of glucose monomers linked by β-(1.4)-bound. It will be hydrolysed by cellulase enzyme secreted by cellulolytic microbes. The effective digestion of cellulose needs high activity of cellulase enzyme. This research aims to increase in vitro king grass digestibility utilizing mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid. Twelve syringes contained gas test media were randomly divided into four treatments based on sources of microbe (SM), namely: S (SM: cattle ruminal fluid [S]), RGK (SM: mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid [RGK], with composition 1 : 1 : 1), S-RGK (SM: S + RGK, with composition 1:1), and TM (without given treatment microbe). Digestibility was measured using gas test method. Average of gas production treatment of S-RGK (70.2 + 0.6 ml) was higher and significantly different (P<0.01) compared to treatment of S (60.3 + 0.8 ml), RGK (40.8 + 2.3 ml), and TM (13.3 + 2.0 ml). Utilization of mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid (RGK) that combined with microbes of cattle ruminal fluid (S) could increase in vitro digestibility of king grass. Key Words: Cellulolytic Microbe, Termite Extract, Elephant Faecal, Buffalo Ruminal Fluid
Utilization of mixed cellulolytic microbes from termite extract, elephant faecal solution and buffalo ruminal fluid to increase in vitro digestibility of King Grass Prabowo, Agung; Padmowijoto, Soemitro; Bachruddin, Zaenal; Syukur, Abdul
Jurnal Ilmu Ternak dan Veteriner Vol 12, No 2 (2007): JUNE 2007
Publisher : Indonesian Animal Sciences Society

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (59.38 KB) | DOI: 10.14334/jitv.v12i2.547

Abstract

Cellulose is a compound of plant cell walls which is difficult to be degraded because it composed of glucose monomers linked by β-(1.4)-bound. It will be hydrolysed by cellulase enzyme secreted by cellulolytic microbes. The effective digestion of cellulose needs high activity of cellulase enzyme. This research aims to increase in vitro king grass digestibility utilizing mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid. Twelve syringes contained gas test media were randomly divided into four treatments based on sources of microbe (SM), namely: S (SM: cattle ruminal fluid [S]), RGK (SM: mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid [RGK], with composition 1 : 1 : 1), S-RGK (SM: S + RGK, with composition 1:1), and TM (without given treatment microbe). Digestibility was measured using gas test method. Average of gas production treatment of S-RGK (70.2 + 0.6 ml) was higher and significantly different (P<0.01) compared to treatment of S (60.3 + 0.8 ml), RGK (40.8 + 2.3 ml), and TM (13.3 + 2.0 ml). Utilization of mixed cellulolytic microbes of termite extract, elephant faecal solution, and buffalo ruminal fluid (RGK) that combined with microbes of cattle ruminal fluid (S) could increase in vitro digestibility of king grass. Key Words: Cellulolytic Microbe, Termite Extract, Elephant Faecal, Buffalo Ruminal Fluid
Co-Authors ., Nurjani Abdul Razak Naufal, Abdul Razak Affandy Affandy Agil Al Idrus Agung Prabowo Ahmad Harjono Al-Idrus, Agil AR, Syachruddin Asih Rohmani, Asih Ause Labellapansa, Ause Ayu Pertiwi Azwar Maas Bambang Hendro Sunarminto Bata Ilyas, Jamaluddin Benito Heru Purwanto Catur Supriyanto De Rosal Ignatius Moses Setiadi Didik Indradewa Didik Santoso Dini Safitri, Dini Efendi, Akmar Eni Maftu’ah Erwin Yudi Hidayat Faisal, Fandu Fallo, Yulianty Thabita Fania, Dera Fahri Ferda Ernawan Hafidhoh, Nisa'ul Husni Wakhyudin, Husni Husnul Qodim, Husnul Ibnu Utomo WM Ika Novita Dewi Ika Novita Dewi Indra Gamayanto Irvan Muzakkir Jamaluddin Jamaluddin Julianti, Liza Karnan Karnan, Karnan Khaeruddin Khaeruddin Khairuddin Khairuddin Khairudin Khairudin Kharisma, Roni Kharisma, Roni LALU ZULKIFLI Lathifah Hanim Lukita Yuniati M. Yamin Mahrus Mahrus, Mahrus Makhrus, Muh. Makhrus, Muh. Marselena, Sella Mattalatta Mattalatta, Mattalatta Mohammad Fathi Royyani, Mohammad Fathi Muhammad Azwar Muhammad Rikzam Kamal, Muhammad Rikzam Muntari Muntari Nasir, Lalu Muhammad Imam Husaini M. Nisrina Nisrina Nugraha, Rizka Pahmi Pahmi Patech, Lalu Raftha Puspitasari, Desy Ika Rizky Tri Asmono Romi Satria Wahono S, Nuraeni Setia Budi Shiddieq, Dja'far Siswanto, Apri Soeleman, M. Arief Soemitro Padmowijoto Soniawan, Vega Sukamto, Titien Sukamto, Titien S. Sulakhudin Sulakhudin Sulakhudin, . Suprayogi, Dian Suprayogi, Dian Supriyono Supriyono Susilawati Susilawati Syamsul Bahri Taufik Akbar Taufiq Mathar Tefanai, Meo Melianus Tohari Tohari Tri Agus Setiawan Triwibowo Yuwono Tutik Khotimah Umasih Umasih Wijaya, Ardi Yudhi Arta, Yudhi Yulianti, Ana Yulianti, Ana Zaenal Bachruddin Zuhdi, Muh Fahmi Zulham Zulham