Abstract:The problem facing dairy cow producers in tropical area is the low availability of proper nutrition, especially during the dry season. One solution to overcome this problem is to utilize technology of Complete Feed (CF) silage using ensiled several local abundant ingredients from agricultural wastes. This study aimed to find a formulation of CF silage from agricultural wastes as forage substitution for dairy cows to increase yield and quality of the milk. The study was conducted on dairy farms in Enrekang District, South Sulawesi of Indonesia. The formulations of CF silage used in the study were tested both in vitro and in vivo and compared with the farmer's practices that using elephant grass plus rice bran. A total of 20 Holstein Friesian dairy cows in 4-5 months lactation with a lactation period of 3rd-5th were used for in vivo study. The treatments were Elephant Grass + Rice Bran (EG-RB), Elephant Grass + Concentrate (EG-CON), Complete Feed Silage made from straws (CF-S) and complete feed silage made from straws and vegetable wastes (CF-VW). The results of this study showed that the dry matter intake and milk yield of dairy cow were higher in EG-CON, CF-S and CF-VW compared to EG-RB and were not different among EG-CON, CF-S and CF-VW. The crude protein, lactose, calcium and phosphorus of the milk were higher in the EG-CON, CF-S and CF-VW than EG-RB and were not different among EG-CON, CF-S and CF-VW. Fat content, density and pH of the milk were not different among treatments. In conclusion, in order to maintain and to improve the yield and quality of milk in dairy cows, the agriculture wastes, such as straws and vegetable wastes can be used as the basal feed of dairy cows for fodder substitution in the form of CF silage.
Hammer mill merupakan teknologi penggilingan bahan pakan yang bekerja dengan prinsip tumbukan. Kinerja mesin mempengaruhi dari efesiensi penggilingan. Penelitian ini bertujuan untuk mengetahui kinerja teoritis (KT), Kinerja Aktual (KA), dan efesiensi mesin hammer mill pada penggilingan tongkol jagung. Penelitian menggunakan rancangan acak lengkap (RAL) dengan 4 perlakuan dan 3 ulangan sebagai berikut P1 (berat tongkol jagung 1 kg), P2 (berat tongkol jagung 2 kg, P3 (berat tongkol jagung 3 kg), dan P4 (berat tongkol jagung 4 kg). Total unit perlakuan yaitu 12 unit percobaan. Parameter yang diukur yaitu KT (kg/menit), KA (kg/menit), efesiensi mesin (%). Hasil penelitian menunjukkan bahwa P4 memiliki perbedaan yang nyata (P<0,05) dengan nilai KA 0,82 ± 0,07 kg/menit dan 76 ± 0,08 kg/menit. P2 paling efesien dalam proses penggilingan dengan nilai efesiensi 99%.Kata kunci: efesiensi, hammer mill, kinerja mesin, tongkol jagung.
In Indonesia, cattle feces (CF) and water hyacinth (WH) plants are abundant but have not been widely revealed. The use of microorganisms as decomposers in the fermentation process has not been widely applied, so researchers are interested in studying further. This study was to evaluate the effect of the combination of CF with WH on composting by applying white-rot fungal (WRF) (Ganoderma sp) microorganism as a decomposer. A number of six types of treatment compared to R 1 (ratio of CF:WH)(25%:75%)+WRF; R 2 (ratio of CF:WH)(50%:50%)+WRF; R 3 (ratio of CF:WH)(75%:25%)+WRF; R 4 (ratio of CF:WH)(25%:75%) without WRF; R 5 (ratio of CF:WH)(50%:50%) without WRF; R 6 (ratio of CF:WH)(25%:75%) without WRF. The results showed that the use of WRF decomposers and organic matter (CF and WH) at different ratios affected the properties of compost such as pH value, C-organic, N-organic, C/N ratio, P 2 O 5 and K 2 O compounds. The WRF decomposer significantly decreases to the pH value, and the C/N ratio, but increases the value of C-organic, N-organic, P 2 O 5 and K 2 O. The properties of the compost produced are in accordance with the standards set by the Indonesian National Standard (INS) and the regulation of the Ministry of Agriculture of the Republic of Indonesia. The WRF was needed to consider as a decomposer in producing compost. Based on the results of the study, it was concluded that the R1(CF: WH)(25%:75%)+WRF) treatment was the best ratio combination to produce compost using WRF (Ganoderma sp) as a decomposer with the best properties.
Exploration and Screening for Endophytic Microbes of Maize Plant Root against Fusarium verticillioides. Fusarium verticilloides is an important pathogen of maize which can attack cob and stem causing ear rot and stalk rot disease. Fusarium ear rot disease needs to get a serious attention because the mycotoxins produced by this pathogen very harmful for consumers. The aim of this study was to screen maize roots endophytic microbes as antagonist to F. verticilloides. Endophytes microbial exploration is done by taking samples of local roots of South Sulawesi and hybrid maizes in Soppeng Regency then isolated in Biological Laboratory of Islamic University of Makassar. The endophytes were then tested their effectiveness on inhibiting growth of mycelia pathogenic F. verticilloides by using dual culture method and tested the suppressing ability of F. verticilloides on maize seed and their influence on seed sprout length. The results showed that there were 8 endophytic microbes consisting of 4 isolates of the fungus group namely HS-01, HS-02, HS-04, LS-01 and 4 isolates from bacterial group namely HS-03, LS-02, LS-03, LS-04. While the results of microbial effectiveness testing on pathogenic F. verticilloides showed that HS-04 has the highest percentage of inhibition followed by isolate HS-01, HS-02 and LS-02. HS-04 isolate also showed the ability to suppress F. verticilloides attacks on corn seeds at 77.78%. The highest seed sprout length was shown in LS-02 isolate application about 10.57 cm. Thus it can be concluded that there were 3 potentially endophytic microbes to control the F. verticilloides namely HS-04, HS-01 and LS-02. The ability to stimulate plant growth became one of considerations to select these three microbes.
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