Organic farming used fermented fruit and plant juices as foliar fertilizers to enhance crop production. However, the usage is usually limited to sole fruit or plant fermentation with chemicals and other growth enhancers. The use of various fruits, plants, fish products, and Cyanobacteria with Mycorrhizal fungi combinations to enhance white-glutinous corn has not yet been explored. This trial investigated the different fermented fruits (FFJ), plants (FPJ), fishes (FAA), and commercial Cyanobacteria with Mycorrhizal fungi (Rhizocote) in single-use or combination with NPK to enhance the growth, yield, and Return on Investment (ROI) of cultivating white-glutinous corn. The application was 2 tbsp L-1 water for single use of fermented biofertilizers while 1 tbsp L-1 water for fermented foliar with NPK combinations. The results showed that the height of corn was not significant among treatments in 30 and 60 days after planting (DAP). However, corn treated with Rhizocote alone was the tallest in 45 DAP and had longer days to reach 50% corn tasseling. White-glutinous corn treated with Rhizocote + NPK had the highest number of ears. The rest of the treatments yielded a comparable number of ear sizes ranging from 1.27 to 1.37 cm. The highest yield of marketable green ears accounted for 7.45 t ha-1 with Rhizocote + NPK, while the lowest was observed when the white-glutinous corn was fertilized alone with FFJ at 2.93 t-ha. The Rhizocote + NPK obtained the highest R.O.I. of 263.68% compared to other treatments. Thus, the recommendation is to use 1.00 tbsp L-1 water commercial Rhizocote + recommended NPK for a productive and profitable white-glutinous corn. More investigation using different agri-fishery products fermentation at higher concentrations are needed in culture of white-glutinous corn for green ear production in various planting season.
Toxins and substances with anti-nutritional potential have impeded the successful integration of root and tuber crops into animal diets. However, the ultimate indices of the physiological state of a farm animal are the growth performance and blood profiles. Hence, single and mixed formulations of Dioscorea hispida and Cyrtosperma merkusii root meals were used to assess chicken performance and hematological reactions. Two hundred and forty Bisaya chickens were fed with maize and root meals. Each set of treatments had 60 chickens, with three replicates of 20. The diets were: T1 (100% corn-based), T2 (50% D. hispida diet), T3 (50% C. merkusii diet), and T4 (25% D. hispida+25% C. merkusii diet). Feed intake, body weight, and mean weight gain (MWG) were collected biweekly, and carcass evaluation was done on harvesting. Hematological indices and serum profiles were tested. The T1 and T4 diets produced the most significant body weight and MWG, followed by T2 and T3. An improved feed conversion ratio (FCR) for T1 and T4 were significantly different from T2 and T3. The T4 specific growth rate (SGR) was similar to T1 and T2 but greater than T3. The T1 diet gave the most significant slaughter weight and dress weight, carcass components, and edible offal, followed by T4. The T4 diet raised PCV, RBC, Hb, cholesterol, and triglycerides more than T2, and T3, but no significant difference was found between T4 and T1. All solo root meal substitutes (T2 and T3) negatively impacted chicken performance; however, the 25% D. hispida+25% C. merkusii mix (T4) enhanced growth performance, most carcass features, and the blood profiles of slow-growing chickens when compared to a corn-based diet (T1).
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