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Showing 3 results for Mosharaf

L. Mosharaf, A. Ghasemi,
Volume 8, Issue 2 (summer 2004)
Abstract

In this study the effects of four quince harvesting times (at 10 - day intervals), in 2 years on fruit quality during cold storage for 5 months at 0˚C and 85% Relative Humidity were investigated. Fruits were picked from orchards in Flavargan region of Isfahan. Every month, pH, sugar content, acidity, TSS, tissue firmness of fruits were determined. Variance analysis shows that the effect of year on TSS, sugar content, and pectin was siginificant (α =1%) as well as on tissue firmness (α =5%). Harvesting time effect was only significanrt on sugar content while storage time showed a significant effect on TSS, Sugar content and acidity of fruits. Year and harvesting time interaction effect on sugar content and TSS was significant ( α=1%). Year and storage time interaction effect on pH, pectin and tissue firmness was significant while no significant effect on measured parameter was observed for harvesting time and storage time interaction. Simultaneous effect of year, Storage time and harvesting time on pH, pectin and tissue firmness was significant ( α=1%). Meanwhile average analysis by Duncan test showed that different harvesting times had no significant effect on measured parameters except on fruit sugar content. Acidty , pH., and TSS values were changing significantly durig storage. Sugar content of 4th and 5th months of storage was maximum. Pectin content, acidity and tissue firmness showed the maximum level at the first harvesting time while pH was maximum at the 2nd harvesting time. It was concluded that 4th harvesting time (181 days after flowering period) and 5 months of cold storage are the optimum conditions to keep the quality quince.
M. Aarab, M. Alikhani, S.h. Mosharaf,
Volume 12, Issue 43 (spring 2008)
Abstract

Eight hundred and fifty two multiparous Holstein cows in mid-lactation were used in a completely randomized and nested design with two treatments and three replications. Treatments were: 1) Isfahan and 2) Borkhar-Meymeh. Replications were: 1) class of one to five cows 2) class of six to ten cows and 3) class of eleven to twenty cows. Paired t-test was used for the comparison of nutrient consumption and requirement. The obtained results of one-year-old experiment indicated that township and different classes had no effect on consumption of dry matter intake (DMI), net energy lactating (NEL), metabolizable protein (MP), calcium (Ca), phosphorus (P), potassium (K), magnesium (Mg), sodium (Na), chlorine (Cl), sulphur (S), selenium (Se), zinc (Zn), copper (Cu), iodine (I), vitamin A, vitamin D, vitamin E, rumen degradable protein (RDP), neutral detergent fiber (NDF), acid detergent fiber (ADF) and non-fiber carbohydrate (NFC). Township had a significant effect on consumption of rumen undegradable protein (RUP) (P<0/05). Township and different classes had no effect on nutrient requirements of dairy cattle. The difference between consumption and requirement for kg DMI, Mcal/d NEL, g Mp, (g absorbable) Ca, P, K, Mg, Na, Cl, S, mg per kg Se, Zn, Cu, I, Iu/d vitamin A, vitamin D, vitamin E, g/d RDP, RUP, percentage of dry matter NDF, ADF and NFC were -1/6, -2/5, -630/2, -21/8, -5, 40/6, 0, -3/3, 44/2, -7/4, -3/11, -38/7, -3/26, -4/45, -14834, -234, -342/5, -542/5, -886, 28/5, 17/5 and -10/4, respectively. The difference between consumption and requirement was not significant for P, Mg and Na. This difference had a significant effect on the rest of nutrients (P<0/05). The results of this study indicated that we can feed dairy cattle by using diets containing protein supplements and mineral-vitamin premix and improve milk yield and percentage of milk protein's rural areas of Holstein cows.
M. Aarab, M. Alikhani, S.h. Mosharaf,
Volume 12, Issue 43 (spring 2008)
Abstract

Six hundred young calves, one month to three months old, were used in a completely randomized and nested design with two treatments and three replications. Treatments were: 1) Isfahan and 2) Borkhar-Meymeh. Replications were: 1) class of one to five cows 2) class of six to ten cows and 3) class of eleven to twenty cows. Paired t-test was used for comparison of nutrient consumption and requirement. Results of one-year-old experiment indicated that township and different classes had no effect on consumption of dry matter intake (whole milk and starter), net energy growth (NEg), crude protein (CP), calcium (Ca), phosphorus (P), potassium (K), magnesium (Mg), sodium (Na), chlorine (Cl), sulphur (S), cobalt (Co), copper (Cu), iodine (I), iron (Fe), manganese (Mn), selenium (Se), Zinc (Zn), vitamin A, vitamin D and vitamin E. Treatments (township) had no significant effect on the nutrient requirements of young calves. The daily difference between consumption and requirement for DMI (whole milk Kg/d), DMI (starter Kg/d), NEg Mcal/Kg, CP g/d, percentage of dry matter Ca, P, Mg, Cl, K, Na, S, mg/kg Co, Cu, I, Fe, Mn, Se, IU/kg vitamins A, D and E were -0/15, -0/092, -0/165, -17/7, -0/09, 0/1, 0/08, 0/53, 0/64, 0, 0/01, -0/1, -7/2, -0/32, -36/9, -14/1, -0/12, 0/5, -4499, -515 and -40/8, respectively. The difference between consumption and requirement had no significant effect on P, Na, S and Zn. This difference had a significant effect on the rest of nutrients (p <0/05). The results of this study indicated that young calves had received low DMI (whole milk and starter), NEg, CP, Ca, Co, Cu, I, Fe, Mn, Se, vit A, vit D and vit E. This shortage can be compensated by increasing DMI (whole milk and starter) protein supplements, vitamin and mineral supplements .

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