This study was conducted in the field of the Poultry Research Station of the Department of Animal Production / Department of Agricultural Research / Ministry of Agriculture for the period 4/4/2021 to 16/5/2021, in which 300 one-day-old Ross308 chicks that fed on diets used avocado oil and Chia with percentages 0, 0.2, 0.4, 0.6% respectively, and their mixture consisting of 0.0, 0.1, 0.2, 0.3 each of avocado and Chia oil (50% avocado + 50% Chia oil). The experiment included 4 treatments with 3 replicates for each treatment (10 birds/replicates), in order to study the effect of using avocado and chia oil and their mixture in meat broiler diets on some physiological and microbial characteristics of blood plasma. The results indicate a significant increase (P < 0.01) in the concentration of total protein and globulin for the treatment birds in which the mixture of avocado and Chia oil was used. While there were no significant differences in the concentration of albumin between the types of the used oils. It was noted through the results that the percentage of usage 0.6% had achieved a high significant increase in the concentration of total protein, albumin and globulin in the blood plasma of the birds of these treatments compared with the rest of the percentages of use (0, 0.2 and 0.4). As for the interaction, the results showed a high significant increase in the protein concentration (P<0.01) in the treatment (M0.6) in both total protein and albumin concentration compared with the rest of the interactions, And the concentration of globulin was significantly increased (P<0.01) in the birds of the treatments (C0.6, M0.2, M0.4, M0.6) compared with the rest of the interactions. The results showed a high significant decrease (P<0.01) in the concentration of cholesterol in the birds of the treatments in which the mixture of oil and Chia oil were used, while a high significant increase (P < 0.01) in the concentration of HDL was observed in the birds that used the mixture of avocado and Chia oil in their diets compared with the other types of oils, While a high significant decrease (P<0.01) in LDL concentration was observed in birds of the treatment with the oil mixture, while no significant differences were observed between types of oils in the concentration of both triglycerides and VLDL. The level of the percentage of usage had a high significant decrease (P < 0.01) in the concentration of cholesterol, triglycerides, LDL and VLDL at all levels of usage 0.2, 0.4 and 0.6% compared to the control treatment, while a high significant (P < 0.01) increase in the concentration of HDL was observed at the rates of use of 0.4 and 0.6% compared with the control treatment which is void of usage. Whereas, the best high significant improvement (P<0.01) in the lipid profile of the lipid plasma was achieved by a mixture treatment with a percentage of use of 0.6% compared with the rest of the interactions. It was noted that there was a high significant increase (P < 0.01) in the number of Lactobacillus bacteria and a high significant decrease (P < 0.01) in the number of E. coli bacteria in the avocado and Chia oil mixture treatments compared with the rest of the used oils. As for the study of the effect of the percentage of use, it increased significantly. (P < 0.01) Lactobacillus bacteria numbers of all usage percentages (0.2, 0.4 and 0.6) compared with the control treatment, in addition to a high significant decrease (P < 0.01) in the numbers of E. coli bacteria. As for the interaction between the type of oil and the percentage of usage, a high significant increase (P < 0.01) was observed in the numbers of Lactobacillus bacteria in the treatment (M0.2 and M0.6) compared with the rest of the interactions, in addition to a high significant decrease (P < 0.01) In the numbers of E.coli bacteria in treatment (M0.6) as the best interaction compared to the rest of the interactions. We conclude from this study that the use of mixed oil at a percentage of 0.4-0.6% in meat broiler diets will improve the physiological characteristics of the blood plasma, in addition to a decrease in the number of harmful bacteria (E. coli) and an increase in the number of beneficial bacteria, which has an important role in improving the physiological condition of birds, which is reflected positively on productive performance and obtaining high growth without the use of harmful synthetic materials.
ABSTRACT : A new ligand [ 2- (3-acetylthioureido)-3-phenylpropanoic acid (APA) is synthesized by reaction of acetyl isothiocyanate with phenylalanine (1:1). It is characterized by micro elemental analysis (C.H.N.S.), FT-IR, (UV-Vis) and 1H and 13CNMR spectra. Some metals ions complexes of this ligand were prepared and characterized by FT-IR, UV-Visible spectra, conductivity measurements, magnetic susceptibility and atomic absorption. From results obtained, the following formula [M(APA)2] where M2+ = Mn, Co, Ni, Cu, Zn, Cd and Hg, the proposed molecular structure for these complexes as tetrahedral geometry, except copper complex is has square planer geometry.
A new Schiff base of 4- flourophenyl-4- nitrobenzyliden (L) ,was prepared and used to prepare a number of metal complexes with Cr (III) , Fe (III), Co(II) ,Ni (II) and Cu (II). These complexes were isolated and characterized by (FITR),UV-Vis spectroscopy and flame atomic absorption techniques in addition to magnetic susceptibility, and conductivity measurements. The study of the nature of the complexes formed in ethanol was done following the molar ratio method gave results, agreed with those obtained from isolated solid state studies. The antibacterial activity for the ligand and its metal complexes were examined against two selected microorganisms, Pseudomonas aeruginosa and Staphylococcus aureus.The results indicated that the complexes
... Show MoreInthis investigation the epoxy was reinforced by orange peel and carbonized orange peel particles with percentages (5%, 10%, 15% and 20% by weight).Mechanical tests like:Tensile, flexural,Hardness, impact and compression were carried out on these natural epoxy composites. The results showed the tensile strength have a higher value by adding (15% by weight )of orange peel and carbonized orange peel particles to epoxy,while the value (10% by weight ) of addition is suitable to get improvement in the other mechanical properties as flexural strength, Hardness, impact and compressive strength. The epoxy / carbonized orange peel powder have the best valuesin all mechanical properties than t
Cognitive methods play the role of regulator of the human environment for its direct relationship with sensory stimuli and stimuli associated with the organization of information and ideas and their preparation for use in subsequent situations. These methods determine the characteristic or ideal way of individual personality in the differentiation and integration of attitudes or cognitive field to which he is exposed. Therefore, the research aimed at the level of psychological stress and its relation to some personal characteristics that show the personality of the artist or the students of art.
Current research aims to.
- Identifying the extent of psychological stress and its relation to the personal ch
The inelastic C2 form factors and the charge density distribution (CDD) for 58,60,62Ni and 64,66,68Zn nuclei has been investigated by employing the Skyrme-Hartree-Fock method with (Sk35-Skzs*) parametrization. The inelastic C2 form factor is calculated by using the shape of Tassie and Bohr-Mottelson models with appropriate proton and neutron effective charges to account for the core-polarization effects contribution. The comparison of the predicted theoretical values was conducted with the available measured data for C2 and CDD form factors and showed very good agreement.
2- amino -5- thiol-1,3,4- thiadiazole (S1) was prepared by cyclic locking of thiosemicarbazide in the presence of anhydrous sodium carbonate and CS2. diazotization of (S1) compound gave diazonium salt (S2) that reacts with different activated aromatic compounds to get the following azo compounds ,2 [(4- aminophenyl) diazenyl ] 1,3,4- thiazdiazole-5- thiol (S3) ,2-[4-amino- 1-naphthyl diazenyl] -1,3,4 – thiazdiazole-5-thiol (S4) , 3-amino-4-[(5- mercapto -1,3,4- thiadiazole -2-yl) diazenyl ] phenol(S5) ,1-[(5-mercapto-1,3,4-thiadiazole-2-yl) diazenyl] -2-naphthol (S6) , 5-{[4-(dimethylamino) phenyl] diazenyl}-1,3,4-thiadiazole-2- thiol(S7) ,5-{[4-(diethylamino) phenyl] diazenyl}-1,3,4- thiadiazole-2- thiol(S8) ,2- amino-5-[(5-mercapto-1,3
... Show MoreIn this study, synthesised new ligand: potassium 2,2'-(quinoxaline-2,3- diyl)bis(1-phenylhydrazinecarbodithioate) (L). The ligand synthesised by reacting N1,N2-dip-tolyloxalamide as the starting material with CS2 and KOH to add the CS2 group and then with phenylendiammine to achieve (L). The ligand used in the synthesis of complexes with (CoII, NiII and CdII). The new ligand and its complexes characterised by FT-IR, UV-Vis, 1H, 13C-NMR, Mass spectroscopy, and elemental analysis, in addition to the above techniques were using magnetic moment, atomic absorption, chloride content, and melting point to describe the metal complexes.