• Title/Summary/Keyword: Nitrogenous excretion

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Effect of Non- Protein Nitrogen on the Biological Utilization of Protein and the Excretion of Nitrogenous Compounds in Chicks (병아리에서 단백질의 생물적 이용성과 요중질소 화합물의 배설에 미치는 비단백태질소의 영향)

  • 고태송;김영범;서인준;남기택
    • Korean Journal of Poultry Science
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    • v.12 no.1
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    • pp.17-24
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    • 1985
  • In order to investigate an effect of non-protein nitrogen on the biological utilization of protein, hatched single comb White Leghorn male chicks were fed for the first 8 days with a commercial chicks mash, next 6 days with protein-free diet and subsequent 6 days with protein-free diets and protein diets containing 10.59% of crude protein supplemented with 0, 0.5, 1.0 and 1.5%, respectively. During experimental feeding period, chicks fed protein-free diets had intaked gradually lower feed and had shown a similar body weight loss though urea contents were increased. When birds fed protein diets, body weight gain and feed intake were not different among birds fed the graded levels of urea although feed conversions were shown a highering tendency along with increasing urea contents. According as supplemented urea were increased, protein efficiency ratio f (PER) and net protein ratio (NPR) were increased in chicks fed protein-free diets, which were shown a lowering trend in chicks fed protein diets. Effect of supplemented urea on the urinary excretion of uric acid were not found in birds fed protein-free diets, while which were increased in birds fed protein diets with the increase of urea contents. Urea addition did not affect the excretion of total creatine in birds fed protein-free or protein diets. Excretion of ammonia was jogjered in order to increasing level of urea in birds fed protein-free diets, but which were not found any particular effect in birds fed protein diets. Also urea excretion were gradually increased with the increasing contents of urea in protein-free and protein diets. Nitrogen balance of birds fed protein-free diets were minus values, which were increased with increasing urea contents in diets. When birds fed protein diets, nitrogen balance and urinary nitrogen excretion was highered and fecal nitrogen excretion were not altered as urea levels of diets increased. Digestibility of urea nitrogen supplemented in protein-free diets were lowered along with increasing contents of urea, but biological value(BV) and net protein utilization(NPU) was found a highering tendency in birds fed protein-free diet containing 1.5% of urea. When birds fed with protein diets, digestibility, BV and NPU of protein were found a highering trend in birds fed protein diets added with 0.5% of urea.

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Effects of Dietary Soybean Meal in Rainbow Trout (Oncorhynchus mykiss) III. Bioavailability of Phosphors (무지개송어(Oncorhynchus mykiss) 사료원으로써 대두박의 이용 효과 III. 인(P)의 이용성)

  • 김병기
    • Journal of Aquaculture
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    • v.10 no.3
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    • pp.347-356
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    • 1997
  • Feeding experiment was conducted to evaluate effects of dietary soybean meal (SBM) on the phosphorus bioavailability of rainbow trout (Oncorhynchus mykiss). Seven diets, containing 0~70% SBM, were made based on iso-nitrogenous and iso-caloric basis of 44% crude protein. Ajpparent digestibility of phosphorus was measured 60 and 120 days after feeding. The digestibility coefficient increased gradually as the level of SBM increased up to 46~58%, but decreased at 58~70% SBM level. Phosphorus concentrations in feces decreased with an increased in dietary SBM level. Patterns of post-prandial phosphorus excretion were not similar to those of ammonia excretion, but the amount decreased with the increased SBM level in the diets. Total excretion of phosphorus for 24 hours was 19.68mg.kg-1 body wt..day-1 in the control group, but excreted phosphorus by the 58% and 70% SBM groups was 63.4% and 56.1% of the control group, respectively. Phosphorus concentration of whole body decreased with an increase in dietary SBM level for 120 days of feeding. However, there were no significant differences in phosphorus concentrations of liver among the experimental groups, except for 70% SBM diet group.

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The histological structure and the pathological lesions of gill in teleosts (어류의 아기미의 조직학적 구조와 병변)

  • Huh, Min-Do;Jeong, Hyun-Do
    • Journal of fish pathology
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    • v.6 no.1
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    • pp.65-70
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    • 1993
  • The delicate histological structure of gill in teleosts can be easily affected by a variety of biological, chemical or physical detrimental agents because it is directly exposed to the surrounding water. The epithelium of secondary lamella is thin to allow efficient gaseous exchange and this also renders it particularly vulnerable to various pathogens. As well as the main respiratory role, the gill has other various important functions such as acid-base balance, osmoregulation or the excretion of nitrogenous waste products. Thus destruction of epithelial integrity such as epithelial necrosis or thickening can render a fish very vulnerable to respiratory, secretory and excretory difficulties. This article was tried to describe in detail the common processes of pathological responses correlated to the normal histological structures of the gill in teleosts.

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Utilization of Low Glucosinalate and Conventional Mustard Oilseed Cakes in Commercial Broiler Chicken Diets

  • Rao, S.V.Rama;Raju, M.V.L.N.;Panda, A.K.;Shashibindu, M. Sailaja
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.8
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    • pp.1157-1163
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    • 2005
  • An experiment was conducted to study the effect of replacing soyabean meal (SBM) at 50 and 100% with conventional (CMC) and low glucosinalate mustard cakes (LGMC) in iso-caloric and iso-nitrogenous diets in broiler chickens. All these diets contained 0.1% choline chloride with a purity of 50% (w/w). Another diet was prepared by replacing SBM in toto with CMC with no supplemental choline to find out the possible role of supplemental choline in mustard cake (MC) based diets. Two hundred and seventy day-old broiler chicks were distributed randomly in 54 stainless steel battery brooder pens of five chicks in each pen. Each experimental diet was allotted at random to nine battery brooders and offered ad-libitum from day 2 through 42 days of age. Body weight gain was significantly depressed by total replacement of SBM with either LGMC or CMC at 21 days of age. Non-supplementation of choline significantly depressed the growth compared to those fed CMC 100% with supplemental choline. However, at 42 days of age, such an effect was seen only with CMC. Replacement of SBM with CMC 100% with or without choline supplementation depressed the body weight gain. The concentrations of cholestorol and tryglicerides in serum and the relative weights of ready to cook yield, giblet and gizzard decreased by incorporation of mustard cakes in broiler diets. The trend in fat and protein contents in breast and thigh muscles and liver was not clearly attributable to the treatment effect. Based on the results, it is concluded that SBM can be replaced in toto with LGMC (535.0 and 466.5 g/kg starter and finisher diets, respectively) or up to 50% (215.0 and 186.7 g/kg starter and finisher diets, respectively) with CMC in commercial broiler chicken diets. Choline supplementation at 0.1% level in broiler diets containing CMC was found to be beneficial during starter phase.

Primary Productivity Measurement Using Carbon-14 and Nitrogenous Nutrient Dynamics in the Southeastern Sea of Korea (한국 동남해역의 해양기초생산력 (C$^{14}$ )과 질소계 영양염 동적 관계)

  • 심재형;박용철
    • 한국해양학회지
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    • v.21 no.1
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    • pp.13-24
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    • 1986
  • The daily net primary production by phytoplankton in the southeastern sea of Korea in October 1985 ranged from 0.7 to 2.7 gCm$\^$-2/ d$\^$-1/ and averaged to be 1.3 gCm$\^$-2/ d$\^$-1/. Surface total chlorophyll ranged from 0.97 to 3.59mg chlm$\^$-3/. Primary production by nano-phytoplankton(〈20$\mu\textrm{m}$) ranged from 43 to 97% in the surface layer. Optimum light intensity(Iopt)was around 300 to 700${\mu}$Es$\^$-1/m$\^$-1/. Surface primary production from 9:00 to 15:00 h was evidently inhibited by strong light intensity beyond the Iopt. Phytoplankton near the base of euphotic zone(30-40m) showed extremely low Iopt suggesting adaptation to a low light environment. Since Iopt represents the history of light experience of phytoplankton at a given depth, the extent of variation in I of phytoplankton at different depth seems to be related to the in tensity of turbulence mixing in the surface mixed layer. From the present study, ammonium excretion by macrozooplankton (〉350$\mu\textrm{m}$) contributes from 3 to 19% of daily total nitrogen requirement by phytoplandton in this area. Calculation of upward flux of nitrate to the surface mixed layer from the lower layer, based on the simple diffusion model, approximates 3% of nitrogen requirement by phytoplankton. However, large portion of nitrogen requirement by phytoplankton remains unexplained in this area. In upwelling area near the coast, adjective flux might be the major source for the nitrogen requirement by phytoplankton. This study suggests that the major nitrogen source for the phytoplankton growth might come from the pelagic regeneration by nano-and micro-sized heterotrophic plandkon. Enhancement of primary production during the passage of the warm Tsushima Current is discussed in relation with nutrient dynamics and hydrlgraphic processes in this area.

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