• Title/Summary/Keyword: nitrogen levels

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Effects of Nitrogen Levels and Split Application Ratio on Growth and Yield in Liriope platyphylla WANG et TANG (맥문동(麥門冬)의 질소수준(室素水準)과 분시비솔(分施比率)이 생육(生育)과 수량(收量)에 미치는 영향(影響))

  • Seong, Jae-Duck;Park, Ki-Do;Kwack, Yong-Ho;Kim, Sung-Man;Kang, Jin-Ho
    • Korean Journal of Medicinal Crop Science
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    • v.8 no.1
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    • pp.69-73
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    • 2000
  • To investigate proper method of nitrogen application, six levels of nitrogen fertilizer and five different split applications were tested in Liriope platyphylla. Leaf length and content of total nitrogen in plant increased with the increase of nitrogen application level from zero to 360kg per ha. Number and weight of tuber increased with the increase of nitrogen level and tuber production reached to highest level of 4.44M/T per ha with the level of 220kg nitrogen. And then, tuber production decreased with the addition of extra nitrogen fertilizer to level of 360kg per ha. In the research of proper nitrogen split application, tuber yield (3.52M/T per ha) was increased by 18% at the combination of 40% basal application and three times of top dressing, than that of 100% basal application.

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Effects of Rare Earth and Nitrogen Application on the Growth and Nitrate Content of Chicory (희토 및 질소시용이 치커리의 성장과 질산태질소 함량에 미치는 영향)

  • Hur, S.N.;Li, S.Y.
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.23 no.1
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    • pp.43-48
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    • 2003
  • The effect of rare earth(RE) at three difference levels of nitrogen on the growth and nitrate content of chicory (Cichorium intybus L.) were studied in terms of leaf size, fresh and dry weight increase, and chlorophyll and nitrate content grown in plastic pots within glasshouse. Leaf size was enlarged as the level of nitrogen applied was high, and leaf within, length, and thickness of leaf were increased by RE treatment showing significant difference at high nitrogen(N+1) plot. As the level of nitrogen applied was high, as fresh and dry weight per plant was increased significantly(p<0.05), and sprinkling cabbage with RE increased fresh and dry matter yield to 2∼12, 4∼6.2% more, respectively. Dry matter content of Chinese cabbage was increased by RE sprinkling. At all levels of nitrogen fertilized chlorophyll contents were increased by RE treatment. As the level of nitrogen was high, as the content of chlorophyll was highly increased by RE. Nitrate was accumulated more at high level of nitrogen application, but nitrate was decreased by RE application, 40% decrease at very high nitrogen plot(N+2). RE stimulated the growth of chicory with high chlorophyll content, and showed the possibility producing high quality agricultural products low in nitrate content.

Components Related to Yield of CNU Glutinous Rice Lines on Two Nitrogen Levels (찰성벼 CNU계통에 대한 질소 수준별 주요 수량 관련 형질)

  • Choi, Yun-Pyo;Cha, Hui-Jeong;Bok, Tae-Gyu;Na, Seung-Yeon;Jeong, Jong-Tae;Lee, Hee-Bong
    • Korean Journal of Agricultural Science
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    • v.36 no.2
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    • pp.129-134
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    • 2009
  • Objectives of this study was to find the effect on two different nitrogen levels about agricultural characteristics of CNU rice lines developed at Crop Genetics and Breeding Laboratory, Chungnam Nat'l Univ.. Materials used were two black and one white glutinous rice lines, which were transplanted by hand with $30{\times}15cm$ at CNU paddy field on May 23, 2009. These lines was designed with two replication by two nitrogen levels as 7kg and 9kg per 10a. As the result; Culm length of all lines used were higher at 7kg than 9kg per 10a while panicle length was longer at 9kg nitrogen level. Tillers per plant of CNU 08-01 and CNU 08-02 lines except CNU 08-101 showed highly at 9kg level, but that of other leading varieties were not constant trends in spite of increasing nitrogen. Ripening ratio of CNU 08-01 and 08-02 lines were higher at 7kg but CNU 08-101 line was higher at 9kg. 1,000 grain weight and unhulled rice yield per 20 plants in all CNU lines were highly appeared at 9kg levels per 10a.

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Nitrogen Retention and Chemical Composition of Urea Treated Wheat Straw Ensiled with Organic Acids or Fermentable Carbohydrates

  • Sarwar, M.;Khan, M. Ajmal;Nisa, Mahr-un
    • Asian-Australasian Journal of Animal Sciences
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    • v.16 no.11
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    • pp.1583-1591
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    • 2003
  • The influence of varying levels of urea and additives on nitrogen (N) retention and chemical composition of wheat straw was studied. The wheat straw was treated with 4, 6 and 8% urea and ensiled with 1.5, 2 and 2.5% of acetic or formic acid and 2, 4 and 6% of corn steep liquor (CSL) or acidified molasses for 15 days. The N content of wheat straw was significantly different across all treatments. The N content of urea treated wheat straw was increased with the increasing level of urea. The N content was higher in urea treated wheat straw ensiled with acetic or formic acid as compared to urea treated wheat straw ensiled without these organic acids. The N content of urea treated wheat straw was further enhanced when it was ensiled with CSL or acidified molasses. This effect was significant across all levels of urea used to treat the wheat straw. Nitrogen retention in urea treated wheat straw was decreased linearly as the urea level was increased to treat the wheat straw. The N content was increased linearly when higher levels of CSL or acidified molasses were used to ensile the urea treated wheat straw. Most of the N in urea treated wheat straw was held as neutral detergent insoluble N (NDIN). The NDIN content was increased linearly with the increasing levels of urea and additives. The neutral detergent fiber (NDF) contents were higher in urea treated wheat straw ensiled with acetic or formic acid as compared to urea treated wheat straw ensiled without additive. The NDF content further increased in urea treated wheat straw ensiled with CSL and acidified molasses. The entire increase in NDF content was because of fiber bound N. The hemicellulose content of urea treated wheat straw ensiled with CSL or acidified molasses was higher as compared to urea treated wheat straw ensiled with acetic or formic acid. The acid detergent fiber content of urea treated wheat straw ensiled with or without additives remained statistically non-significant. The cellulose contents of wheat straw was linearly reduced when urea level was increased from 4 to 6 and 8% to treat the wheat straw. This effect was further enhanced when urea treated wheat straw was ensiled with different additives. The results of the present study indicated that fermentable carbohydrates might improve the Nitrogen retention and bring the favorable changes in physiochemical nature of wheat straw. However, biological evaluation of urea treated wheat straw ensiled with fermentable carbohydrates is required.

Effect of Seeding Rate and Nitrogen Fertilization on the Carbohydrate Reserves , Stand Reduction , and Yield of Sorghum-Sudangrass Hybrid (파종량과 질소시비수준이 수단그라스계 잡종의 저장탄수화물 함량 , 주수저하 및 건물수량에 미치는 영향)

  • 한왕범;김동암
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.12 no.1
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    • pp.33-40
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    • 1992
  • This experiment was carried out to determine the effects of seeding rates and nitrogen fertilization levels on the yield. carbohydrate reserves in stubble and stand reduction of sorghum-sudangrass hybrid (Sorghum bie%r (L.) Moench) in 1983 on the Experimental Livestock Farm, College of Agriculture, Seoul National University in Suwon. The results of this experiment are summarized as follows: I. There was no significant difference in forage yield among three seeding rates(20, 40. and 80kgjha), but there was a significant difference(P <.0 I) in forage yield among three N fertilization levels(O, I 50. and 300kgjha). High nitrogen plot showed the highest dry matter yield. 2. Carbohydrate reserves were influenced not only by seeding rates, but also by nitrogen fertilization levels at first cut(P < .05). At second harvest, no treatments affect the carbohydrate reserves. 3. Only the seeding rates affect the stand reduction at first harvest. But the mortality was influenced by seeding rates and N fertilization levels(P < .05). The high seeding rates caused the high mortality. 4. According to the results obtained from this study, it is suggested that the seeding rate of 40 kgjha and nitrogen fertilization of 300kgjha would be recommendable for maximum forage yield and good performance where sorghum-sudangrass hybrids are broadcasted for summer forage production.

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Effect of Soil Acidity and Nitrogen Fertilization on the Growth and Yield of Barley Cultivars (대맥의 내산성 품종육성을 위한 기초연구 I. 토양산도와 질소시용량이 대맥품종의 생육 및 수량에 미치는 영향)

  • Shim, Jai-Wook;Lee, Hong-Suk;Choi, Kyung-Jin
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.33 no.1
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    • pp.12-22
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    • 1988
  • The effects of pH and Aluminum treatment on the seedling growth were examined with 11 cultivar under three levels of pH in nutri-culture.. Growth and yield responses of soil pH and nitrogen fertilization were also studied with five cultivars under 3 levels of soil pH and 3 levels of nitrogen application in the field experiment. The effect of pH on the seedling growth was not significant, but Aluminum treatment significantly decreased the seedling growth in nutri-culture except Dusan #12. Chlorophyll contents of leaves, dry weight of plants, culm length, spike numbers per unit area, grain numbers per spike, grain weight, and yield were decreased as the decrease of soil pH, and thus highly significant correlation between soil pH during barley growth and yield was observed in all cultivars examined. The stable cultivars to different soil pH with high yield was not found although the decreases of yield were different with cultivars. The increase of nitrogen fertilization significantly increased the nitrogen and chlorophyll contents of leaves, and dry weight of plants, while showed a little effects on the culm length, spike number per unit area, grain number per spike, grain weight and yield. The yield was significantly correlated with culm length, dry weight of plants, grain numbers per spike and 1000 grain weight at each pH levels.

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Effects of ruminally degradable starch levels on performance, nitrogen balance, and nutrient digestibility in dairy cows fed low corn-based starch diets

  • Luo, Guobin;Xu, Wenbin;Yang, Jinshan;Li, Yang;Zhang, Liyang;Wang, Yizhen;Lin, Cong;Zhang, Yonggen
    • Asian-Australasian Journal of Animal Sciences
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    • v.30 no.5
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    • pp.653-659
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    • 2017
  • Objective: This trial was performed to examine the effects of ruminally degradable starch (RDS) levels in total mixed ration (TMR) with low corn-based starch on the milk production, whole-tract nutrient digestibility and nitrogen balance in dairy cows. Methods: Eight multiparous Holstein cows (body weight [BW]: $717{\pm}63kg$; days in milk [DIM]: $169{\pm}29$) were assigned to a crossover design with two dietary treatments: a diet containing 62.3% ruminally degradable starch (% of total starch, low RDS) or 72.1% ruminally degradable starch (% of total starch, high RDS). Changes to the ruminally degradable levels were conducted by using either finely ground corn or steam-flaked corn as the starch component. Results: The results showed that dry matter intake, milk yield and composition in dairy cows were not affected by dietary treatments. The concentration of milk urea nitrogen was lower for cows fed high RDS TMR than low RDS TMR. The whole-tract apparent digestibility of neutral detergent fiber, acid detergent fiber and crude protein decreased, and that of starch increased for cows fed high RDS TMR over those fed low RDS TMR, with no dietary effect on the whole-tract apparent digestibility of dry matter and organic matter. The proportion of urinary N excretion in N intake was lower and that of fecal N excretion in N intake was higher for cows fed high RDS TMR than those fed low RDS TMR. The N secretion in milk and the retention of N were not influenced by the dietary treatments. Total purine derivative was similar in cows fed high RDS TMR and low RDS TMR. Consequently, estimated microbial N flow to the duodenum was similar in cows fed high RDS TMR and low RDS TMR. Conclusion: Results of this study show that ruminally degradable starch levels can influence whole-tract nutrient digestibility and nitrogen balance in dairy cows fed low corn-based starch diets, with no influence on performance.

The Physico-chemical Properties of Three Naked Barley Cultivars (Hordeum vulgare L.) Affected by Different Levels of Nitrogen Application (질소시용량의 차이가 과맥의 이화학적 특성에 미치는 영향)

  • ;Jae-Young Cho;Byong-Hee Hong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.29 no.3
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    • pp.242-253
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    • 1984
  • Four different levels of nitrogen were applied to 3 naked barley cultivars (Hordeum vulgare L.) Yonezawa, Baekdong and Yeongsanbori. Changes in physico-chemical properties were examined upon these treatments. Total protein content as well as glutelin increased as N level increased. Baekdong contained the highest protein content (13.7%) at N$_2$. Yonezawa and Baekdong contained more lysine than Yeongsanbori. Increased lysine was measured in all cultivars by increased nitrogen application. Among all amino acids proline was the highest in all cultivars, and its increase was paralled to the N levels. Magnesium and potassium were declined and calcium was increased with increased levels of nitrogen fertilizer. Ash content was decreased as nitrogen increased and as the plants have become matured. Three minutes pearling in Yonezawa was not sufficient in terms of water absorption ratio and whiteness. Sixty percent pearling rate in Yonezawa showed a higher absorption ratio and cooking whiteness than non-waxy Baekdong and Yeongsanbori. Gelatinization temperature was lower but maximum viscosity was higher in waxy than non-waxy barley.

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Physicochemical characteristics of radish kimchi supplemented with seafood (gizzard shad) during fermentation (뼈째 포함한 전어 무섞박지 김치의 발효 중 이화학적 품질 특성 연구)

  • Park, Inmyoung;Song, HoSu;Cho, Seong Soon
    • Korean Journal of Food Science and Technology
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    • v.50 no.6
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    • pp.601-607
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    • 2018
  • We examined the physicochemical characteristics of radish kimchi supplemented with either 10% boneless or boned sliced gizzard shad (BLGS and BGS, respectively) and compared them to those of untreated kimchi during an eight-week fermentation period. BLGS- and BGS-containing kimchi showed higher acidity, amino nitrogen, and Lactobacillus levels than control kimchi. Furthermore, BGS-containing kimchi showed higher acidity, amino nitrogen, and Lactobacillus levels, and lower reducing sugar contents than BLGS at the optimum- and over-ripened stage. Higher amino nitrogen serves as a good medium for microorganism growth, which produce organic acids, consequently decreasing the reducing sugar, pH levels and increasing the acidity. The preference test showed that the control kimchi was the most preferred at the unripened stage, while the BLGS- and BGS-supplemented kimchi samples in the ripened and over-ripened stages showed similar preferences. In conclusion, our results indicate that gizzard shad-supplemented kimchi shows positive health characteristics, such as low salinity, high amino nitrogen and Lactobacillus levels.

Effect of Potato By-products Based Silage on Rumen Fermentation, Methane Production and Nitrogen Utilization in Holstein Steers

  • Pen, B.;Iwama, T.;Ooi, M.;Saitoh, T.;Kida, K.;Iketaki, T.;Takahashi, J.;Hidari, H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.19 no.9
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    • pp.1283-1290
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    • 2006
  • The effect of substituting potato by-products based silage (PBS) for concentrates on ruminal fermentation, methane production and nitrogen utilization in Holstein steers was evaluated. Three growing Holstein steers ($490{\pm}19kg$, initial body weight) were used in a $3{\times}3$ Latin square experiment with three experimental diets in which PBS was included at (1) 0, (2) 19 and (3) 27%, on a dry matter basis, replacing concentrates and wheat bran. Increasing replacement levels of PBS slightly increased dry matter (DM), organic matter (OM), NDF and ADF intakes by the steers (p<0.05). Inclusion of PBS at 19% increased crude protein (CP) digestibility of the experimental diets compared with the control (p<0.05). Substitution with PBS increased ADF digestibility and nitrogen retention (p<0.05), but did not affect energy retention. Energy loss as methane ranged between 5.0 and 6.1% of the total gross energy intake. There were no significant differences in carbon dioxide and methane production among all PBS levels, while daily methane production numerically increased with PBS inclusion. Substituting PBS for concentrates did not significantly affect ruminal pH and ammonia N concentration. Total VFA concentration, VFA molar proportions and blood metabolites were also unaffected by PBS replacement. These results suggest that substitution of PBS up to 27% of diet dry matter did not significantly increase methane production and was equal or superior to concentrates in ADF digestibility and nitrogen retention for growing steers.