• 제목/요약/키워드: nitrate uptake

검색결과 186건 처리시간 0.021초

토양미생물 Bacillus sp. GS2에 의한 질산이온 흡수 (Nitrate Uptake by Soil Microorganism, Bacillus sp. GS2)

  • 왕희성;윤영배;김영기
    • Journal of Applied Biological Chemistry
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    • 제54권2호
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    • pp.79-83
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    • 2011
  • 국내 시설농업에서 질소비료의 과다사용은 토양에 염류집적을 유발하고 있다. 토양중 축적된 질산이온을 제거하기 위하여 질산이온 흡수능이 뛰어난 토양미생물을 밭토양으로부터 분리하고, 질산이온 흡수 특성을 조사하였다. 분리한 GS2 50 mM 농도의 질산이온을 12시간 이내에 제거하였다. 이 균주는 16S rRNA 유전자의 염기서열을 분석하여 Bacillus sp. GS2로 분리동정하였다. 이 균주의 성장과 질산이온 흡수의 성을 조사하였을 때, 각각 $30-40^{\circ}C$$37^{\circ}C$에서 최대치를 보였으며, 두 가지 모두 pH 6-8 범위가 최적의 조건임을 확인하였다. Bacillus sp. GS2 균주는 50 mM 질산이온을 포함하는 배지에서 배양하였을 때, 43 mM의 농도를 감소시켜 약 86%의 질산이온 흡수를 보였으며, 300 mM 까지의 농도범위에서 유사한 질산이온 제거 능력을 보여, 질산이온 흡수활성이 50 mM 이상에서 포화됨을 확인하였다. 이러한 결과는 Bacillus sp. GS2 균주의 우수한 균주성장과 질산이온 흡수능을 보여주는 것으로, 이 균주는 환경중 질산이온 제거에 유용한 균주로 이용될 수 있을 것이다.

Ammonium and Nitrate Uptake and Utilization Efficiency of Rice varieties as Affected by Different N-Concentrations

  • Choi Kyung-Jin;Swiader John M.
    • 한국작물학회지
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    • 제50권1호
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    • pp.22-27
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    • 2005
  • To find out the optimum mixture ratio of ammonium and nitrate on rice plant, 4 rice varieties were examined during 14days after transplanting in hydroponics with the different ratio of ammonium to nitrate(100 : 0, 75: 25,50: 50, 25: 75 and 0: 100). The highest N uptake from solution and the maximum plant dry weight were $60\~70\%$ ammonium and $30\~40\%$ nitrate mixture treatment both in Japonica and Tongil type rice plants. And with the same varieties N-uptake and N use-efficiency were compared between 10.0 mM and 1.0 mM nitrogen using $70\%$ ammonium and $30\%$ nitrate for 24 days after transplanting. Rice plants absorbed more nitrogen$(131\~145\%)$ in 10.0mM than 1.0mM treatment but accumulated N in rice plants were almost the same in both treatment. Among the tested rice cultivars, dry matter production and total accumulative nitrogen in rice plants were much high in Tongil type than japonica type rice cultivars. N-recovery ratios of rice plants from uptake N were $90.8-99.0\%$ in low concentration N solution(1.0 mM), but $69.4-81.7\%$ were observed in high concentration N solution(10.0 mM). It means that suppling low concentration N steadily will be better to prevent loss of N without reducing of growth in rice plants.

녹조 납작파래 (Enteromorpha compressa)의 질산염 흡수, 배아 생장 및 지방산 조성에 대한 광 및 온도의 영향 (Effects of Light and Temperature on Nitrate Uptake, Germling Growth and Fatty Acid Composition of Enteromorpha compressa (Chlorophyta))

  • 이동훈;이순정;류진아;박은정;남기완
    • 한국수산과학회지
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    • 제37권1호
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    • pp.57-64
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    • 2004
  • Effects of light and temperature on the nitrate uptake and germling growth of Enteromorpha compressa (L.) Greville (Chlorophyta) were studied based on samples from Cheongsapo near Busan, Korea. In addition, their effects on fatty acids composition in thallus were examined. Nitrate uptake showed saturation kinetics. $V_{max}$ (maximal uptake rate) and its $K_s$ (half-saturation constant) at $20^{\circ}C,\;80\;{\mu}mol\;m^{-2}s^{-1},$ white light were $1.571\;{\mu}mol{\cdot}g\;fr\;wt^{-1}{\cdot}h^{-1}$ and 3.56 ${\mu}M$, respectively. In nitrate uptake with irradiance, wavelength and temperature, its rate represented respectively the highest value as $1.405\pm0.020,\;0.623\pm0.040,\;1.422\pm0.022\;{\mu}mol{\cdot}g\;fr\;wt^{-1}{\cdot}h^{-1}\;at\;100\;{\mu}mol\;m^{-2}s^{-1},$ red light, $20^{\circ}C$ and exhibited significant difference among the examined conditions (p<0.001). Germling growth of E. compressa also showed saturation kinetics, and $V_{max}$ and its $K_s$ value at $20^{\circ}C,\;100\;{\mu}mol\;m^{-2}s^{-1},$ 12:12 h were $56.18\%\;day^{-1}$ and 0.33 ${\mu}M$, respectively. SGR (specific growth rate) recorded a maximal value as 49.33-54.80, 39.07-50.72, $47.20-54.53\%\;dat^{-1}$ at $120\;{\mu}mol\;m^{-2}s^{-1},$ blue light and $18^{\circ}C$ respectively, and showed significant difference (p<0.001). Red light made the effective nitrate uptake, but germling growth was largely limited by the light. In fatty acids analysis, PUFAs (polyunsaturated fatty acids) were high at blue light, $18^{\circ}C,\;100\;{\mu}M\;NO_3^-.$ However, irradiance did not affect the production of PUFAs. In conclusion, nitrate uptake and germling growth of E. compressa showed saturation kinetics to external nitrate concentration, and were significantly affected by irradiance, wave length and temperature. Fatty acid composition was also influenced by the factors except for irradiance. Their maximal values, together with the highest production of PUFAs, were found at blue light band, $20^{\circ}C,\;100\;{\mu}mol\;m^{-2}s^{-1},\;and\;100\;{\mu}M\;NO_3^-.$

모의 용승조건하에서 식물 플랑크톤 질산염 흡수기작의 생리적 적응 (Physiological Adaptation of Nitrate Uptake by Phytoplankton Under Simulated Upwelling Conditions)

  • 양성렬
    • 한국수산과학회지
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    • 제30권5호
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    • pp.782-793
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    • 1997
  • 식물 플랑크톤의 인위적인 용승조건 하에서 생리적 적응 (shift-up)을 알아보기 위하여, 안정동위원소인 $^{15}N-KNO_3$를 이용하여 실험실에서 Dunaliella tertiolecta의 질산염 흡수 능력을 측정하였다. 그 결과 예상과는 달리 최대 질소비 질산염 흡수 속도 $(V_{NO3})$와 초기 질산염 농도 사이에는 유의성 있는 상관관계가 나타나지 않았다. 그러나 최대 질산염 운반 속도 $(\rho_{NO3})$$25\;{\mu}M$ 이하의 초기 질산염 농도 사이에는 강한 상관성이 나타났으며, 이는 배양 세포의 생리적인 상태에 의한 영향에도 기인한다. $\rho_{NO3}$의 증가는 주로 입자성 유기 질소 농도의 증가와 함께 부분적으로는 $V_{NO3}$의 증가에 기인한다. 식물 플랑크톤 개체군이 심하게 shift-down되었을 경우 질산염 흡수의 생리적 적응은 높은 초기 질산염 농도에서 주목할 만큼 저해되었다. 최대 $V_{NO3}$ 또는 $\rho_{NO3}$이 나타나는 시기는 초기 질산염 농도와 관련이 있다. 높은 초기 질산염 농도에서는 $V_{NO3}$$\rho_{NO3}$의 최대치가 낮은 초기 질산염 농도에서보다 $1\~2$일 정도 늦게 나타났다. 이는 Zimmerman et al. (1987)의 shift-up 모델에서의 예측과 상반되는 결과이다. Shift-up 과정은 명백히 내부적인 시간순서와 초기 질산염 농도에 의하여 조절되지만, $V_{NO3}$의 크기는 질산염 농도의 변화에 거의 영향을 받지 알았다.

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Bacillus sp. PCE3 균주에 의한 질산이온 흡수 특성 (Characterization of Microbial Nitrate Uptake by Bacillus sp. PCE3)

  • 윤영배;박수진;한민우;김영기
    • Journal of Applied Biological Chemistry
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    • 제56권4호
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    • pp.241-244
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    • 2013
  • 질산이온은 식물체의 주된 영양분중의 하나이며, 다수확을 위하여 자주 과량이 시용되고 있다. 이것은 토양중 질산이온이 집적되어 염류장애의 주된 이유가 되며, 유리 및 비닐 온실의 토양에서 심각한 문제가 될 수 있다. 본 연구에서는 축산농가의 배수구 주위 젖은 토양으로 부터 6가지 미생물을 분리하였으며, 그들의 질산이온 흡수 활성을 측정하였다. 이 미생물들은 1,000-3,000 ppm (10-50 mM) 수준의 질산이온을 제거할 수 있었으며, 특히 PCE3 균주는 4,000 ppm으로 가장 높은 활성을 보였다. 이 균주들을 동정하기 위하여, 16S rRNA 유전자 서열을 결정하고 분석하였다. 이들 균주중 PCE3 균주는 Bacillus 속으로 확인되었다. 균주의 성장과 질산이온 흡수활성을 측정하였을 때, $37^{\circ}C$와 pH 7-9 범위에서 최대 값을 보였다. Bacillus sp. PCE3 균주는 배지의 질산이온 농도에 따라 40-60 mM (2,500-3,700 ppm)의 질산이온을 제거할 수 있었다. 그러므로, Bacillus sp. PCE3 균주는 질산이온이 집적한 시설원예 토양에서 질산이온 제거에 유용하게 이용될 수 있을 것이다.

호기 조건에서 DPAOs (Denitrifying Phosphorus Accumulation Organisms)에 의한 인 제거 (Phosphorus Removal by DPAOs (Denitrifying Phosphorus Accumulating Organisms) in Aerobic Condition)

  • 정노성;박영식;김동석
    • KSBB Journal
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    • 제25권1호
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    • pp.62-66
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    • 2010
  • 호기 상태에서 ${NO_X}^-$-N이 PAOs에 의한 인 흡수속도에 미치는 영향을 각기 세 가지 조건의 회분식 실험을 통하여 관찰하였다. 실험 결과를 요약하면 다음과 같다. 1) 인 과잉흡수가 이루어지는 호기 상태에서 PAOs는 ${NO_X}^-$-N에 의해 인 흡수에 방해를 받는 것으로 나타났다. 2) 인 흡수속도에 있어 ${NO_3}^-$-N보다 같은 농도의 ${NO_2}^-$-N가 PAOs의 인 흡수속도를 저하시키는 결과를 나타내었다. 10 mg/L의 같은 농도로 유입되었음에도 불구하고 ${NO_2}^-$-N에 의한 인 흡수속도는 15.61 mg/gVSS로 10 mg/L의 ${NO_3}^-$-N가 공급된 실험에서의 인 흡수속도 28.30 mg/gVSS보다 낮은 속도를 나타냈다. 3) 반응기내의 ${NO_2}^-$-N 농도가 2 mg/L 이상으로 존재할 시 PAOs의 인 흡수속도는 ${NO_X}^-$-N가 존재하지 않는 조건에서 인 흡수 속도의 24%를 나타냈으며, ${NO_3}^-$-N의 농도가 3 mg/L 이상으로 존재할 경우 ${NO_X}^-$-N가 존재하지 않는 조건에서 인 흡수 속도의 17% 이하로 감소하는 것으로 나타나 ${NO_2}^-$-N가 PAOs의 인 흡수에 심각한 저해를 미치는 것으로 나타났다. 4) 반응기내에 ${NO_2}^-$-N와 ${NO_3}^-$-N가 함께 존재할 시에는 ${NO_X}^-$-N가 존재하지 않는 조건에서 인 흡수 속도의 6% 이하로 감소하는 것으로 나타났다. 5) ${NO_2}^-$-N는 EBPR의 붕괴에 영향을 미치는 중요한 요소로 판명되었다.

음이온 대체공급이 이탈리안 라이그라스의 단백질, 당 및 질산염 농도에 미치는 영향 (The Effects of Anion Replacement on Proteins, Sugars and Nitrate Concentration in Italian Ryegrass (Lolium multiflorum L.))

  • 이복례;정우진;김기원;김태환
    • 한국초지조사료학회지
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    • 제20권4호
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    • pp.265-274
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    • 2000
  • To investigate the effects of anion replacement on NO3- concentration in Italian ryegrass. Plants weregrown hydroponically to the full vegetative stage. NO3 supply(control) was replaced with SO1- (Tl), C1-(T2) and water (T3) to during 14 days. The determination of inorganic nutrient uptake and quantification ofprincipal metabolites (nitrate. protein and sugar) followed. Relatively high uptake of ~ a a'n d Ca" for controlplants, K+ and POJ- for T2 plants, and C 1 for TI plants was observed, respectively. Proteins in shoot andstubble were relatively higher in control and TI plants, which coupled N source. In root proteins largelydecreased (especially in T3 plants) during experimental period. Sugars in shoot of all four treatments tendedto decrease during the first 7 days and recovered afterward. Sugars in stubble also markedly decreased duringthe first 7 days, while those in root was much less varied during experimental period. After 14 days oftreatment, nitrate concentration in shoot of control plants was 13mgIg FW. Comparing to control: nitrate inshoot reduced by 27%, 46% and 50% in TI, T2 and T3 plants, respectively. Dry weight was slightlyincreased or not significantly changed in control, T1 and T2 plants, while a significant decrease(31.3% ofcontrol) occurred in T3 plants.(Key words : Italian ryegrass, Anion replacement, Ion uptake, Protein, Sugar, Nitrate)ptake, Protein, Sugar, Nitrate)

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Sorghum 및 옥수수의 형태적 특성과 재배온도가 Nitrate-Nitrogen 축적에 미치는 영향 (Accumuation Pattern of Nitrate-Nitrogen in Sorghum And Maize Plants as Affected by Morphological Characteristics And Environmental Temperature)

  • 김정갑
    • 한국초지조사료학회지
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    • 제7권3호
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    • pp.146-152
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    • 1987
  • Sorghum cv. Pioneer 93 1, sorghum-sudangrass hybrid cv. Sioux and maize plant cv. Blizzard were assayed for toxic concentrations of nitrate-nitrogen ($NO_3$-N) and their relationship to morphological characteristics and environmental temperature in a field and phytotron trial. In the phytotron, sorghum and maize plants ranging from emergence to heading stage, were grown under different day/night temperatures of 30125, 25/20,28/18 and 1818 degree C. Nitrate-nitrogen in sorghum and maize plants was accumulated mainly in stems. Therefore nitrate concentration in the young plants was increased as development of stalks advanced and was highest at the stage of 3-4 leaves, when the plants had a leaf weight ratio 0.78-0.80 g/g plant weight. However, nitrate concentrations of the plant decreased as morphological development progressed, especially from the stage of growing point differentiation. Correlation coefficients showed a positive correlation of nitrate concentration with leaf weight ratio, leaf area ratio and specific leaf area, while plant height, dry matter percentage and absolute growth rate showed a negative association with TEX>$NO_3$-N ($P{\le}0.1$%). Cyanogenic glycosides, total nitrogen and crude protein were close associated with nitrate accumulation, and positively significant ($P{\le}0.1$%). High temperature over 30/25^{\circ}C.$ for 3 weeks increased N-uptake and dry matter accumulation, but reduced nitrate concentration. Under cold temperature below 18/8^{\circ}C.$ concentration of nitrate-N was increased in spite of its limited nitrogen uptake and plant growth.

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Nitrogen Assimilation of Hydrocarbon Producing Algae, Botryococcus braunii UTEX-572

  • Kim, Yoon-Jeong;Lee, Chan-Yong
    • Journal of Microbiology and Biotechnology
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    • 제2권4호
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    • pp.255-259
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    • 1992
  • The effect of nitrate, nitrite and ammonia as inorganic nitrogen sources on the modulation of nitrogen metabolism of Botryococcus braunii UTEX.-572 has been studied under aeration. The primary process in the regulation of nitrogen metabolism by this alga has the nitrate uptake system. This uptake of nitrate operation was immediately inhibited by the presence of 0.5 mM of ammonium and reversed by 0.2∼0.3 mM ammonium. When cell were exposed to 5 mM of ammonium for 24 hours the activity of nitrate reductase became inactive.

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개구리밥과 식물의 질소대사에 관한 연구: 개구리밥(Spirodela polyrhiza)과 좀개구리밥(Lemna aequinoctialis)의 NO3-와 NH4-의 동화작용 (A Study on Nitrogen Metabolism of Lemnaceae: Assimilation of Nitrate and Ammonia in Spirodela polyrhiza and Lemna aequinoctialis)

  • 장남기
    • Journal of Plant Biology
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    • 제34권4호
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    • pp.253-260
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    • 1991
  • Spirodela polyrhiza and Lemna aequinoctialis often occurred at the sites of high ammonium concentration and at the sites of high nitrate concentration, respectively. We investigated the different distribution between two species in relation to the type of nitrogen sources and their concentrations. Our experiments showed that L. aequinoctialis grew faster than S. polyrhiza in nitrate media with lower than 15 mM concentration. The nitrate uptake was also faster in L. aequinoctialis than in S. polyrhiza. However, neither differences in growth nor in uptake patterns between these two species were observed in ammonium media. Glutamine synthetase (GS), glutamate dehydrogenase (GDH) and glutamate synthetase (GOGAT) activities were higher in L. aequinoctialis. In particular, nitrate reductase activity (NRA) in L. aequinoctialis was 12.1 times as high as that in S. polyrhiza. These results showed that the two species responded varyingly to the types of nitrogen sources and their concentrations. Therefore, the difference in geographic distribution between the two species appeared to reflect the interspecific differences in enzyme activities and, subsequently, nitrogen absorption abilities.

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