• 제목/요약/키워드: nitrate assimilation

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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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고질소 및 저 칼륨 양액처리시 시금치내의 비타민C및 질소 대사의 변화 (Changes in the Nitrate Assimilation and Ascorbic Acid Content of Spinach Plants Treatmented with Nutrient Solutions Containing High Nitrogen and Low Potassium)

  • 박양호;서범석
    • 한국토양비료학회지
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    • 제42권4호
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    • pp.301-306
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    • 2009
  • 이 연구의 목적은 건강한 작물과 시들은 식물의 질소대사와 아스코리빈산 함량의 차이를 비교하는것에 있다. 시듬은 인공적으로 유도되었으며, 그방은 질소과다 시비 및 저칼륨 시비에 의한 것으로4개의 처리구를 두었다. 1N-1P-1K (control), 6N-1P-0K (0K), 6N-1P-0.5K (0.5K), and 6N-1P-2K (2K). 시듬 정도는 control, 0%; 2K, 10%; 0.5K, 40%; and 0K, 70%. 식물 생장에는 고질소 저 칼륨 처리구에서는 그리 큰 차이가 없었으며 질산태질소의 함량은 control 구와 비교하여 고 질소 처리구가 높았으며, 아스코리빈 산 함량은 고질소 처리구가 control구에 비하여 낮았음을 확인 할수 있었다.

대두의 생장 및 질소 경제에 미치는 Nitrate 구배의 영향 (Effects of Nitrate Gradients on Growth and Nitrogen Economy of Soybean Plant)

  • Kim, Sung-Jun;Yeon-Sik Choo;Seung-Dal Song
    • The Korean Journal of Ecology
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    • 제10권4호
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    • pp.175-182
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    • 1987
  • Soybeans(Glycine max Merr. cv. Kwanggyo), inoculated with Rhizobium japonicum 110 and then sand-cultured with nitrate gradients (0, 1, 3, 10 and 30mM KNO3). were studied on the growth analysis, nitrogen fixation and nitrogen economy during the growing period. The maxium values of total leaf area, biomass and nitrogen quantity were increased 139%, 122% and 161%, respectively with higher concentration of nitrate treatment. Nodulation showed significant linear correlation with leaf area growth for each treatment of nitrate concentration increased. The more nitrate concentration increased, the more distribution ratios of dry matter and nitrogen to nodule decreased, and the more T/R ratios, CGR and N content increased. On the other hand, F/C ratios and RGR showed little changes. The amounts of nitrogen fixation of soybean alloted to 0, 1, 3, 10 and 30mM nitrate treatments were 100, 46, 14, 0.1 and 0.004% for the total nitrogen assimilation, respectively. The nitrogen utility of soybean plant was smaller than that of other plants and ranged from 23 to 30 at varying nitrate gradients.

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Mineral N, Macro Elements Uptake and Physiological Parameters in Tomato Plants Affected by Different Nitrate Levels

  • Sung, Jwa-Kyung;Lee, Su-Youn;Kang, Seong-Soo;Lee, Ye-Jin;Kim, Ro-Gyoung;Lee, Ju-Young;Jang, Byoung-Choon;Ha, Sang-Keun;Lee, Jong-Sik
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.551-558
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    • 2011
  • The aim of this study was to know whether leaf nitrate can be a substitute of total leaf N to justify plant N status and how nitrate influences macro elements uptake and physiological parameters of tomato plants under different nitrogen levels. Leaf nitrate content decreased in low N, while showed similar value with the control in high N, ranging from 55 to $70mg\;g^{-1}$. Differences in nitrate supply led to nitrate-dependent increases in macro elements, particularly cations, while gradual decrease in P. Physiological parameters, photosynthesis rates and antioxidants, greatly responded in N deficient conditions rather than high N, which didn't show any significant differences compared the control. Considering nitrogen forms and physiological parameters, total-N in tomato plants represented positive relation with growth (shoot dry weight), nitrate and $CO_2$ assimilation, whereas negative relation with lipid peroxidation.

잔디군락에 출현하는 쇠비름의 $CO_2$고정과 질소동화 (Adaptive $CO_2$Fixation Nitrate assimilation of Portulace oleracea in Zoysia japonica Community)

  • 장남기;김희백
    • 아시안잔디학회지
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    • 제8권1호
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    • pp.13-18
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    • 1994
  • $CO_2$와 질소동화작용에 있어서의 잎과 줄기간의 세포간 관계가 잔디군락의 자연 환경 상태하에서 자라는 Portulaca oleracea 에서 조사되었다. 기공이 줄기에서는 관찰되지 않는 반면 잎에서는 $1cm^2$당 3,275개가 나타났다. 어린 쇠비름 잎의 기공의 조헝운 범에누누 높고 낮에는 낮다. 최고 활성을 갖는 마디의 순서는 위에서 아래로 떨어짐에 따라 변화한다.P.oleracea 의 줄기조직은 CMA의 최고 활성을 나타내었으나 잎에서는 CMA의 활성이 나타나지 않았다. 빠른 산의 성화는 새벽에 원줄기에서 보여지나 줄기는 서서히 증가하는 것 밖에 관찰되지 않는다. RuPB carboxy-lase의 활성은 거의 관찰 되지 않는다. 특히 잎새에서의 PEP carboxylase의 활성은 이른 아침에 줄기에서는 낮고 잎에서는 매우 높음을 보여준다. 이런 결과는 새벽에 열려진 기공을 통과할$CO_2$가 PEP carboxylase에 의해 잎에서 동화되고 $C_4$생산물이 줄기로 이동함을 나타낸다. Nitrate 축적과 nitrate reductase, nitrite reductase, glutamine symithetase, gluamate symthase, glutamade dehydrogenase의 농도는 잎보다 줄기에서 더 높았고 밤보다 낮에 더 높다. 이것은 뿌리를 통해 흡수된 nitrate의 상당한 양이 줄기에서 동화되고 줄기 조직을 통해 잎으로 이동되어 거기에서 감소된다.

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국내 담수에서 분리된 Chlorella vulgaris PKVL7422 질소환원 유전자의 분자적 특성 (Molecular Characterization of the Nitrate Reductase Gene in Chlorella vulgaris PKVL7422 Isolated from Freshwater in Korea)

  • 압델아우이 나집;김민정;최태진
    • 생명과학회지
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    • 제32권8호
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    • pp.659-665
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    • 2022
  • Chlorella vulgaris는 인간과 동물에서 주요한 식품의 원료로 이용되는 수 조류이다. 최근 클로렐라는 어류 양식, 생물연료 및 영양물질과 치료용 단백질의 생산을 위한 이용 가능성과 관련하여 많은 관심을 받고 있다. 최근 본 연구실에서는 빠른 성장, 배양의 용이성, 암 조건에서의 배양성을 특징으로 하는 새로운 C. vulgaris PKVL7422균주를 분리하였으나, 이 균주의 질소 이용에 관련된 유전자에 대하여는 보고된 바가 없다. 본 연구에서는 cDNA 말단의 신속 증폭과 genome walking을 이용하여 C. vulgaris PKVL7422의 질산환원 효소(nitrate reductase, NR)를 동정하였다. C. vulgaris PKVL7422 NR 유전자는 약 8 kb이며, 18개의 인트론과 877개의 아미노산을 암호화 하는 19개의 엑손으로 되어 있다. 기존의 알려진 NR 단백질과의 비교 분석 결과 C. vulgaris PKVL7422 NR 단백질은 식물의 NR에 존재하는 5개의 도메인과 다수의 비변이성 아미노산 잔기를 가지고 있는 것으로 확인되었으며, 이러한 결과는 조류 NR 유전자의 분자생물학적 구조에 대한 새로운 정보를 제공한다.

Transcription Factor OsDOF18 Controls Ammonium Uptake by Inducing Ammonium Transporters in Rice Roots

  • Wu, Yunfei;Yang, Wenzhu;Wei, Jinhuan;Yoon, Hyeryung;An, Gynheung
    • Molecules and Cells
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    • 제40권3호
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    • pp.178-185
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    • 2017
  • Nitrogen is one of the most important mineral elements for plant growth. We studied the functional roles of Oryza sativa DNA BINDING WITH ONE FINGER 18 (OsDOF18) in controlling ammonium uptake. The growth of null mutants of OsDOF18 was retarded in a medium containing ammonium as the sole nitrogen source. In contrast, those mutants grew normally in a medium with nitrate as the sole nitrogen source. The gene expression was induced by ammonium but not by nitrate. Uptake of ammonium was lower in osdof18 mutants than in the wild type, while that of nitrate was not affected by the mutation. This indicated that OsDOF18 is involved in regulating ammonium transport. Among the 10 ammonium transporter genes examined here, expression of OsAMT1;1, OsAMT1;3, OsAMT2;1, and OsAMT4;1 was reduced in osdof18 mutants, demonstrating that the ammonium transporter genes function downstream of OsDOF18. Genes for nitrogen assimilation were also affected in the mutants. These results provide evidence that OsDOF18 mediates ammonium transport and nitrogen distribution, which then affects nitrogen use efficiency.

고등식물의 질산시그널에 의한 유전자 발현제어 관련 전사인자의 연구현황 (Research status of transcription factors involved in controlling gene expression by nitrate signaling in higher plants)

  • 정유진;박정순;고지윤;이효주;김진영;이예지;남기홍;조용구;강권규
    • Journal of Plant Biotechnology
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    • 제48권3호
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    • pp.124-130
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    • 2021
  • 질산염은 많은 유전자의 발현을 조절하고 생장과 발육과정에서 매우 중요한 영양소이자 시그널 분자이다. 본 연구는 고등식물에서 질산 신호에 의한 유전자발현제어 관련 전사인자의 연구현황을 소개하고자 한다. 질산 환원 효소는 질소 동화 경로상의 효소이며, 질산이온을 아질산이온으로 환원하는 과정을 촉매한다. 질산이온, 빛, 대사산물, 식물호르몬, 저온, 가뭄 등의 여러 요인이 질산환원효소 유전자의 발현 수준과 생리적 역할과 같은 질산환원효소 활성을 조절한다. 최근 질산 환원 효소 유전자의 발현제어에 관여하고 있는 몇몇 전사인자들이 식물에서 분리되었다. NODULE-INCEPTION-like proteins (NLPs)는 질산 환원 효소 유전자의 질산 유도성 발현에 관여하는 전사인자이다. NLPs는 질산 수송체, 아질산 수송체, 아질산 환원 효소에 관련된 유전자의 질산 유도성 발현을 제어한다. 질산 환원 경로와 관련된 유전자의 발현 수준은 질산에 반응하여 NLPs에 의해 협조적으로 조절된다. 따라서 식물에서 질산염의 기능을 이해하면 질소 사용량이 적은 작물을 육성할 수 있다.

Nitrate enhances the secondary growth of storage roots in Panax ginseng

  • Kyoung Rok Geem ;Jaewook Kim ;Wonsil Bae ;Moo-Geun Jee ;Jin Yu ;Inbae Jang;Dong-Yun Lee ;Chang Pyo Hong ;Donghwan Shim;Hojin Ryu
    • Journal of Ginseng Research
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    • 제47권3호
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    • pp.469-478
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    • 2023
  • Background: Nitrogen (N) is an essential macronutrient for plant growth and development. To support agricultural production and enhance crop yield, two major N sources, nitrate and ammonium, are applied as fertilizers to the soil. Although many studies have been conducted on N uptake and signal transduction, the molecular genetic mechanisms of N-mediated physiological roles, such as the secondary growth of storage roots, remain largely unknown. Methods: One-year-old P. ginseng seedlings treated with KNO3 were analyzed for the secondary growth of storage roots. The histological paraffin sections were subjected to bright and polarized light microscopic analysis. Genome-wide RNA-seq and network analysis were carried out to dissect the molecular mechanism of nitrate-mediated promotion of ginseng storage root thickening. Results: Here, we report the positive effects of nitrate on storage root secondary growth in Panax ginseng. Exogenous nitrate supply to ginseng seedlings significantly increased the root secondary growth. Histological analysis indicated that the enhancement of root secondary growth could be attributed to the increase in cambium stem cell activity and the subsequent differentiation of cambium-derived storage parenchymal cells. RNA-seq and gene set enrichment analysis (GSEA) revealed that the formation of a transcriptional network comprising auxin, brassinosteroid (BR)-, ethylene-, and jasmonic acid (JA)-related genes mainly contributed to the secondary growth of ginseng storage roots. In addition, increased proliferation of cambium stem cells by a N-rich source inhibited the accumulation of starch granules in storage parenchymal cells. Conclusion: Thus, through the integration of bioinformatic and histological tissue analyses, we demonstrate that nitrate assimilation and signaling pathways are integrated into key biological processes that promote the secondary growth of P. ginseng storage roots.

메탄자화균 Methylosinus trichosporium OB3b의 성장 속도와 수율 : I. 실험적 고찰 (Growth Rate and Yield of a Methanotrophic Bacterium Methylosinus Trichosporium OB3b : I. Experimental Measurements)

  • 황재웅;송효학;박성훈
    • KSBB Journal
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    • 제13권4호
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    • pp.391-398
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    • 1998
  • The effect of culture medium copper availability on the specific growth rate(${\mu}$) and carbon conversion efficiency (CCE) was sutided for an obligatory methanotroph Methylosinus trichosporium OB3b under various combinations of carbon and nitrogen sources. Methane or methanol was used as a carbon source, and nitrate or ammonium was used as a nitrogen source. Medium copper availability determined the intracellular location or kind of methane monooxygenase (MMO), cell-membrane (particulate or pMMO) when copper was present and cytoplasm (soluble or sMMO) when copper was deficient. When methane was used as a carbon source, copper-containing medium exhibited higher ${\mu}$ and CCE than copper-free medium regardless of the kind of nitrogen source. When methanol was used as a carbon source, however, the effect of copper disappeared. Ammonium gave the higher ${\mu}$ and CCE than nitrate for both methane and methanol. Those observation suggest that there exist an important difference in energy utilization efficiency for methane assimilation between sMMO and pMMO.

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