• 제목/요약/키워드: 생장촉진제

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The Role of Nitric Oxide on the Growth Regulation of Chinese Cabbage (Brassica campestris L.) Primary Leaves (배추 (Brassica campestris L.) 제 1엽의 생장조절에 대한 Nitric Oxide의 역할)

  • Ham Jeong-Hun;Jin Chang-Duck
    • Journal of Plant Biotechnology
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    • v.32 no.4
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    • pp.293-300
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    • 2005
  • The possible role of nitric oxide (NO)-induced cell division was investigated to explain the physiologycal effects of a NO donor, sodium nitroprusside (SNP) on the growth of primary leaves in chinese cabbage seedling plants. Exogenous treatment of SNP to chinese cabbage plants for 8 days at different concentrations (0, 200, 500 and 1000 ${\mu}M$) affected the leaf growth in a concentration-dependent manner, showing a maximum growth at $200\;{\mu}M$. In accordance with leaf growth responses, the chlorophyll and soluble protein contents increased strongly to 142% and 134% of control at $200\;{\mu}M$ SNP, respectively. However, a very little decrease in chlorophyll and a 13%> decrease in protein were observed at $1000\;{\mu}M$ SNP. In addition, the content of DNA and RNA also increased maximumly to 142% and 139% of the control at $200\;{\mu}M$ SNP, respectively, whereas they decreased to 80% and 84% of the control at $1000\;{\mu}M$ SNP. With respect to the development of enzymes related to cell wall synthesis, $200\;{\mu}M$ SNP led to the maximum activities in both phenylalanine ammonia-lyase (212% of the control) and guaiacol peroxidase (134% of the control). However, the activities of both enzymes were not modified significantly at $1000\;{\mu}M$ SNP. In conclusion, these results suggest that the enhancement of leaf growth in chinese cabbage plants by SNP at the effective concentration was probably due to the NO ability in the induction of cell division.

Isolation of copper-resistant bacteria with plant growth promoting capability (식물 생장을 촉진할 수 있는 구리 내성 세균의 분리)

  • Kim, Min-Ju;Song, Hong-Gyu
    • Korean Journal of Microbiology
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    • v.53 no.4
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    • pp.251-256
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    • 2017
  • Some rhizobacteria were isolated, that have copper resistance and can confer copper resistance to plants allowing growth under copper stress. Isolated strains Pseudomonas veronii MS1 and P. migulae MS2 produced 0.13 and 0.26 mmol/ml of siderophore, that is a metal-chelating agent, and also showed 64.6 and 77.9% of biosorption ability for Cu in 20 mg/L Cu solution, respectively. Copper can catalyze a formation of harmful free radicals, which may cause oxidative stress in organisms. Removal activity of 1,1-diphenyl-2-picryl hydrazyl radical and antioxidant capacity of strains MS1 and MS2 increased up to 82.6 and 78.1%, respectively compared to those of control at 24 h of incubation. They exhibited 7.10 and $6.42{\mu}mol$ ${\alpha}$-ketobutyrate mg/h of 1-aminocyclopropane-1-carboxylic acid deaminase activity, respectively, which reduced levels of stress hormone, ethylene in plants, and also produced indole-3-acetic acid and salicyclic acid that can help plant growth under abiotic stress. All these results indicated that these copper-resistant rhizobacteria could confer copper resistance and growth promotion to plants.

Effect of Ascorbic Acid on the Gravitropic Response of Primary Roots in Maize (옥수수 일차뿌리에서 Ascorbic acid가 굴중성 반응에 미치는 효과)

  • Kim, Chung Su;Mulkey, Timothy J.;Kim, Soon Young
    • Journal of Life Science
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    • v.24 no.12
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    • pp.1364-1370
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    • 2014
  • Ascorbic acid (AA) is a multifunctional metabolite in plants that is essential for plant development and growth. We examined the effect of AA, an antioxidant, on the gravitropic response of primary roots in maize. The application of $10^{-3}$ M AA to the elongation zone did not affect the gravitropic response and slightly inhibited the root growth. However, treatment with both $10^{-5}$ M and $10^{-3}$ M AA at the root tip increased the gravitropic response and inhibited root growth. Differences in indole-3- acetic acid (IAA) activity between the upper and lower hemispheres of the root resulted in differential elongation along the horizontal root. Roots are extremely sensitive to IAA, and increasing the amount of IAA in the lower hemisphere of the root inhibited elongation. Therefore, we examined the effect of IAA in the presence of AA. The inhibitory effect of AA on the gravitropic response was greater in combination with IAA. To understand the role of AA in the regulation of root growth and the gravitropic response, we measured ethylene production in the presence of AA in the primary roots of maize. AA stimulated ethylene production via the activation of the 1-aminocyclopropane-1-carboxylic acid (ACC) oxidase gene, which regulates the conversion of ACC to ethylene. These results suggest that AA alters the gravitropic response of maize roots through modification of the action of ethylene.

The Effect of Oryzalin on Growth and Gravitropism in Arabidopsis Roots (Oryzalin이 애기장대 뿌리 생장과 굴중성 반응에 미치는 작용)

  • Go, Jin Gyu;Park, Sun Ill;Kim, Soon Young
    • Journal of Life Science
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    • v.31 no.2
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    • pp.109-114
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    • 2021
  • Oryzalin is a dinitroaniline herbicide that has been known to disrupt microtubules. Microtubules and microfilaments are components of cytoskeletons that are implicated in plant cell growth, which requires the synthesis of cellulose when cell walls elongate. In addition, microtubules are also involved in the sedimentation of statoliths, which regulate the perception of gravity in the columella cells of root tips. In this study, we investigated the effect of oryzalin on the growth and gravitropic response of Arabidopsis roots. The role of ethylene in oryzalin's effect was also examined using these roots. Treatment of oryzalin at a concentration of 10-4 M completely inhibited the roots' growth and gravitropic response. At a concentration of 10-6 M oryzalin, root growth was inhibited by 47% at 8 hr when compared to control. Gravitropic response was inhibited by about 38% compared to control in roots treated with 10-6 M oryzalin for 4 hr. To understand the role of oryzalin in the regulation of root growth and gravitropic response, we measured ethylene production in root segments treated with oryzalin. It was found that the addition of oryzalin stimulated ethylene production through the activation of ACC oxidase and ACC synthase genes, which are key components in the synthesis of ethylene. From these findings, it can be inferred that oryzalin inhibits the growth and gravitropic response of Arabidopsis roots by stimulating ethylene production. The increased ethylene alters the arrangement of the microtubules, which eventually interferes with the growth of the cell wall.

Effect of Chemical Treatments on Seed Germination of Saururus chinensis (Lour.) Baill., an Endangered Species in Korea (멸종위기 야생식물 삼백초의 종자발아에 미치는 화학적 처리의 영향)

  • Cho, Ju Sung;Lee, Cheol Hee
    • Korean Journal of Plant Resources
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    • v.29 no.4
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    • pp.385-392
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    • 2016
  • This research was performed to develop seminal propagation method of Saururus chinensis (Lour.) Baill. by conducting a rigorous germination study. Well-selected seeds were dry-stored at 4 ± 1.0℃ during the experiment. To study dormancy type, non-stored seeds were analyzed by embryo observation, germination test and detecting for any difficulties in seed coat to absorb moisture. Then to improve germination, seeds were submerged for 24 hours in a solution of varying concentrations containing one of plant growth regulators and minerals. According to research, fleshly matured seeds had an undifferentiated embryo and had a low germination rate below 5%. In addition, water submersion led to moisture absorption, embryo in the seeds grew and germinated so it was deemed morphophysiological dormant seeds. Percent germination (PG) and germination energy (GE) was greatly improved by soaking in plant growth regulators and minerals for 24 hours. Especially, 500 ㎎/L GA3 treatment resulted in the highest GE as 46.1%. KNO3 meaningfully improved PG (54.3∼57.7%) at 10∼20 mM but effect of minerals on germination acceleration as GE were negatively impacted in all concentrations.

Effects of Uniconazole Treatment Time on the Growth and Flowering of Cymbidium Pine Clash 'Moon Venus' and Cym. Green Sour 'A One' (Uniconazole 처리시기가 심비디움 Pine Clash 'Moon Venus'와 Green Sour 'A One'의 생장 및 개화에 미치는 영향)

  • Kim, Hong Yul;Chung, Jae-Dong
    • Horticultural Science & Technology
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    • v.17 no.3
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    • pp.344-345
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    • 1999
  • This experiment was conducted to investigate the effects of a growth retardant uniconazole treatment time on the growth and flowering of Cymbidium Pine Clash 'Moon Venus' and Cym. Green Sour 'A One' in order to develop a substitutional technique on the highland cultivation. Leaf growth of both cultivars was more remarkably reduced by earlier uniconazole treatment time and growth reduction of 'A One' was more remarkable than 'Moon Venus'. Flowering time of 'Moon Venus' treated with uniconazole at May 7 and 27 was accelerated by 5 and 6 days respectively. Moreover, the number of inflorescences and florets showed a tendency to increase. However there was no difference in flowering time of 'A One' among treatments but there was a tendency to decrease in the number of inflorescences and florets by uniconazole treatment. In both cultivars, there was no difference among treatments in the length and width of lower sepal which represent the floret size.

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Effects of TPA and IAA on Corn Coleoptile Elongation (옥수수 자엽초의 신장에 미치는 TPA와 IAA의 효과)

  • 정은수
    • Journal of Plant Biology
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    • v.35 no.1
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    • pp.77-84
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    • 1992
  • In view of the well-established role of protein kinase C effector element in signal transduction of animal systems, the possibility of diacylglycerol (DAG) and its analog 12-O-tetradecanoylphorbol13-acetate (TPA) having an effect on auxin-induced growih of com coleoptiles was explored. Both DAG and TP A were found to promote cell elongation in the coleoptile tissue_ Treatment of tissue with these protein kinase C-activating agents resulted in increase in the growth rate over the control by about 300%. When 1M was applied to TPA-pretreated coleoptiles. auxin effect appeared synergistic. Morever. coleoptile growth was found to be inhibited by staurosporine and methylated TPA, both of which are known to specifically inhibit protein kinase C. Electrophoretic and autoradiographic patterns of soluble proteins from the coeoptiles indicated that either 1M or TPA tereatment resulted in increased phosphorylation of certain proteins of 205 Kd. 66 Kd and 32 Kd in size. The results obtained from the present work suggest that protein kinase C may be associated with auxin action on cell elongation in the corn coleoptile segments.gments.

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Effects of Some Environment-friendly Farming Materials on Growth of Pepper and Tomato Seedlings under Low Solar Radiation Conditions (저일조 조건에서 몇 가지 친환경농자재가 고추와 토마토의 유묘 생육에 미치는 영향)

  • Um, Yeong-Cheol;Seo, Tae-Cheol;Jang, Yoon-Ah;Lee, Sang-Gyu;Lee, Jun-Gu;Choi, Chang-Sun;Oh, Sang-Seok
    • Journal of Bio-Environment Control
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    • v.20 no.4
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    • pp.269-276
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    • 2011
  • The aim of this study was to evaluate the effect of 3 environment- friendly farming materials on the growth of pepper and tomato seedlings under low level of solar radiation. The pepper and tomato seedlings were separately grown on commercial substrate and non-fertilizer substrate under 30% shading condition, respectively. The microbe-, enzyme-, and amino acid-supplements were used for the foliar application to the seedlings. The application of enzyme- and amino acid-supplements significantly enhanced the growth of tomato and pepper seedlings grown on non-fertilizer substrate, while there was no significant effect on the seedlings grown on commercial substrate. The foliar application of enzyme- and amino acid-supplements reduced the days to flowering by 3 to 4 days and lowered the node order of fruit set in tomato plants grown on non-fertilizer substrate. The results showed that the enzyme- and amino acid-supplements could enhance the seedling growth and lower the node order of fruit set under limited nutritional conditions.

The Reverse Effect of Salicylic Acid on Cd-induced Growth, Chlorophyll, and Rubisco/Rubisco Activase in Tobacco (카드뮴에 의해 유도된 담배 식물의 생장, 엽록소와 rubisco/rubisco activase에 대한 salicylic acid의 전환 효과)

  • Wang, Yu Shan;Roh, Kwang-Soo
    • Journal of Life Science
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    • v.22 no.6
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    • pp.778-787
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    • 2012
  • The influence of salicylic acid (SA) on growth, chlorophyll, and rubisco/rubisco activase and effect of denaturator on rubisco/rubisco activase activity were studied in tobacco plants grown in vitro with cadmium (Cd) treatment. In order to find out the optimum concentration of SA, tobacco plants treated with $10^{-6}$ mM - $10^2$ mM of SA were grown in MS medium for 9 weeks, respectively. The most pronounced effect on in vitro growth was found at $10^{-4}$ mM SA. Among the control (not treated with Cd and SA), SA, Cd, and Cd + SA, the growth and content of chlorophyll were in the sequence of Cd < Cd + SA < control < SA, and significantly higher at SA compared with others. Similar results were also observed in the content and activity of rubisco and rubisco activase. These data suggest that inhibitory effect by Cd was reversed by SA. These results also indicate that SA has a positive effect on Cd. The effect of denaturants on rubisco activity showed in the sequence of Cd < Cd + SA < control < SA. Rubisco activity was promoted by L-cysteine and ${\beta}$-mercaptoethanol, not by urea, thiourea, and guanidium-HCl. These data suggest that urea, thiourea, and guanidium-HCl are able to act as denaturator, and L-cysteine and ${\beta}$-mercaptoethanol are not. None of the five denaturants affected the activity of rubisco activase.

하우스작물 병해발생이 늘고있다 - 무리한 작형, 연작 피하고 온$\cdot$습도 관리등 종합대책 강구돼야

  • 차광홍
    • The Bimonthly Magazine for Agrochemicals and Plant Protection
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    • v.11 no.2 s.95
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    • pp.86-92
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    • 1990
  • 최근 소득작물로 재배면적이 늘고있는 시설하우스의 채소재배는 시설의 대형화와 고정화로 인한 연작장해와 주년재배에 의한 포장환경의 오염, 시설내의 고온다습, 무리한 약제살포 등으로 노지재배에서는 별로 문제가 되지않던 병들이 하우스내의 온도보존을 위한 2중, 3중의 밀폐로인한 높은 습도 때문에 거의 모든 작물에서 잿빛곰팡이병, 균핵병등이 발생되고 있다. 또한 연작으로 인한 토양전염성 병균의 밀도가 높아져서 역병, 풋마름병, 덩굴마름병등이 발생될 뿐아니라 지력증진을 위한 미숙 유기물이나 생육촉진을 위한 제4종 복합비료, 생장조절제등의 남용으로 전에는 없었던 새로운 장해가 증가되고 있어 이에 대한 방제대책의 일환으로 주산단지를 이루고 있는 농가의 병해충 발생및 토양환경등을 중심으로 문제점을 분석하고 대책을 소개하기로 한다.

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