• Title/Summary/Keyword: 뿌리생장

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Cross-sectional Cell Anatomy and Physiological Growth Responses of Cells in Root Growth Zones of Two Tall Fescue Genotypes at Two Nitrogen Levels (톨페스큐 뿌리생장부위의 횡적 해부구조 및 세포생장의 생리적 반응에 대한 질소효과)

  • Beom Heon, Song;Curtis J, Nelson
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.40 no.3
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    • pp.297-307
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    • 1995
  • Anatomical and physiological studies of sink tissues are required for better understanding the biological plant growth system and energy metabolism Anatomy of root growth zones of two genotypes of tall fescue (Festuca arundinacea Schreb.) receiving 50 or 200 ppm N were determined, Cross-sectional anatomy and cells responses of root growth zones were observed and examined. Rapid radial root expansion occurred within the first 1.0 mm from root apex, and then increased gradually for both genotypes and N levels. Another increase in diameter occurred at high N after cell elongation slowed near 3.0 mm. Area of the central cylinder cell increased rapidly near the root apex. However, it then decreased again about 1.0 to 1.5 mm from the apex, perhaps because of pressure from the rapid increase of root diameter due largely to an increasing proportion of cortex and epidermis or hypodermis in the distal portion of the root growth zone. Root area from the apical initial to 6.0 mm distal consisted of 10 to 18% epidermis or exodermis, 67 to 79% cortex, and 10 to 22% vascular cylinder cells containing cambium cells (6 to 20%) and xylem cells (0.8 to 2.5%). These data indicate that N application affects root growth radially by increasing mainly cortex cell area, with less effect on epidermis and central cylinder cells.

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Comparison of Underground Root Growth Characteristics of Major Cool-Season Grasses according to Establishment Stages in Sports Turf Designed by the USGA Soil System (USGA 지반으로 설계된 스포츠 잔디밭에서 조성단계별 주요 한지형 잔디의 지하부 뿌리생육 특성 비교)

  • Kim, Kyoung-Nam
    • Horticultural Science & Technology
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    • v.33 no.2
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    • pp.166-176
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    • 2015
  • Research was initiated to investigate root growth characteristics of major cool-season grasses (CSG) and to collect basic information useful for sports turf design, construction and maintenance. Several turfgrasses were evaluated in the USGA (United States Golf Association) soil system. Turfgrass entries were comprised 3 blends and 3 mixtures of Kentucky bluegrass (KB, Poa pratensis L.), perennial ryegrass (PR, Lolium perenne L.), and tall fescue (TF, Festuca arundinacea Schreb.). Significant differences were found in root growth, rooting potential and rooting development. These characteristics increased with time after seeding, but varied with establishment stages. In early stage, root length was highest with PR, intermediate with TF and lowest with KB. Evaluation in a middle stage indicated that root growth was similar to early-stage evaluation, but decreased by 13 to 31% compared with early-stage values. Root growth of late stage increased by 34 to 85% over middle-stage root growth. Overall, thhere was not much difference in root length among treatments, with all except Mixture I reaching 22cm in root length. Rooting potential ranking was variable with establishment stage, being PR > KB > TF in early stage, PR > TF > KB in middle stage and TF > PR > KB in late stage. At the end of the study, TF was rated best for rooting development, followed by PR and finally KB. Our results showed that TF was the best species in regard to overall rooting characteristics. TF exhibited excellent rooting development with time after establishment. Bunch-type PR showed fast root growth in the early stage, but rooting quality characteristics decreased with time, especially for rooting development. By contrast, rhizomatous-type KB was poor in early-stage root growth, but rooting characteristics improved with time after establishment. These variations in rooting characteristics among CSGs were considered to arise from differences in establishment vigor, growth habit and genetic characteristics. Information on root growth, rooting potential and rooting development by establishment stages will be useful for sports turf design, construction and maintenance.

고등식물의 생장에 미치는 납의 영향

  • Park, Jong-Beom
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2007.05a
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    • pp.465-467
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    • 2007
  • 애기장대에 납을 농도별로 처리하였을 때 식물의 생장과 종자 발아에 미치는 영향을 조사하였다. 환경부고시 오염물질 배출기준치를 기준 농도로 하고 이보다 10배 및 50배 높은 농도의 납을 각각 처리한 애기장대의 줄기생장을 조사한 결과 오염물질 배출기준 농도와 이보다 10배 높은 농도에서는 줄기 생장이 정상식물보다 약 18%정도 감소되었다. 또한 오염물질 배출기준 농도보다 50배 높은 농도를 처리한 식물에서는 정상식물보다 약 41% 줄기생장이 감소하였다. 3가지 농도의 납을 애기장대에 처리한 후 식물의 뿌리 생장을 조사한 결과 오염물질 배출기준농도를 처리한 식물의 뿌리 생장은 정상식물과 거의 유사하였으나 오염물질 배출기준농도의 10배 이상이 되면 뿌리 생장이 전혀 되지 않았다. 3가지 농도의 납을 처리한 배지에서 애기장대의 종자 발아율을 측정한 결과 오염물질 배출기준 농도와 이보다 10배 높은 농도를 처리한 배지에서는 종자 발아율이 100%로 나타나 정상배지에서의 발아율과 차이가 나타나지 않았으나 오염물질 배출기준 농도보다 50배 높은 농도를 처리한 배지에서는 발아율이 0%로 나타나 종자 발아가 전혀 되지 않았다. 이러한 결과는 토양 속에 침적된 납은 애기장대의 생장과 종자 발아에 영향을 미치어 줄기 및 뿌리의 생장을 감소시켰으며, 또한 종자 발아에도 매우 치명적인 영향을 미치는 것으로 생각된다.

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카드뮴 농도에 따른 애기장대의 생장반응

  • Park, Jong-Beom
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2006.05a
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    • pp.411-413
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    • 2006
  • 애기장대에 카드뮴을 5가지 농도(1, 5, 15, 30, 50 mg/L)로 처리하였을 때 식물의 생장에 미치는 영향을 조사하였다. 환경부고시 오염물질 배출기준농도(0.1 mg/L)의 50배 높은 카드뮴농도로 처리한 식물의 줄기 생장은 정상식물보다 어느 정도 촉진되었으나,오염물질 배출기준농도의 150배 이상의 높은 농도에서는 농도에 비례하여 생장이 감소되었다. 뿌리 생장에서는 줄기 생장과 유사한 경향을 나타냈지만 오염물질 배출기준농도의 50배 이상의 높은 카드뮴농도에서부터 뿌리생장이 점진적으로 감소하였다. 잎 생장에서는 줄기 생장과 비슷한 경향을 나타내어 오염물질 배출기준농도의 50배 높은 카드뮴농도까지는 엽신이 크고 표면적이 증가하여 생장이 정상식물보다 오히려 촉진되었으나 150배 이상의 높은 농도부터는 농도에 비례하여 생장이 감소되었다 카드뮴을 처리한 식물들의 생중량은 줄기와 잎 생장의 결과와 거의 유사한 결과를 나타내었다.

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Production of Hydroxymethylfurfrual by Sesamum indicum L. Root Cultures (참깨 뿌리배양에 의한 hydroxymethylfurfrual 생산)

  • Chun, Jae-An;Lee, Jin-Woo;Yi, Young-Byung;Hong, Seong-Sig;Cho, Kang-Jin;Chung, Chung-Han
    • Journal of Life Science
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    • v.19 no.12
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    • pp.1836-1840
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    • 2009
  • Recently, hydroxymethylfurfrual (HMF) has been highlighted as a key intermediate for the production of liquid biofuels and other valuable compounds. We used sesame roots as a biocatalyst to synthesize HMF using flask cultures. The synthesis of HMF was identified by GC-mass analysis. The highest root growth was observed in cultures with 1.0 mg/l NAA at $30^{\circ}C$, while root growth was not found in those without NAA treatment. When silver nitrate ($AgNO_3$) was added, the root growth was greatest in those treated with 0.5 mg/l $AgNO_3$ and cultured at $30^{\circ}C$. In the case of HMF synthesis, its highest yield was obtained in those treated with 0.5 mg/l NAA at $25^{\circ}C$, but low HMF was detected in those treated without naphthaleneacetic acid (NAA). The addition of $AgNO_$ to the culture medium showed a 8-10% reduction in HMF yield compared to that of the control, indicating its inhibitory effect on the synthesis of HMF. On the whole, an optimal culture temperature for HMF synthesis seemed to be between $25-30^{\circ}C$.

Effects of a Negative-Phototropism Pot on the Seedling Growth of Betula platyphylla var. japonica for the Ecological Revegetation (배광성용기 사용이 생태녹화용 자작나무 유묘 생장에 미치는 영향)

  • Kang, Byoung Youn;Kim, Jae Hwan
    • Ecology and Resilient Infrastructure
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    • v.6 no.4
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    • pp.295-303
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    • 2019
  • This study investigated the effects of various cultivation pots on Betula platyphylla var. japonica seedlings in order to select suitable pots for the production of healthy seedlings for the ecological revegetation. We used six types of the pots natural pot, natural pot with inside 5 mm width root turning bump, natural pot with inside 10 mm width root turning bump, negative-phototropism pot, negative-phototropism pot with inside 5 mm width root turning bump, and negative-phototropism pot with inside 10 mm width root turning bump. As greenhouse cultivation provided a high level of control of irrigation and temperature, the seedlings did not show any significant differences in plant height, number of branches, and diameter at root collar, but showed a significant difference in root growth among the different types of pots. The root growth was best in the negative-phototropism pot. In the negative-phototropism, the roots grew in a vertical shape, while they grew abnormally in a spiral shape in the natural pots. In outdoor cultivation, the growth of seedlings showed significant differences according to container types. The seedlings grown in specially manufactured negative-phototropism pots were most excellent in all of the height, number of branches, diameter at root collar and root growth. As for the seedlings grown in the negative-phototropism pots, their roots grew vertically and thus their rooting was well established after they were transplanted outdoor. A size of less than 5 mm ridge installed in the negative-phototropism was found to be appropriate for the seedling growth. These results showed that the negative-phototropism pot would be best suitable for the growth of Betula platyphylla var. japonica seedlings and for the production of seedling for ecological revegetation.

전동싸리의 생장에 미치는 Al과 Co의 영향

  • 박태규;송승달
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2000.05a
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    • pp.245-246
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    • 2000
  • 콩과식물인 전동싸리를 대상으로 통제된 조건하에서 Al과 Co처리에 따른 식물체의 생장반응과 식물체내 중금속의 축적정도 및 근류의 질소고정 활성의 변화를 조사한 결과 중금속은 Co가 Al보다 높게 축적되었고, 처리 초기에는 지하부를, 장기간 처리시는 광합성 기관의 생장을 억제했는데, Co 처리는 영향이 미약하였으나, Al처리구는 다소 심각한 영향을 주었으며, 생장에 비해 질소고정계의 피해가 현저하였다. 전동싸리는 흡수된 중금속을 뿌리수준에서 조절함으로써 광합성기관으로 이동을 억제하는 중금속에 대한 생장적응을 나타내었다. 결국 전동싸리는 30ppm의 중금속 처리시 뿌리 수준에서 조절함으로써 광합성기관으로 전이를 차단하여 금속에 대한 내성 나타내었고, Al이 Co보다 심각한 영향을 미치는 것으로 나타났다.

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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.

Effect of Northern Root-knot Nematode, Meloidogyne hapla, on Growth of Codonopsis Zanceolata (당근뿌리 혹선충(Meloidogyne hapla)이 더덕(Codonopsis lanceolata)의 생육에 미치는 영향)

  • Jung Do-Chul;Han Sang-Chan
    • The Korean Journal of Soil Zoology
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    • v.8 no.1_2
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    • pp.27-31
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    • 2003
  • This study has been conducted to assess and analyze the damage of Codonopsis lanceolata by differential inoculation levels of Meloidogyne hapla in pot and plot. As the density of M. hapla increased, early growth of C. lanceolata was inhibited 60% in vine and 54% in root. However, growth of C. lanceolata was not remarkably different by density of M. hapla in the plot test. This result may be attribute to low density of M. hapla in the plot.

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Effects of Aluminium on Growth, Chlorophyll Content, ALAD Activity and Anatomy of Root rind Shoot in Azuki Bean (Vigna angularis) Seedlings (Aluminium이 팥(Vigna angularis) 유식물의 생장, 엽록소함량, ALAD활성 및 뿌리와 경엽부의 형태에 미치는 영향)

  • 구서영;홍정희
    • Journal of Environmental Science International
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    • v.5 no.6
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    • pp.813-826
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    • 1996
  • The toxic effects of aluminium (Al) on growth, chlorophyll content, $\delta-aminolevulinic$ acid dehydratase (ALAD) activity and anatomy of root and shoot were investigated in 7-day-old azuki bean (Vigna angularis) seedlings. Significant depressions in root elongation was observed in the low concentrations of Al (50, 100 $\muM)$ and increasing Al concentrations caused a sharp decline of root and shoot growth. The degree of inhibition was dependent upon Al supply. Exposure to 50 $\muM$ Al or more inhibited root elongation within 1 day. In the 50 $\muM$ Al treatments, a recovery of root growth was seen after 7 days exposure. In contrast, lateral root initials was little affected by Al exposure. Al toxicity symptoms and growth responses were more well developed in the roots than in the shoots. Analysis of Al localization in root cells by hematoxylin stAlning showed that Al entered root apices and accumulated in the epidermal and cortical cells immeadiately below the epidermis. There was a good positive correlation between the level of chlorophyll and ALAD activity. Increasing Al concentrations caused a decrease in total chlorophyll contents, accompanied by proportional changes in ALAD activity, suggesting a cootr-dinated reduction of a photosynthetic machinery. Al exerted specific influence on the morphology of root ann shoot. At higher concentrations of Al the roots induced drastic anatomical changes. The epidermal cells were disorganized or destructed while the cortical cells exhibited distortion of cell shape and/or disintegration. The diameter of root and transectional area of cortical cells decreased considerably with Al treatment. In the shoot Al also enhanced reduction of diameter of shoot and cell size. Gross anatomy of leaves treated with Al did not differ significantly from the controls, except for fewer and smaller chloroplast. Our results indicate that toxic effect of Al appear to be manifested primarily in roots and secondarily on shoots, and changes in root morphology are related to changes in the root growth patterns. Results are further discussed in re181ion to the findings in other plant species, and it is concluded that Al causes morphological, structural and, presumably, functional damage to the roots of the species investigated.

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