• 제목/요약/키워드: enhanced plant growth

검색결과 513건 처리시간 0.031초

답토양(畓土壤)의 유기물(有機物) 시용효과(施用效果) (The Effect of Agricultural Wastes on Rice Plant Growth)

  • 이상규;박준규
    • Applied Biological Chemistry
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    • 제27권
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    • pp.56-67
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    • 1984
  • As in many other country, the use of organic matter in Korea has long history. Farmers understand the value of organic matter as the source of plant nutrient and soil improving agent in general. Since 50 years ago, the sources of organic matter in paddy soils were compost, rice and barly straw, green manure, animal waste, fish and beancake, etc.. Application of green manures such as vetch and chinese milk vetch showed no significant effect on the yield of brown rice in paddy soil. On the other hand, the effects of compost and rice straw showed more significant on the yield of brown rice in paddy soil. Application of rice straw in rice cultivation is commonly made at different times between harvest, early spring and several weeks before transplanting. Considering the suitable paddy soil for application of rice straw under well to moderately well drained soil, the yield was pronounced more than poorly drained soil. Based on laboratory and field experimants, application of rice straw promoted the decrease of oxidation-reduction potential in well to moderately well drained soil. This results to be enhanced the release of some mineral nutrients,. such as potassium, calcium, silicon, and increase of availability of soil phosphorus. In the field experiments, results obtained from nitrogen fraction on the immobilization-mineralization of the tracer nitrogen applied in paddy soil,the amount and index of organic nitrogen incoporated in soil was more pronounced in rice straw application than control. Rice straw and its transformation products incoporated in the soil, provided the inflow of energy necessary to maintain heterotrophic microbes activities. Rice straw and its transformation products, especially soluble carbohydrate, enhanced the population of free-living heterotrophic $N_2$ - fixing microbes. Moreover, rice straw and its transformation products in paddy soil, enhanced the activities of soil enzymes such as dehydrogenase and urease.

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Enhanced Salt Stress Tolerance in Transgenic Potato Plants Expressing IbMYB1, a Sweet Potato Transcription Factor

  • Cheng, Yu-Jie;Kim, Myoung-Duck;Deng, Xi-Ping;Kwak, Sang-Soo;Chen, Wei
    • Journal of Microbiology and Biotechnology
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    • 제23권12호
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    • pp.1737-1746
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    • 2013
  • IbMYB1, a transcription factor (TF) for R2R3-type MYB TFs, is a key regulator of anthocyanin biosynthesis during storage of sweet potatoes. Anthocyanins provide important antioxidants of nutritional value to humans, and also protect plants from oxidative stress. This study aimed to increase transgenic potatoes' (Solanum tuberosum cv. LongShu No.3) tolerance to environmental stress and enhance their nutritional value. Transgenic potato plants expressing IbMYB1 genes under the control of an oxidative stress-inducible peroxidase (SWPA2) promoter (referred to as SM plants) were successfully generated through Agrobacterium-mediated transformation. Two representative transgenic SM5 and SM12 lines were evaluated for enhanced tolerance to salinity, UV-B rays, and drought conditions. Following treatment of 100 mM NaCl, seedlings of SM5 and SM12 lines showed less root damage and more shoot growth than control lines expressing only an empty vector. Transgenic potato plants in pots treated with 400 mM NaCl showed high amounts of secondary metabolites, including phenols, anthocyanins, and flavonoids, compared with control plants. After treatment of 400 mM NaCl, transgenic potato plants also showed high DDPH radical scavenging activity and high PS II photochemical efficiency compared with the control line. Furthermore, following treatment of NaCl, UV-B, and drought stress, the expression levels of IbMYB1 and several structural genes in the flavonoid biosynthesis such as CHS, DFR, and ANS in transgenic plants were found to be correlated with plant phenotype. The results suggest that enhanced IbMYB1 expression affects secondary metabolism, which leads to improved tolerance ability in transgenic potatoes.

폐광지역 비소오염 토양에 대한 피(Echinochloa crus-galli)를 이용한 보강된 식물상복원공법 (Enhanced Phytoremediation by Echinochloa crus-galli in Arsenic Contaminated Soil in the Vicinity of the Abandoned Mine)

  • 박지연;김주용;이병태;김경웅;이진수
    • 자원환경지질
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    • 제43권2호
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    • pp.101-107
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    • 2010
  • 폐광지역 비소오염 토양에 이용될 식물상복원공법으로서 논에서 쉽게 발견되는 피의 적용가능성을 알아보고자 하였다. 식물을 이용한 토양 정화 공법이 가지는 장기간의 처리시간이 소요된다는 단점을 해결하고자 PSM(phosphate-solubilizing microbes)과 EDTA(ethylenediaminetetraacetic acid)를 처리하여 그 상승효과를 관찰하였다. PSM을 처리한 시험구에서는 식물의 바이오매스가 증가하여 비교 시험구에 비하여 비소재거 효율이 약 16% 정도 증가하였다. EDTA 처리구에서는 토양 내 중금속의 이동성야 증가하여 BF(bioaccumulation factor) 는 증가하였으나, EDTA가 식풀의 성장을 저해해 오히려 제거 효율이 20% 정도 감소하는 결과를 가져왔다. 따라서 식물성복원공법에 PSM 및 EDTA의 처리는 식물의 비소 흡수를 어느 정도 증대시킬 수는 있으나, 특히 EDTA를 처리할 경우에는 처리 시기 및 처리량의 선택에 있어서 식물의 성장을 저해하지 않도록 해야 하며, 지속적인 모니터링이 요구된다는 결과를 얻었다.

Adventitious Root Development and Ginsenoside Production in Panax ginseng, Panax quinquefolium and Panax japonicum

  • Han, Jung-Yeon;Kwon, Yong-Soo;Choi, Yong-Eui
    • Journal of Plant Biotechnology
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    • 제33권2호
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    • pp.147-152
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    • 2006
  • This work was carried out to establish adventitious root culture system in three Panax species (wild-grown P. ginseng, P. quinquefolium, and P. japonicum) to analyze their ginsenoside productivity. Adventitious roots were induced directly from segments of seedlings after cultured on MS(Murashige andSkoog 1962) solid medium containing 3.0 mg/l IBA. Omission of $NH_4NO_3$ from the medium greatly enhanced both the frequency of adventitious root formation and number of roots per explants in all the three Panax species. However, elongation of post-induced adventitious roots was enhanced on medium with $NH_4NO_3$. Two-step culture protocol: $NH_4NO_3$-free medium for first two weeks of culture, followed by $NH_4NO_3$ containing medium for further 4 weeks, greatly enhanced the fresh weight increase of adventitious roots in all the three ginseng species. The fresh weight of adventitious roots was high in P. quinquefolium and low in P. ginseng, followed by P. japonioum regardless of the composition of medium. Pattern and content of ginsenosides in adventitious roots differed among the three Panax species. Total ginsenoside content of adventitious roots in P. quinquefolium, P. ginseng, and p. japonicum was 8.03, 15.7 and 1.2 mg/g dry weight, respectively. Among the three speices, adventitious roots in P. quinquefolium produced hig-hamount of ginsenosides. The pattern of ginsenoside fractions between P. ginseng and P. quinquefolium was similar but the amount of ginsenoside differed between the two, While, in P japonicum, total ginsenoside content was very low and some ginsenosides such as ginsenoside Rb2 and Rf were not detected. Conclusively, we demonstrate that same culture condition was required for induction and elongation of adventitious roots of three ginseng species but growth of adventitious roots and their ginsenoside production were different among them.

The Adaptation of Ginseng Production of Semi-arid Environments The Example of British Columbia, Canada

  • Bailey, W.G.
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1990년도 Proceedings of International Symposium on Korean Ginseng, 1990, Seoul, Korea
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    • pp.155-167
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    • 1990
  • Ginseng Is renowned for both its medicinal and herbal uses and successful cultivation of Panax ginseng in Asia and Panax quinquefolium in North America has until recently taken place in the native geographical ranges of the plants. As a consequence of the potential high capital return and anticipated increases in consumer consumption, commercial cultivation of American ginseng now occurs well outside the native range of the plant in North America. In fact, the region of greatest expansion of cultivation is in the semi-arid interior region of British Columbia, Canada. Linked with this expansion is the potential domination of the ginseng industry by agricultural corporations. In the interior of British Columbia, the native deciduous forest environment of eastern North America is simulated with elevated polypropylene shade and a surface covering of straw mulch. The architecture of these environments is designed to permit maximum machinery usage and to minimize labor requirements. Further, with only a four- years growth cycle, plant densities in the gardens are high. In this hot, semi-arid environment, producers believe they have a competitive advantage over other regions in North America because of the low precipitation rates. This helps to minimize atmospheric humidity such that the conditions for fungal disease development are reduced. If soil moisture level become limited, supplemental water can be provided by irrigation. The nature of the radiation and energy balance regimes of the shade and many environments promotes high soil moisture levels. Also, the modified environment redlines soil heating. This can result in an aerial environment for the plant that is stressful and a rooting zone environment that is suloptimal. The challenge of further refining the man modified environment for enhanced plant growth and health still remains. Keywords Panax ginseng, Panax quinquefolium, cultivation, ginseng production.

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Bacillus ehimensis YJ-37에 의한 채소류 모잘록병의 생물학적 방제 (Biocontrol of Vegetables Damping-off by Bacillis ehimensis YJ-37)

  • 김진호;최용화;강상재;이인구;주길재
    • 생명과학회지
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    • 제12권4호
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    • pp.416-422
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    • 2002
  • B. ehimensis YJ-37은 생육촉진미생물이면서 모잘록병의 생물학적 방제균으로서 관찰되었다 길항균 B. ehimensis YJ-37의 무와 수박의 근권정착밀도는 인공용토에 존재하는 길항균의 평균밀도 $10^4$(cfu/g) 보다 주근과 측근에서 약 1.2~2배 이상의 증가하였다. 길항균 배양액으로 만든 토양미생물제제에 의한 무의 생육촉진은 토양미생물제제 무처리구에 비해 처리구에서 잎면적은 85% 자엽의 길이는 33% 뿌리의 길이는 23% 건조중량은 89% 촉진되었고, 수박의 경우도 무처리구에 비해 처리구에서 잎면적은 63% 자엽의 길이는 27% 뿌리의 길이는 25% 건조중량은 69% 촉진되었다. 토양미생물제제는 채소류 모잘록병균 R. solani AG-4와 P. ultimum 등의 생육을 억제하여 모잘록병을 유발시키지 못하게 하였으며, 생육촉진현상도 동시에 가져왔다.

강우량이 극히 적은 여건에서의 인삼재배의 순응 : 캐나다 브리티쉬 콜롬비아의 실례 (The Adaptation of Ginseng Production of Semi-arid Environments : The Example of British Columbia, Canada)

  • Bailey, W.G.
    • Journal of Ginseng Research
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    • 제14권2호
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    • pp.297-309
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    • 1990
  • Ginseng is renowned for both its medicinal and herbal uses and successful cultivation of Panax ginseng in Asia and Panax Vtiinvtiefolilim in North America has until recently taken place in the native geographical ranges of the plants. As a consequence of the potential high capital return and anticipated increases in consumer consumption, commercial cultivation of American ginseng now occurs well outside the native range of the plant in North America. In fact, the region of greatest expansion of cultivation is in the semi-arid interior region of British Columbia, Canada. Linked with this expansion is the potential domination of the ginseng industry by agricultural corporations. In the interior of British Columbia, the native decidous forest environment of eastern North America is simulated with elevated polypropylene shade and a sllrface covering of straw mulch. The architecture of these environments is designed to permit maximillm machinery useage and to minimize labour requirements. Further, with only a four-year growth cycle, plant densities in the gardens are high. In this hot, semiarid environment, producers believe they have a competitive advantage over other regions in North America because of the low precipitation rates. This helps to minimize atmospheric humidity such that the conditions for fungal disease development are reduced. If soil moisture levels become limited, supplemental water can be provided by irrigation. The nature of the radiation and energy balance regimes of the shade and much environment promotes high soil moistilre levels. Also, the modified environment reduces soil heating. This can result in an aerial environment for the plant that is stressful and a rooting zone environment that is sub-optimal. The challenge of further refining the man modified environment for enhanced plant growth and health still remains.

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LED 광질과 보광시간이 임파첸스의 생육과 개화에 미치는 영향 (Effect of LED Light Quality and Supplemental Time on the Growth and Flowering of Impatiens)

  • 김소희;허유;이한철;강점순
    • 생물환경조절학회지
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    • 제22권3호
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    • pp.214-219
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    • 2013
  • 본 실험은 임파첸스 분화식물의 생장과 개화에 LED 광질과 효과 적정 처리 시간을 구명하기 위해 수행되었다. 임파첸스의 초장은 2.50cm로 청색광에 의해 촉진되었으며 대조구에 비해 0.6cm의 차이를 보였다. 절간수, 뿌리길이, 분지수, 직경은 보광시간이나 광질에 영향을 받지 않았다. 엽면적은 412.81$cm^2$의 대조구에 비해 광질처리 시 626.64~784.53$cm^2$로 증가하였다. 광질처리에 의해 화아수와 개화수는 감소하는 경향을 보였다. 그러나 개화소요일수는 광질처리에 의해 단축되어 개화를 촉진하였으며 적색광에서 좋았다. 엽록소 함량은 광질처리에 의해 크게 영향을 받지 않았으나, 안토시아닌 함량은 전반적으로 일몰 후 4시간의 청색광에서 증가하였다. 광질처리는 청색광 처리에서 생체중과 건물중이 향상되었다.

국내에서 수집된 주요 왕포아풀(Poa pratensis L.)의 생육 특성 (Growth Characteristics of Korean Native Kentucky Bluegrass(Poa pratensis L.) Ecotypes)

  • 심상렬;정대영;안병준;김재환
    • 한국환경복원기술학회지
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    • 제13권1호
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    • pp.69-81
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    • 2010
  • The purpose of this study is to analyze the growth characteristics of native Kentucky bluegrass (Poa pratensis L.) collected in Korea. Out of Kentucky bluegrasses collected in 2000 and 2008, eight ecotypes ("Pyengchang," "Gongju," "Inje," "Donggang," "Hwasun," "Pureundle," "Cheongsong," and "Geumsan") were planted in experimental fields and pots on May 11, 2008 and May 3, 2009, respectively, for analyzing their growth characteristics. Data such as visual quality (1-9), visual density (1-9), visual color (1-9), plant height, leaf length and leaf width were analyzed. The visual quality of "Pyengchang," "Inje" and "Gongju" were enhanced compared to the rest native ecotypes of Kentucky bluegrass. "Pyengchang" showed the best visual density while "Gongju" and "Inje" showed almost evenly favorable density. However, "Pureundle," "Cheongsong," and "Geumsan" represented loose density due to the damage from the summer climate of high temperature and humidity in 2009. As for visual color, "Pyengchang" was also ranked first, maintaining high values of at least 7.6 even in the summer climate of high temperature and humidity. "Donggang" showed good color immediately after planting in the experimental field in 2008, however, undesirable color due to the damage from the summer climate of high temperature and humidity in 2009.

Overexpression of PgSQS1 Increases Ginsenoside Production and Negatively Affects Ginseng Growth Rate in Panax ginseng

  • Shim, Ju-Sun;Lee, Ok-Ran;Kim, Yu-Jin;Lee, Jung-Hye;Kim, Ju-Han;Jung, Dae-Young;In, Jun-Gyo;Lee, Beom-Soo;Yang, Deok-Chun
    • Journal of Ginseng Research
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    • 제34권2호
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    • pp.98-103
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    • 2010
  • The medicinal plant Panax ginseng (P. ginseng) contains various phytosterols and bioactive triterpene saponins (ginsenosides). Squalene synthase catalyzes the first committed step in ginsenoside biosynthesis. Transgenic plants of P. ginseng were generated by introducing the squalene synthase gene derived from P. ginseng. Adventitious roots of the transgenic ginseng grew best in B5 medium, and 2 g of inoculum secured an optimal growth rate. Two phytohormones, indolebutyric acid and 1-naphtalene acetic acid, increased root growth and decreased ginsenoside production. Treatment with two selected elicitors, chitosan and jasmonic acid, and a precursor of the isoprenoid pathway, mevalonic acid, enhanced ginsenoside production and retarded ginseng growth rate.