• 제목/요약/키워드: Crop growth inhibition

검색결과 224건 처리시간 0.032초

Inhibition Effects of Silver Nanoparticles against Powdery Mildews on Cucumber and Pumpkin

  • Lamsal, Kabir;Kim, Sang-Woo;Jung, Jin-Hee;Kim, Yun-Seok;Kim, Kyoung-Su;Lee, Youn-Su
    • Mycobiology
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    • 제39권1호
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    • pp.26-32
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    • 2011
  • Powdery mildew is one of the most devastating diseases in cucurbits. Crop yield can decline as the disease severity increases. In this study, we evaluated the effect of silver nanoparticles against powdery mildew under different cultivation conditions in vitro and in vivo. Silver nanoparticles (WA-CV-WA13B) at various concentrations were applied before and after disease outbreak in plants to determine antifungal activities. In the field tests, the application of 100 ppm silver nanoparticles showed the highest inhibition rate for both before and after the outbreak of disease on cucumbers and pumpkins. Also, the application of 100 ppm silver nanoparticles showed maximum inhibition for the growth of fungal hyphae and conidial germination in in vivo tests. Scanning electron microscope results indicated that the silver nanoparticles caused detrimental effects on both mycelial growth and conidial germination.

Use of plant growth-promoting rhizobacteria to control stress responses of plant roots

  • Kang, Bin-Goo;Kim, Woo-Taek;Yun, Hye-Sup;Chang, Soo-Chul
    • Plant Biotechnology Reports
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    • 제4권3호
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    • pp.179-183
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    • 2010
  • Ethylene is a key gaseous hormone that controls various physiological processes in plants including growth, senescence, fruit ripening, and responses to abiotic and biotic stresses. In spite of some of these positive effects, the gas usually inhibits plant growth. While chemical fertilizers help plants grow better by providing soil-limited nutrients such as nitrogen and phosphate, overusage often results in growth inhibition by soil contamination and subsequent stress responses in plants. Therefore, controlling ethylene production in plants becomes one of the attractive challenges to increase crop yields. Some soil bacteria among plant growth-promoting rhizobacteria (PGPRs) can stimulate plant growth even under stressful conditions by reducing ethylene levels in plants, hence the term "stress controllers" for these bacteria. Thus, manipulation of relevant genes or gene products might not only help clear polluted soil of contaminants but contribute to elevating the crop productivity. In this article, the beneficial soil bacteria and the mechanisms of reduced ethylene production in plants by stress controllers are discussed.

Allelopathic and Autotoxic Effects of Alfalfa Plant and Soil Extracts

  • Chon, Sang-Uk
    • 한국작물학회지
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    • 제49권1호
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    • pp.7-11
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    • 2004
  • Alfalfa (Medicago sativa L.) plants have been reported to be autotoxic as well as allelopathic. Laboratory and greenhouse experiments through petri-dish and pot test were conducted to determine autotoxic effects of alfalfa leaf and soil extracts on the germination or early seedling growth of alfalfa, and to evaluate allelopathic effects of alfalfa leaf residues on alfalfa, barnyard grass, com, eclipta and soybean. Alfalfa seed germination was delayed depending on aqueous extract concentration, with no difference in final germination after 48 hours. Alfalfa root length was more sensitive to the autotoxic chemicals from leaf extracts than was germination or shoot length. Root growth of alfalfa was significantly inhibited at extract concentration of more than 1 g dry tissue/L (g $\textrm{L}^{-1}$). Hypocotyl growth, however, was not affected by all the concentrations of leaf extracts. Soil extracts from 4-yr-old alfalfa stand significantly reduced alfalfa root length by 66%, while soil extracts from 0,1, and 3yr-old stand stimulated root length up to 14-32% over the control. Residue incorporation with dry matters of alfalfa leaf at 100 g $\textrm{kg}^{-1}$ reduced seedling length of several crop and weed species, ranging from 53 to 87% inhibition. Addition of nutrient solution into alfalfa leaf extracts alleviated alfalfa autotoxic effect. This result indicates alfalfa leaf and soil extracts or residues could exert autotoxic as well as allelopathic substances into soil environments during and after establishment.

고추에서 Napropamide 및 Pendimethalin에 대한 약해요인(藥害要因) 구명(究明) (Determination of Factors Affecting Injury of Pepper Cultivars to Napropamide and Pendimethalin)

  • 김만호;변종영
    • 한국잡초학회지
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    • 제7권3호
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    • pp.321-328
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    • 1987
  • 토양처리(土壤處理) 제초제(除草劑)인 Napropamide와 Pendimethalin을 고추재배(栽培)에 사용(使用)할 때 약해(藥害) 발생요인(發生要因)을 구명(究明)하여 약해(藥害)를 감소(減少)시키는데 필요(必要)한 기초자료(基礎資料)를 조사(調査)하고자 근부침지(根部浸漬)에 따른 고추 품종간(品種間) 생장반응(生長反應)과 토성(土性), 유기물(有機物) 함량(含量), 토양온도(土壤溫度) 및 파종심도(播種深度)에 따른 고추 품종간(品種間) 약해정도(藥害程度)를 비교(比較) 검토(檢討)하였다. 1. Napropamide는 근부침지(根部浸漬)에서 월계관 피만과 오리엔탈 피만의 최상위엽(最上位葉) 생장(生長)이 크게 억제(抑制)되지 않았다. 2. Pendimethalin은 근부침지(根部浸漬)에서 최상위엽(最上位葉) 억제(抑制)가 월계관 피만과 오리엔탈 피만에서 현저히 심했다. 3. Napropamide와 Pendimethalin의 약해(藥害)는 사토(砂土)에서 심하게 나타났으며 특히 피만계통(系統) 품종(品種)에서 더욱 심하였고 양통(壤土)에서 약해(藥害)는 적었다. 4. 유기물(有機物) 함량(含量)이 높을수록 Napropamide와 Pendimethalin의 약해(藥害)는 적은 경향(傾向)이었으며 월계관 피만과 오리엔탈 피만에서는 그 경향(傾向)이 현저하였다. 5 파종심도(播種深度)가 깊으면 Napropamide와 Pendimethalin의 약해(藥害)는 다소(多少) 적은 경향(傾向)이었으며 월계관 피만과 오리엔탈 피만의 고농도(高濃度)에서 그 경향(傾向)은 더욱 뚜렷하였다.

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제초제(除草劑) 약해발생(藥害發生) 양상(樣相)과 경감대책(輕減對策) (Crop Injury (Growth Inhibition) Induced by Herbicides and Remedy to Reduce It)

  • 김길웅
    • 한국잡초학회지
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    • 제12권3호
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    • pp.261-270
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    • 1992
  • Many herbicides that are applied at the soil before weed emergence inhibit plant growth soon after weed germination occurs. Plant growth has been known as an irreversible increase in size as a result of the processes of cell divison and cell enlargement. Herbicides can influence primary growth in which most new plant tissues emerges from meristmatic region by affecting either or both of these processes. Herbicides which have sites of action during interphase($G_1$, S, $G_2$) of cell cycle and cause a subsequent reduction in the observed frequency of mitotic figures can be classified as an inhibitor of mitotic entry. Those herbicides that affect the mitotic sequence(mitosis) by influencing the development of the spindle apparatus or by influencing new cell plate formation should be classified as causing disruption of the mitotic sequence. Sulfonylureas, imidazolinones, chloroacetamides and some others inhibit plant growth by inhibiting the entry of cell into mitosis. The carbamate herbicides asulam, carbetamide, chlorpropham and propham etc. reported to disrupt the mitotic sequence, especially affecting on spindle function, and the dinitroaniline herbicides trifluralin, nitralin, pendimethalin, dinitramine and oryzalin etc. reported to disrupt the mitotic sequence, particularly causing disappearence of microtubles from treated cells due to inhibition of polymerization process. An inhibition of cell enlargement can be made by membrane demage, metabolic changes within cells, or changes in processes necessary for cell yielding. Several herbicides such as diallate, triallate, alachlor, metolachlor and EPTC etc. reported to inhibit cell enlargement, while 2, 4-D has been known to disrupt cell enlargement. One potential danger inherent in the use of soil acting herbicides is that build-up of residues could occur from year to year. In practice, the sort of build-up that would be disastrous is unikely to occur for substances applied at the correct soil concentration. Crop injury caused by soil applied herbicides can be minimized by (1) following the guidance of safe use of herbicides, particularly correct dose at correct time in right crop, (2) by use of safeners which protect crops against injury without protecting any weed ; interactions between herbicides and safeners(antagonists) at target sites do occur probably from the following mechanisms (1) competition for binding site, (2) circumvention of the target site, and (3) compensation of target site, and another mechanism of safener action can be explained by enhancement of glutathione and glutathione related enzyme activity as shown in the protection of rice from pretilachlor injury by safener fenclorim, (3) development of herbicide resistant crops ; development of herbicide-resistant weed biotypes can be explained by either gene pool theory or selection theory which are two most accepted explanations, and on this basis it is likely to develop herbicide-resistant crops of commercial use. Carry-over problems do occur following repeated use of the same herbicide in an extended period of monocropping, and by errors in initial application which lead to accidental and irregular overdosing, and by climatic influence on rates of loss. These problems are usually related to the marked sensitivity of the particular crops to the specific herbicide residues, e.g. wheat/pronamide, barley/napropamid, sugarbeet/ chlorsulfuron, quinclorac/tomato. Relatively-short-residual product, succeeding culture of insensitive crop to specific herbicide, and greater reliance on postemergence herbicide treatments should be alternatives for farmer practices to prevent these problems.

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돼지풀이 작물과 잡초의 초기 생장에 미치는 Allelopathy 효과 (Allelopathic Effects of Common Ragweed (Ambrosia artemisifolia var. elatior) on the Germination and Seedling Growth of Crops and Weeds)

  • 최봉수;송득영;김충국;송범헌;우선희;이철원
    • 한국잡초학회지
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    • 제30권1호
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    • pp.34-42
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    • 2010
  • 돼지풀의 추출물에 의한 잡초의 발아와 토양혼입에 따른 작물 및 잡초의 초기생육을 조사하였다. 돼지풀의 잎 추출물은 줄기 및 뿌리 추출물보다 잡초의 발아를 억제시켰으며, 5%농도에서 돌피, 바랭이 및 금방동사니의 발아율은 각각 23.0, 19.5 및 9.2%로 대조구와 비교하여 각각 68.3, 74.7 및 87.3% 억제되었다. 이러한 경향은 돼지풀의 혼입에 의한 작물과 잡초의 출아율에서도 비슷하게 나타났는데 출아 억제효과는 돌피보다 바랭이와 금방동사니에서 보다 높은 것으로 나타났다. 그러나 돼지풀의 혼입은 콩과 옥수수의 출아에 영향을 미치지 않았다. 돼지풀의 잎 혼입량이 5%까지 증가함에 따라 돌피, 바랭이, 금방동사니의 초장은 대조구와 비교하여 각각 48, 63 및 66% 억제되었다. 돼지풀 혼입에 따른 잡초의 생육으로 돌피, 바랭이 및 금방동사니의 건물중은 대조구와 비교하여 각각 72, 78 및 71% 억제되었다.

Effect of Growth Retardant BX-112 on Growth, Floral Initiation, and Endogenous GA Levels in Sorghum

  • Lee, In-Jung;Kim, Kil-Ung;Page W. Morgan
    • 한국작물학회지
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    • 제43권2호
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    • pp.71-76
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    • 1998
  • To define the relations between endogenous GA levels and growth and flowering in short-day plant sorghum, growth retardant BX-112 was applied to two sorghum genotypes, wild-type and phytochrome B mutant (phyB-1), which grows faster and flowers earlier than the wild-type. BX-112 and $GA_3$ were applied as a soil drench, and plant height, culm length, and date to floral initiation were investigated. Endogenous GAs contents were measured with GC-MS-SIM. BX-112 treatments inhibited shoot growth in both genotypes and drastically reduced $GA_1$ and $GA_8$ levels. With increasing BX-112 concentrations, $GA_1$ concentrations declined linearly, but caused the accumulation of intermediates from $GA_12$ to $GA_20$. This result implies that $GA_1$ is the major active endogenous GA in shoot elongation in a short day plant sorghum. The inhibition of plant growth in both of wild type and phyB-1 by BX-112 was very similar, while BX-112 effects on floral initiation in two types of plants differed significantly. Floral initiation of phyB-1 was not affected by BX-1l2, but that of wild-type was delayed as BX-1l2 concentration increased. Because BX-112 treatment causes accumulation of biosynthetic intermediates between synthetic pathway from $GA_12$ to $GA_20$ and because phyB-1 is altered in GA metabolism in this same region of the early C13-hydroxylation pathway, BX-112 may fail to block flowering of phyB-1.

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생더덕과 발효더덕의 유용생리활성 비교 (Comparison of Biological Activities of Fermented Codonopsis lanceolata and Fresh Codonopsis lanceolata)

  • 김승섭;하지혜;정명훈;안주희;윤원병;박성진;성동호;이현용
    • 한국약용작물학회지
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    • 제17권4호
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    • pp.280-285
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    • 2009
  • Both fresh Codonopsis lanceolata and lactic acid bacteria fermented Codonopsis lanceolata were extracted with water at $100^{\circ}C$, and tested for anticancer activity using several human cancer cell lines. The fermented extracts inhibited the growth of hepatocellular carcinoma cells up to 90%, compared to 75% for fresh Codonopsis lanceolata. The extracts of cytotoxicity on human normal lung cells (HEK293) were as low as 15%. Especially, human hepatocellular carcinoma cell were more efficiently inhibited than other cells. This extract also inhibited $\alpha$-glucosidase activity up to 60% at 1.0mg/$m{\ell}$. This fermented extracts showed the inhibition potency on tyrosinase by 25% at 1.0mg/$m{\ell}$. From the results, the fermented Codonopsis lanceolata enhanced several biological activities up to $20{\sim}30%$, compared to those from fresh Codonopsis lanceolata. It implies that fermentation process could be one of useful methods of utilizing low quality Codonopsis lanceolata. Because this process could yield high amounts of biologically active compounds by the help of microbial growth.

Mesotrione 함유 제초제에 대한 벼 생태형간 약해반응 차이 (Differential Tolerance of Rice Cultivars to Mesotrione-Contained Herbicides)

  • 김상열;이지윤;여운상;오성환;박성태;이종희;정국현;조준현;송유천;강항원
    • 한국잡초학회지
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    • 제30권3호
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    • pp.300-307
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    • 2010
  • 최근에 등록된 mesotrione+pretilachlor(MP) 및 bensulfuron-methyl+mesotrione+pretilachlor+pyriftalid (BMPP)에 대한 벼 생태형간 약해 반응을 조사하기 위해 통일형(장립종) 및 일본형(단립종) 각 3 품종을 표준량과 2배량을 처리하여 온실에서 포트시험한 결과는 다음과 같다. 제초제 MP 및 BMPP에 대한 약해 반응은 벼 생태형에 따라 달랐는데 통일형 품종은 모두 감수성을 보였으나 일본형 벼는 약해가 발생하지 않았다. 통일형 벼는 제초제 처리 후 5일부터 백화증상을 보였고 7일에 약해증상이 뚜렷하였으며 처리 후 14일에는 약해증상이 처리 후 7일 보다 약해지는 경향이었다. 약해정도는 처리농도가 증가할 수록 약해 발생이 심하였다. MP 및 BMPP에 대한 통일형 벼 품종의 초장 억제율은 90g a.i. $ha^{-1}$(표준량)에서 18~43%, 배량에서 30~50% 억제되었고 건물중은 초장보다 억제가 더 커 표준량에서는 46~73%, 배량에서는 65~82%가 억제되었고 억제정도는 농도가 증가할수록 컸다. 하지만 대부분의 일본형 벼는 제초제 2배에서도 약해증상을 보이지 않았으나 초장 및 건물중이 약간 억제 되었다. 벼 생태형별 MP에 대한 50% 생육억제 농도를 조사한 결과, 통일형 벼는 37g a.i. $ha^{-1}$로 일본형 벼의 476g a.i. $ha^{-1}$보다 12.9배나 낮았다. 이상의 결과에서 mesotrione을 함유하고 있는 MP 및 BMPP에 대한 벼 생태형간 반응에 차이가 있고, 초다수형 벼 재배시 초기 잡초 발아전 제초제로서 MP 및 BMPP의 사용을 자제하는 것이 바람직하다.

Medium compositions reveal potential organogenesis in the diploid and tetrploid Codonopsis lanceolata

  • Kwon, Soo Jeong;Hwang, Ha Nule;Moon, Young Ja;Cho, Gab Yeon;Boo, Hee Ock;Lee, Moon Soon;Woo, Sun Hee;Kim, Hag Hyun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.169-169
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    • 2017
  • Medium composition plays a key role on influencing organogenesis in plant tissue culture. This study was carried out to examine the effects of medium composition on organogenesis in diploid and tetraploid Codonopsis lanceolata and obtain in-vitro mass propagation of superior species of C. lanceolata. Diploid C. lanceolata was found to be declined regarding MS medium composition for each concentration. However, shoot and adventitious root formation were suppressed with higher mineral salt concentration, and active growth of shoot and adventitious root was exhibited as 4.9 cm and 3.2 cm respectively in 1/2 MS medium. While in tetraploid C. lanceolata, it showed 2.9 cm and 3.2 cm respectively in 1/4 MS medium. In the case of sucrose concentration, no consistent decrease was observed for growth of shoot and the adventitious root of diploid both at high and low concentration. The growth of shoot (at 3% concentration) and adventitious root (at 7% concentration) was 2.3 cm and 2.0 cm respectively. Although there was no difference in shoot formation of tetraploid C. lanceolata in all concentrations with the range of 1.7~1.8, there was a slight decrease in shoot growth at high concentration. Results revealed that the adventitious root formation was suppressed at high concentration. The concentration of agar exhibited no significant difference in shoot formation of diploid C. lanceolata at all concentrations. The maximum result of adventitious growth (4.1 cm) was observed at 0.8% concentration. Slight inhibition of shoot formation and root formation of tetraploid C. lanceolata was observed at higher concentration. Shoot formation of diploid C. lanceolata also exhibited inhibition at higher concentration. Shoot formation of diploid C. lanceolata was increased at lower pH and shoot growth was the highest (2.3 cm) at pH 3.8. Adventitious root formation was higher at lower pH. However, both the adventitious root formation and growth exhibited comparatively higher result at pH 5.8. Taken together, the levels of pH had an effect on shoot and root formation in diploid and tetraploid of C. lanceolata

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