• Title/Summary/Keyword: Troublesome weeds

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Ecology of Some Perennial Weeds in Paddy Fields (답 다년생 잡초의 생태에 관한 연구)

  • 양환승;김무기;전재철
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.21 no.1
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    • pp.24-34
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    • 1976
  • The most troublesome perennials in the paddy fields in Korea, such as Cyperus serotinus, Potamogeton Franchetii, Sagittaria pygmaea and Eleocharis Kuroguwai, were studied about shape, aspects of ,germination, depth of development(under flooded and upland conditions), reproduction process and production amount. And these characters were compared with in these perennials.

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Comparison of Growth and Herbicidal Response Characteristics between Water Foxtail(Alopecurus aequalis var. amuriensis) and Blackgrass(Alopecurus myosuroides) for Herbicide Screening (제초제 스크리닝을 위한 뚝새풀과 서양뚝새풀간의 생육력 및 제초반응 비교연구)

  • Kim, J.S.;Kim, T.J.;Shin, W.K.;Kim, K.J.;Cho, K.Y.
    • Korean Journal of Weed Science
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    • v.15 no.3
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    • pp.188-196
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    • 1995
  • Blackgrass and water foxtail are troublesome weeds in a cultivation area of cereals. To know whether water foxtail could substitute for blackgrass as a plant material of screening for the discovery and development of new cereal herbicides, they were compared in a greenhouse and a growth chamber with respect to initial growth characteristics and responses to various herbicides. Blackgrass had a higher germination rate at lower temperature and a higher growth rate at higher temperature as compared to water foxtail. In addition, blackgrass was less sensitive to long day than water foxtail. These results suggest that blackgrass grows better in a cultivation area in spring than water foxtail. As compared to water foxtail, blackgrass showed shightly susceptible responses to herbicides when they were applied to soil surface at one day after seeding. However, the responses to the herbicides of blackgrass and water foxtail were similar with a foliar application of the herbicides at 3 or 4 leaf stage of the plant. Since there were no considerable differences in the herbicidal responses of the two plant species, water foxtail could substitute for blackgrass as a plant material for a primary herbicide screening. When water foxtail was used in a post-emergence screening test, seeding amount of 0.1g/$350cm^2$ and postemergence application of herbicides at 3 to 5 leaf stage were found to be appropriate on the view of alleviating screening efforts in a greenhouse.

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Identification of Streptomyces scopuliridis KR-001 and Its Herbicidal Characteristics (Streptomyces scopuliridis KR-001의 분리 동정 및 잡초 방제효과)

  • Lee, Boyoung;Kim, Jae Deok;Kim, Young Sook;Ko, Young Kwan;Yon, Gyu Hwan;Kim, Chang-Jin;Koo, Suk Jin;Choi, Jung Sup
    • Weed & Turfgrass Science
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    • v.2 no.1
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    • pp.38-46
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    • 2013
  • With increasing environmental issues from synthetic chemical herbicides, microbe-originated herbicides could be a fascinating alternative in current agriculture. We isolated Streptomyces strains that produced herbicidal active metabolite(s) against a grass weed Digitaria sanguinalis. According to the result from 16S rDNA sequence comparison with the close strains, the best isolate (Code name MS-80673) was identified as Streptomyces scopuliridis KR-001. The closest type strain was Streptomyces scopuliridis RB72 which was previously reported as a bacteriocin producer. The optimal culture condition of S. scopuliridis KR-001 was $28^{\circ}C$, pH 7.0 and culture period 4 to7 days. Both of soil and foliar application of the crude culture broth concentrate was effective on several troublesome or noxious weed species such as a Sciyos angulatus in a greenhouse and field condition. Phytotoxic symptoms of the culture broth concentrate of S. scopuliridis KR-001 by foliar application were wilting and burndown of leaves, and stems followed by discoloration and finally plant death. In crops such as rice, wheat, barley, hot pepper and tomato, growth inhibition was observed. These results suggest that the new S. scopuliridis KR-001 strain producing herbicidal metabolites may be a new bio-herbicide candidate and/or may provide a new lead molecule for a more efficient herbicide.