• Title/Summary/Keyword: Weed germination

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Influence of Moisture, pH, Depth of Burial and Submerged Conditions on Seed Germination and Seedling Emergence of Major Weed Species in Coconut Plantations of Sri Lanka

  • Senarathne, S.H.S.;Sangakkara, U.R.
    • Korean Journal of Weed Science
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    • v.30 no.3
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    • pp.206-214
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    • 2010
  • The laboratory and green house studies evaluated the effect of three different environmental factors on the seed germination, seedling emergence and survival of four major weed species in coconut plantations, Mimosa pudica, Ureana lobata, Panicum maximum and Pennisetum polystachyon. Germination percentage of all the weed species was significantly reduced with increasing soil moisture stress, no germination was observed at -0.9 MPa. Germination of both grass seeds ranged from 8% to 25% and 10% to 45% as moisture stress decreased from -0.4 MPa to 0 MPa, respectively. In contrast, seeds of M. pudica, and U. lobata were moderately tolerant to soil moisture stress and best adapted to moist environment. All the weed species seeds germinated over a wide range of soil pH values with the highest germination occurring at pH 6. In all the species, seedling emergence was declined rapidly with increasing depth with the exception of U. lobata. Seedling emergence significantly declined when the duration of flooding was three days or longer in dicotyledonous weed species and two days or longer in monocotyledonous weeds. This study illustrates the adaptability of these weeds to different environmental conditions which would enable the development of management strategies to reduce their populations below economic threshold levels in coconut plantations.

Germination and Emergence of Major Upland Weeds I. Effects of Media and Low Temperature on Germination of Weeds (주요(主要) 밭잡초종자(雜草種子)의 발아(發芽) 및 출아(出芽)에 관(關)한 연구(硏究) I. 배지(培地) 및 저온처리(低溫處理)가 잡초종자(雜草種子)의 발아(發芽)에 미치는 영향(影響))

  • Woo, I.S.
    • Korean Journal of Weed Science
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    • v.11 no.3
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    • pp.219-223
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    • 1991
  • Effects of media and low temperature on germination of weeds were examined to get basic information for establishing weed control methods. Soil and agar(0.4%) was good media for germination of weeds at laboratory. Germination was improved by placing weed seeds at 5$^{\circ}C$ low temperature for 10-20 days. Germination was improved by storing weed seeds in water absorbed gauge and in vinylbag at 5$^{\circ}C$ low temperature for 30-40 days. Germination was increased by burial of weed seeds at 10cm of soil depth for 30-60 days.

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Assessment of Allelopathic Potential of Some Weed Species on Alfalfa(Medicago sativa L.) Germination and Early Seedling Growth (알팔파 발아와 초기생육에 대한 잡초종의 Allelopathic 잠재성 평가)

  • Chung, I.M.;Miller, D.A.
    • Korean Journal of Weed Science
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    • v.15 no.2
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    • pp.121-130
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    • 1995
  • Greenhouse and laboratory studies were conducted to investigate allelopathic potential of some weed species on alfalfa(Medicago sativa L.) germination and seedling growth. In the comparison between top(leaves+stems) and root extracts, top extract exhibited greater allelopathic effects on alfalfa germination than that of root. The various weed species extract differently responded to alfalfa test species, WL-320, in terms of allelopathic effect. Top and root aqueous extracts of lambsquarter(Chenopodium album L.), giant foxtail(Setaria faberii Herrm.), redroot pigweed (Amaranthus retroflexus L.), velvetleaf(Abutilon theophrasti Medic.), crabgrass(Digitaria sanguinalis L.), canada thistle(Cirsium arvense L.) and prostrate knotweed(Polygonium aviculare L.) significantly inhibited germination, seedling length, weight, vigor, and rate of germination of alfalfa. The regression slopes of various top extracts showed that velvetleaf(b=3.69) extracts were the most inhibitory, while large crabgrass(b=2.39) extracts had the least allelopathic effect on alfalfa germination. Germination, seedling length and weight of alfalfa were inversely proportional to the concentration of dried velvetleaf extracts. Also, more of the toxic effects were observed from the dried extracts compared to the fresh extracts. Residue of velvetleaf inhibited significantly alfalfa emergence and survival percentage compared to the control. The emergence and survival percentage of alfalfa were 44%, 57% at 1.0% residue treatment, respectively. When weed residues were mixed with silica sand with incubation time, velvetleaf residue most inhibited alfalfa growth. The degree of inhibition increased as incubation time increased. An incubation for 72h caused the greatest inhibition of alfalfa growth. These results demonstrate the different allelopathic activity of weed species extracts on alfalfa and suggest that weed may affect alfalfa growth and development through the inhibitory effects of allelochemicals present in weed tissue.

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The Effect of Light on Germination of the Major Weed Seeds in Upland Fields (주요(主要) 밭잡초종자(雜草種子)의 발아(發芽)에 미치는 광(光)의 영향(影響))

  • Woo, I.S.;Choi, K.S.;Pyon, J.Y.
    • Korean Journal of Weed Science
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    • v.10 no.4
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    • pp.305-311
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    • 1990
  • Effects of light on germination of major weeds in upland fields were examined. Most weeds showed light positive response to germination at above 25$^{\circ}C$, but germination percentage was very low at lower temperatures. Red light promoted germination of Amaranthus lividus, Portulaca oleracea, and A. retroflexus, but far-red light inhibited germination. Germination resposnse of A. retroflexus, A. lividus, and P. oleracea showed reversible reaction to red/far-red light, and thus it seemed that phytochrome was involoved in seed germination, Echinochloa crusgali and Eleusine indica showed higher germination percentage under the conditions of continuous illumination of red, white, and bule lights, and thus it was estimated that blue light pigment (HIR, high irradiation reaction) related to long time illumination was involved in germination in addition to phytochrome.

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Effects of Weed Interference and Starter Fertilizer on Subsequent Seed Germination and Vigour of Soybean (Glycine max [L.] Merr.)

  • Mohammadi, G.R.;Amiri, F.
    • Korean Journal of Weed Science
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    • v.32 no.1
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    • pp.17-24
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    • 2012
  • The study was conducted to investigate the effect of weed interference and starter fertilizer on subsequent soybean seed quality at the Agricultural Research Farm and Laboratory of Razi University, Kermanshah, Iran. Two factorial experiment was laid-outon a randomized complete block design with four replications. First factor was starter fertilizer levels (0 and 25 kg $ha^{-1}$) applied in the forms of monoammonium phosphate, the second factor was different weed interference periods consisted of five initial weed-free periods (in which, plots were kept free of weeds for 0, 15, 30, 45 and 60 days after crop emergence (DAE) and then weeds were allowed to grow until harvest) and five initial weed-infested periods (in which, weeds were allowed to grow for 0, 15, 30, 45 and 60DAE, after which the plots were kept free of weeds until harvest). Full season weedy condition reduced 100-seed weight, seed germination percentage and seedling dry weight by 25.9, 13.3 and 22.5%, respectively and increased mean germination time and seed electrical conductivity by 55.8 and 24.3%, respectively as compared with full season weed-free control. However, the traits under study were not significantly influenced when field was kept free of weeds for at least 45 DAE (R1) or weedy condition was continued for less than 30 DAE (V8). There was a significant and negative correlation between weed biomass and seed weight (r = -0.93), so that when weed free condition was less than 45 DAE or weed infested period was continued for at least 30 DAE, soybean plants produced wrinkled and underdeveloped seeds with lower weights and qualities. Moreover, soybean seed quality reduction due to weed interference was more evident when starter fertilizer was applied and weeds interfered with soybean from the beginning of the growing season. Information from the present study is beneficial in soybean seed production systems and where farmers use the harvested seeds for the following planting.

Oxygen Requirement for Germination of Weed Seeds (주요잡초 종자의 발아시 산소 요구도)

  • ;T. Y. Kataoka
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.23 no.2
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    • pp.145-149
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    • 1978
  • This experiments were conducted to find out the physiological characteristics of lowland weed for physiological control. Temperature, moisture, light, oxygen. carbon dioxide and soil texture effect on germination and sprouting of weed seed. But this research was conducted to know the relationship between oxygen concentration and germination on 7 species weed.

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The Allelopathic Effects of Lantana camara on Seed Germination and Growth of Selected Bioassay Species

  • Senarathne, S.H.S.;Fernando, R.D.V.;Sangakkara, U.R.
    • Korean Journal of Weed Science
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    • v.31 no.3
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    • pp.271-278
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    • 2011
  • The allelopathic effects of Lantana camara L. (Family:Verbenaceae) on germination and seedling establishment of some agricultural crops and weed species have been identified. Aqueous extracts of dry leaves and contaminated soil where L. camara is grown were used to verify allelopathic effect on seed germination of five bioassay species; Raphanus sativas, Capsicum annum, Lycopersicum esculantem, Crotalaria juncia and Chromoleana odorata. Fifty seeds from each bioassay species were placed in a petri dish containing leaf extracts or contaminated soil, and seed germination were examined after 3 days. The plant house experiments were carried out to evaluate the impact of L. camara contaminated soil and leaf debris using L. esculantem as the indicator plant. Seed germination of L. esculentem, C. junica and Capsicum annum was significantly inhibited by L. camara contaminated soil. However, the degree of inhibition varied among the bioassay species. The aqueous extract of dry leaves of L. camara was highly phytotoxic and it significantly reduced seed germination of all bioassay species. There was a decline in plant height, leaf area and shoot dry weight of tomato only in early growth stages when grown in L. camara contaminated soils. However, incorporation of leaf debris into soil affected the vegetative growth of tomato in early stages when the leaf debris concentration was increased. Growth recovered at the latter part of the life cycle. On the basis of these results it can be concluded that the allelochemicals in L. camara contaminated soils are harmful to the seed germination of crop species. The adverse effect was present only during the early growth stages and it did not suppress the latter part of the plant growth. These responses are attributed to allelopathic effects which need confirmation under field conditions.

Phytotoxic Effects of Parthenin on Ageratum conyzoides L.

  • Puneet K. Kalia;Bong-Seop;Kil, Bong-Seop
    • Animal cells and systems
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    • v.4 no.4
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    • pp.325-328
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    • 2000
  • Parthenin was extracted from Parthenium hysterophorus L. leaves growing in northern part of India, and its effect was tested on the seed germination parameters and other related characteristics of Ageratum conyzoides L. weed. Parthenin proved phytotoxic to A. conyzoides as most of the studied parameters were inhibited. It may lead to a possible biological eradication of the A. cpnyzoides weed.

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Effects of Alachlor and Pendimethalin on Germination and Growth of Balloon Flower (Platycodon grandiflorum) (알라클로르와 펜디메탈린이 도라지의 발아 및 생육에 미치는 영향)

  • Kim, Jin-Won;Lee, In-Yong;Lee, Jeongran
    • Weed & Turfgrass Science
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    • v.7 no.1
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    • pp.72-75
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    • 2018
  • Balloon flower (Platycodon grandiflorum) is one of minor crops in Korea. Only four ACCase inhibiting herbicides are registered for P. grandiflorum and the farmers usually use general but unregistered herbicides which can cause critical phytotoxicity. So, this study was conducted to investigate effects of alachlor and pendimethalin on germination and early growth of P. grandiflorum. To evaluate the effect of alachlor and pendimethalin, two herbicides were treated to the seeds in petri-dish and soil. In the petri-dish, alachlor completely inhibited the germination as well as pendimethalin inhibited the germination slightly but not significantly. In case of soil application, alachlor inhibited germination and plant height of P. grandiflorum significantly as well as pendimethalin inhibited plant height and root length significantly. We showed the possibility of phytotoxicity of alachlor and pendimethalin to P. grandiflorum and strongly suggest that two herbicides should not be used to the cultivation of P. grandiflorum. Unregistered herbicides should not be used for weed management and additional researches for screening of safe herbicide to minor crops should be conducted as soon as possible.

Effects of Several Chemicals and Burial of Seeds into the Soil on Dormancy-breaking of Weed Species (잡초(雜草) 종자(種子)의 휴면타파(休眠打破)에 대한 화학물질(化學物質)과 토양(土壤) 내(內) 종자매몰(種子埋沒)의 효과(效果))

  • Shim, S.I.;Lee, S.G.;Kang, B.H.
    • Korean Journal of Weed Science
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    • v.18 no.4
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    • pp.295-303
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    • 1998
  • The seed dormancy is one of the peculiar characteristics of a number of weed species and it makes difficulties in weed control. To clarify the mechanism of seed dormancy, several chemicals such as $KNO_3$, KOH, thiourea, and $H_2O_2$ and phytohormone($GA_3$) were treated to dormant seeds. Among the species treated with several chemicals, the germination percentages of Setaria glauca, Ambrosia trifida and Ranunculus sceleratus were increased with $KNO_3$ and those of S. glauca, R sceleratus were increased with thiourea. Hydrogen peroxide promoted the germination of Setaria viridis and S. glauca. Germination percentages of S. viridis, S. glauca and Cyperus saraguinolentus were increased with enzyme treatment using pectinase. GA treatment enhanced the geim.ination of Eleusine indica and R sceleratus but the other species were affected slightly. Especially. E. indica showed linearity in the relationship between germination percentage and GA concentration. So, It seemed that E. indica can be used as a bioassy material for GA. Considering the phenological habits of weed species, the seeds were buried under soil for long time(more than 1 month) over winter. When seeds were buried in soil, the degree of dormancy was drastically decreased. Especially, germination of seeds buried were increased under alternating temperature. The germination rates of Persicaria ssp. and Chenopodium ssp. were increased by 50% order alternating temperature after burial for seven weeks.

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