• 제목/요약/키워드: Rooting media

검색결과 129건 처리시간 0.021초

생체반응기에서 수확한 지황 신초의 발근과 순화 (Rooting and Acclimatization of Shoots Harvested from Bioreactor Culture in Rehmania glutinosa)

  • 고은정;채영암
    • 한국작물학회지
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    • 제47권3호
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    • pp.186-188
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    • 2002
  • 생물반응기에서 배양 수확한 신초의 발근과 순화조건을 알기 위하여 실험한 결과는 다음과 같다. 배양배지는 MS 기본배지의 농도를 반으로 줄이고 아가 농도를 1.2%로 하는 것이 신초의 발근과 순화에 유리하였다. 여과막이 부착된 배양병에서 신초를 생육시키는 것이 밀폐된 배양병에서 생육시킨 것보다 생육이 양호하고 생존율도 높았다. 배지에 paclobutrazol을 0.3-0.4mg/l로 처리한 경우 신초의 발근과 생육이 양호하였다.

장미의 삽목발근에 미치는 삽목용토의 영향 (Effect of Rooting Media on Rooting and Root Growth of Rose Cuttings)

  • 최병진;상채규;최은주;노설아
    • 원예과학기술지
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    • 제18권6호
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    • pp.819-822
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    • 2000
  • 장미의 양액재배 및 상자재배시 필수적인 우량 삽목묘의 육성을 위하여 장미의 삽목발근에 미치는 삽목용토의 영향을 실험한 결과, 품종에 따라 다소간의 차이는 있었지만 피트모스와 대립 버미큘라이트 1:2의 혼합용토에서 발근이 가장 양호한 경향을 보여 대부분의 품종에서 100%의 발근율을 보였으며 'Little Mable'과 'Suplesse'도 95% 이상의 발근율을 보였다. 또한 뿌리의 생육상태를 조사한 결과, 뿌리의 수, 무게 및 직경 등도 피트모스와 대립 버미큘라이트 1:2혼합토에서 생육이 가장 양호한 경향을 보였으나 뿌리의 길이는 피트모스와 대립 펄라이트 1:2 혼합토에서 가장 긴 경향을 보였다.

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관상식물 삽목발근에 있어서 NAA, IBA 및 Ethychlozate의 발근촉진효과와 그 생리학적연구 (The Promotive Effect of NAA, IBA and Ethychlozate on Rooting Cuttings of Certain Ornamental Plants and Some Physiological Studies.)

  • 정해준;곽병화
    • 자연과학논문집
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    • 제1권
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    • pp.115-198
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    • 1987
  • The present studies were undertaken to elucidate the influence of auxins, auxin-like substance-ethychlozate ("Figaron"),and pH and sort of rooting media on rooted propagation of certainornamental woody plant cuttings, and to see possible changes in internal compositions characterizing after root-promoting treatment as the cutting stage proceeded. The experimental check-up srevealed and summarized as seen in the following;I. Effect of three different auxin treatments on rooting cuttings: 1) Promotive influence of auxin varied according to different concentration levels, hours of dipping treatment of the auxins, and kind of plants. The greatest effect was obtained for Forsythia ksreana with NAA and IBA, for Ligustrurn obtusifolium var. variegatum with NAA and ethychlozate, for Hydrangea macrophylla, Magnolia kobus, and Magnolia liliflora with NAA, lBA and ethychlozate also. The most effective level of the promotive agents was found 200mg/l for NAA, 1000mg/l for IBA, and 200mg/l for ethychlozate. For Weigela florida and Gardenia jasminoides, range of the most effective level was shown relatively wide spread. 2) NAA was more effective at its optimal level of the rooting agent than ethychiozate for Weigela florida, Viburnum awabuki, Forsythia koreana, Acer palmatum 'Nomura', Bouga invillea glabra, Elaeagnus umbellata, Prunus tomentosa, Ligustrum obtusifolium, Pyracantha coccinea, Cestrum noctu rnum, Hydrangea macrophylla, Codiaeum variegatum, Rhododen dron lateritium, and Ilex crenata var. macrophylla, and yet ethychlozate was found either as equally as effective or more so than NAA for Zebrina pendula, Hibiscus syriacus, Fatshedera lizei, Schefflera arboricola, Campsis grandiflo ra, Ixora chinensis, Euonymus japonica, and Magnolia liliflora. On the contrary, no the auxin effect was noted with Lagerstroemia indica, Trachelospermum asiaticum, and Syringa vulgaris. This probably indicates that these species are genetically different for the auxin response.II. Effect of different pH and sorts of cutting media on rooting cuttings: 1) Bougainvillea showed best in rooting for the number and dry weight at pH 6.5, more with ethychlozate than NAA, while Ligustrum did at pH 5.0 more with NAA than ethychlozate. pH 4.0 medium resulted in the best rooting for Rhododendron with NAA, more than ethychlozate. 2) Use of cutting medium with peat: perlite: vermiculite = 1:1:1 showed to give the greatest rooting percent and dry weight, apart from considering the number of roots. This apparently meant the fact that cutting medium has more to do with root growth than root differentiation. Rhododendron yet showed results with cutting media that use of peat: perlite = 2:1 mixed is more effective on rooting than using peat alone.III. Effect of auxinic treatments on rooting cuttings and change in some cutting compositions: 1) Under the climatic conditions of July having temperature $26.3\pm$$2.4^{\circ}C$for cutting bed, new roots of Magnolia started to show up generally 20 days after the cutting was made, whereas Cestrum did much earlier than that, namely 14 days after. 2) Although total carbohydrate content of Magnolia cuttings showed no marked change without auxin treatment, it did so with the treatment, especially 30 days after the start of cutting. Cestrum cuttings demonstrated a gradual in crease in total carbohydrate content as rooting took place, and the content became reduced more with auxin than with out, just about when rooting proceeded to 14 days after the start of cutting. 3) Magnolia generally showed an increase in total nitrogen content as rooting proceeded more, and Cestrum showed a decrease in total nitrogen of cuttings. The auxin treatment exhibited no pertinent relation with change in plant nitro gen when rooting is promoted with auxin treatment. 4) An abrupt drop of total sugar and reducing sugar was noticed as Magnolia rooting started, and this reduction was parti cularly outstanding with auxin treatment. Starch content also was decreased in the later stage of cutting with auxin treatment, and was rather increased without auxin. Although sugar content soon increased as cutting started with auxin treatment in the case of Cestrum, it became reduced after rooting took place. 5) Total phenol content increased with rooting, and this was especially true when rooting started. This increase was reversed somehow regardless of auxin treatment. A decrease in phenol of Magnolia was found more striking with auxin than without in the later stage of the cutting period. 6)Avena coleoptile test for auxin-like substances presented the physiologically active factor is more in easy-to-root Magnolia liliflora than hard-to-root Magnolia kobus, and the activity of auxin-like substances was much increased with auxin treatment. The increase in the growth promoting substances was markedly pronounced when rooting just started. The active growth substances decreased in the later stage of cutting, and certain inhibitory substances started appearing. Cestrum also showed physiologically similar growth promoting substances accompanying auxin-like active substances if auxin is treated, and some strong inhibitory substances seemed to appear in the later stage of cutting. 7) Mung-bean-rooting test indicated biologically that endogenous growth substances in Magnolia all promoted mung-bean rooting, and activity of the growth substances apparently stimulated mung-bean rooting with auxin more than without. Here auxin treatment seemed to give a rise to an increased activity of endogenous growth substances in cuttings. This activity was found much greater with either NAA or IBA than ethychlozate, and showed its peak of the activity when rooting first started taking place. Certain inhibitory substances for Avena coleoptile growth strongly promoted mung-bean rooting, and it was also much like in the case of Cestrum.

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Effects of Plant Growth Regulators on in vitro Propagation of Echinosophora koreensis Nakai

  • Yi, Jae-Seon;Lee, Hyunseok;An, Chanhoon
    • Journal of Forest and Environmental Science
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    • 제29권4호
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    • pp.275-281
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    • 2013
  • To establish in vitro nodal culture conditions of Echinosophora koreensis Nakai, one of rare and endangered species famous for beautiful flowers in the Korean Peninsula, the influence of plant growth regulators (PGRs) on shooting and rooting from in vitro shoots was investigated. In shoot multiplication, addition of 6-benzylaminopurine (BA) to the half-strength Driver and Kuniyuki's media in the range of 2.22 to 8.88 ${\mu}M $induced 2.5 to 2.7 shoots per axillary bud; and addition of 2.27 ${\mu}M $ thidiazuron (TDZ) produced 3.2 shoots, during 4 weeks of culture, while zeatin and isopentenyl adenine (2ip) were not effective on shoot multiplication as observed from several combination treatments of BA with other PGRs. Shoots established were smaller than 2 cm in length, in most of the treatments. while in BA 8.88 ${\mu}M $ treatment more than 30% of shoots were longer than 2 cm and shorter than 4 cm. In rooting, naphthalene acetic acid (NAA) from 5.37 to 21.48 ${\mu}M $ showed the rooting rate from 40.0 to 62.5%. Indole butyric acid (IBA) addition had little effect on rooting (<10%), although some roots in IBA-containing media were longer than those in NAA. Micropropagation from axillary buds of nodular explants was applicable and promising to multiplication and conservation of Echinosophora koreensis Nakai.

In vitro Root Induction from Shoot Explants of Pear (Pyrus spp.)

  • Jae-Young Song;Jinjoo Bae;Woohyung Lee;Jung-Ro Lee;Mun-Sup Yoon
    • 한국자원식물학회지
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    • 제35권6호
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    • pp.770-777
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    • 2022
  • The main objective of this study was to identify the most appropriate condition for root formation of in vitro micropropagated pear (Pyrus spp.) plants. In vitro propagation was induced on Murashige and Skoog (MS) medium with 2.0 mg/L of N6-benzyladenine (BA) and 0.2 mg/L of Indole-3-butyric acid (IBA) medium. The short pre-treatment of explants with a high concentration (1 mg/L) of NAA and IBA (R0 medium) in dark for three days, followed by transfer to five different media (R1 to R5) resulted in good rooting responses in the pear 'Oharabani (P. pyrifolia × P. communis)' genotype. For the rooting experiments, the highest rooting percentage (83.3 ± 8.3%), average root length (3.6 ± 1.9 mm), total root number (31 ± 4.0), and average root number per plant (2.6 ± 2.1) were obtained on half strength (1/2) of MS medium supplemented with 30 g/L sucrose without hormones and activated charcoal (AC) (R1 medium). The highest rooting percentage was obtained at 83.3% from explants on R1 and R3 media. The rooting procedure described in this study resulted in good root formation and significantly shorting the root induction time to within 14 days of culture. Further studies are underway to test the suitability of the protocol developed in this study for other pear genotypes.

생열귀나무 삽목시 발근과 뿌리생장에 미치는 삽수종류, 생장조절물질 및 상토의 효과 (Effect of cutting type, growth regulators and propagation media on rooting and root growth of on Rosa davurica $P_{ALL}$)

  • 이화영;임정대;김일섭;정일민;유창연
    • 한국자원식물학회지
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    • 제13권2호
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    • pp.140-146
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    • 2000
  • 생열귀나무의 번식에 관한 연구로 숙지, 녹지, 반녹지삽 및 근삽등의 삽목번식체계를 확립하기 위하여 실시된 실험 결과는 다음과 같다. 1. 생열귀나무의 숙지, 녹지, 반녹지삽으로 삽목실험을 한 결과 숙지삽에 대한 결과는 각각의 생장 조절물질 및 상토조건에서 발근이 전혀되지 않았으며 반녹지삽, 녹지삽, 근삽의 순으로 양호한 발근율을 나타내어 생열귀 삽목시 숙지삽이나 반녹지삽을 이용하는 것보다 녹지삽을 채취하거나 근삽을 이용하여 삽목하는 것이 양호하였다. 2.녹지삽의 경우 무처리 식물체가 전혀 발근이 되지 않은 반면 rooton-F를 처리하는 것이 가장 양호한 발근율을 나타내었으며 NAA 처리시는 저농도에서 발근율 및 캘러스형성율이 증가하였고 IAA를 처리한 경우는 고농도일수록 발근율 및 캘러스형성율이 양호하였다. IBA는 IAA, NAA보다는 저조한 결과를 나타냈었다. 3. 녹지삽에서는 vermiculite와 perlite의 혼합토양에 삽목하는 것이 가장 양호한 발근율을 나타내었으며 그 다음으로 점토, 사토 순으로 나타났다. 녹지삽에 rooton-F를 처리하였을 때 근장에 있어서는 사토가 더 우수한 반면 근수는 점토에서 더 우수하여 점토와 사토에서 근수와 근장이 서로 상반된 차이를 보였다. 4. 반녹지삽에 rooton-F를 분의처리한 경우 녹지삽에서 결과가 좋았던 vermiculite+perlite에서는 10%정도만 유기되고 점토에서 양호한 발근효과를 나타내었다.

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생물반응기에서 현삼의 신초 형성과 발근 (Production and Rooting of Shoots in Bioreactor Culture of Scrophularia buergeriana Miquel)

  • 한석훈;채영암
    • 한국약용작물학회지
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    • 제8권2호
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    • pp.117-122
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    • 2000
  • 본 실험은 생물반응기를 이용한 현삼 종묘의 기내생산과 기내 발근에 관여하는 요인을 검토하여 추후 종묘의 건전한 생육과 안정적 생산에 활용할 수 있는 기초자료를 얻고자 실험한 결과는 다음과 같다. 1. 생물반응기에서 현삼 배양은 MS 기본배지의 $NH_4NO$ 양을 1/4 로 줄여 413mg/ l 의 농도로 처리하고 6주간 배양하는 것이 신초의 유도에 유리하였다. 2. 생물반응기 배양시 신초의 형성과 생장에는 $NH_4NO_3$를 413mg/ l로줄인 MS 배지가 유리하였다. 3. 배지량 1.5L 의 생물반응기에서 줄기 절편의 접종량이 300개 이상일 경우 기내 식물체가 과밀화 되어 신초의 생육이 저해되고, 생물반응기 내부 및 배지 위로 노출된 신초는 괴사되었다. 따라서 신초의 생체중이 무거우면서도 신초수를 많게 하기 위해서는 적정 접종량을 300개체로 하는것이 유리하였다. 4. 신초의 발근 수와 길이생장에는 IBA 0.05mg/ l 가 효과적이었다. 5. 생물반응기에서 6주간 배양하는 것이 신초의 생육이 정상적으로 되었으며 또한 이들 신초에서 발근과 뿌리의 발육에도 유리하였다.

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물박달나무 (Betula davurica) 성숙목의 아배양에 의한 기내번식 (Micropropagation of Mature Betula davurica by Bud Cultures)

  • 문지연;문흥규
    • 식물조직배양학회지
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    • 제26권4호
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    • pp.271-274
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    • 1999
  • 아배양을 통한 물박달나무 성숙목의 기내증식은 DKW 배지에서 양호하였다. 이 배지는 다른 두 배지보다 줄기증식 및 줄기생장이 양호하여 물박달나무의 적정 배지로 생각되었다. DKW 배지에서 액아배양과 정아배양에는 큰 차이는 없었으나 증식에는 액아배양이, 생장에는 정아배양이 다소 양호하였다. 한편 1/2 MS 배지에서는 절편기부에 callus가 직경 1.0cm이상 지나치게 형성되어 줄기신장을 억제하였고, WPM에서는 줄기형태는 정상이나 생장이 저조하여 물박달나무의 아배양 배지로는 부적당하였다. 발근은 NAA 처리가 IBA 보다 효과적이었다. l/2 DKW 배지에 1.0 mg/L NAA 처리로 80%의 기내발근 되었으며 유도된 뿌리수도 많았다 얻어진 줄기는 직접 기외삽목도 가능하였는데, 이 같은 결과는 물박달나무 성숙목의 효율적인 기내번식이 가능함을 시사한다.

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In vitro Propagation and Ex vitro Rooting of Tectona grandis (L.f ), APNBV-1 Clone

  • Ramesh, Kommalapati;Chandra, Mouli Kalla;Vijaya, Tartte
    • Journal of Forest and Environmental Science
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    • 제25권2호
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    • pp.119-126
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    • 2009
  • An efficient in vitro plant regeneration system was developed through shoot proliferation from axillary buds of Tectona grandis (L.f), APNBV-1 (Andhra Pradesh North Badrachalam Venkatapuram-1) clone. Multiple shoots of high quality were produced in vitro from axillary bud explants. An average of 4.39 shoots/explant were obtained on Murashige and Skoog's (MS) medium supplemented with plant growth regulators (PGRs) benzyl amino purine (BA), kinetin (KN), indole acetic acid (IAA), gibberillic acid ($GA_3$), growth adjuvants casein hydrolysate (CH), adenine sulphate (Ads) and antioxidants ascorbic acid, polyvinyl pyrrollidine (PVP). Eighty five percent of rooting was observed in ex vitro rooting media containing IBA and vermiculite. In ex vitro rooting, single shoots with 2 to 3 nodes were subjected to IBA of different concentrations at different periods of time intervals. Direct rooting in vermiculite at 500 ppm concentration of IBA resulted in 4.3 number of roots with 2 cm length. Minimum response of rooting and length of roots were recorded at 100 ppm concentration of IBA. Planlets were transferred to plastic bags for short acclimatization stage in green house where they survived at 95%.

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차광 정도와 삽목용토가 골담초와 애기기린초의 삽수 생육에 미치는 영향 (Effect of Shading Degree and Rooting Media on Growth of Cuttings in Caragana sinica (Buc'hoz) Rehder and Sedum middendorffianum Maxim)

  • 김현진;김윤진
    • 한국약용작물학회지
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    • 제23권4호
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    • pp.271-276
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    • 2015
  • This study was conducted to investigate the effect of shading degree and rooting media on the growth of Caragana sinica and Sedum middendorffianum after cutting. In C. sinica, the highest rooting rate was obtained in cuttings planted in horticultural soil (Sunshine Mix #1) and peat moss mixture (peat moss : perlite = 1 : 1, v/v) under one layer of 35% shading and in cuttings planted in kanumatsuchi soil mixture (kanumatsuchi soil : decomposition of granite = 1 : 1, v/v) under non-shading. Whereas, regardless of shading degree, most cuttings of S. middendorffianum rooted in both horticultural soil and peat moss mixture. Cuttings of C. sinica showed the highest root length, 10.4cm in kanumatsuchi soil mixture under one layer of 35% shading but the highest fresh and dry weight of roots in kanumatsuchi soil mixture under non-shading. In S. middendorffianum, the highest root length, fresh and dry weight of root were obtained in cuttings planted in horticultural soil under non-shading. With these results, we recommended that cuttings of C. sinica should be propagated in kanumatsuchi soil mixture under non-shading and cuttings of S. middendorffianum in horticultural soil under non-shading.