• 제목/요약/키워드: indole-3-butyric acid

검색결과 89건 처리시간 0.018초

Somatic Embryogenesis in Withania somnifera (L.) Dunal

  • Rani, Gita;Virk, Gurdip Singh;Nagpal, Avinash
    • Journal of Plant Biotechnology
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    • 제6권2호
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    • pp.113-118
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    • 2004
  • Somatic embryos were formed from calli obtained from axillary shoots (raised from nodal segments of glasshouse-grown plants under aseptic conditions), internodal segments (from in vitro-raised plants), and root and coty-ledonary leaf segments (from in vitro-raised seedlings) after 8 weeks of initial culture. Embryo formation was the highest (97.33%) from cotyledonary leaf callus on Mura-shige and Skoog's (MS) medium containing kinetin (KN) (3 mg/L). Somatic embryo induction was lesser with different combinations of auxins while it increased to 100% in internodal segment and cotyledonary leaf calli with 6-benzyladenine (BA) (2mg/L) along with 2,3,5-triiodobenzoic acid (TIBA) (2mg/L). The shoots were induced from somatic embryos raised from root, coty-ledonary leaf and internodal segment calli grown on MS medium containing BA in combination with indole-3-acetic acid (IAA). Maximum of 66.67% cultures formed shoots on MS medium containing BA (1mg/L) in combination with IAA (2mg/L). The shoots raised from somatic embryos were rooted on MS medium supplemented with indole-3-butyric acid (IBA) (2mg/L). The plantlets transferred to the field showed 70% survival rate after one year.

High Frequency Induction of Multiple Shoots from Nodal Explants of Vitex negundo L. Using Sodium Sulphate

  • Chandramu C.;Rao D. Manohar;Reddy V. Dashavantha
    • Journal of Plant Biotechnology
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    • 제5권2호
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    • pp.107-113
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    • 2003
  • The effect of sodium sulphate on shoot induction and multiple shoot formation from nodal explants of Vitex negundo L. was tested on Murashige and Skoog's (MS) medium fortified with different auxins, cytokinins and sucrose. Highest percentage $(97.78\%)$ of explants for shoot induction and multiple shoot (20.68/explant) production were observed in the combination treatment of $N^6-Benzyl$ adenine (BA) $(17.80\;{\mu}M/L)$, ${\alpha}-Naphthalene$ acetic acid (NAA) $(2.15\;{\mu}M/L)$ and $5\%$ sucrose supplemented with 100 mg/L sodium sulphate. In vitro raised shoots were rooted on the half-strength MS medium fortified with different concentrations of NAA, Indole-3-acetic acid (IAA), and Indole-3-butyric acid (IBA) alone and in combinations. Among the treatments, $4.90\;{\mu}M/L$ of IBA was found most effective $(95.56\%)$ in inducing roots. The rooted plantlets were shifted to glasshouse for acclimatization and later transferred to the field with cent percent survival. Furthermore, in vitro flowering was observed in the shoots cultured on MS medium supplemented with BA $(8.90\;{mu}M/L)$ and NAA $(1.61\;{\mu}M/L)$.

삽수(揷穗)의 클론, 모수령(母樹齡), 채취부위(採取部位) 및 발근촉진제(發根促進劑)가 낙엽송(落葉松)(Larix leptolepis S. et Z. Gordon)의 삽목발근(揷木發根)에 미치는 영향(影響) (Effects of Clones, Ortet Age, Crown Position, and Rooting Substance upon the Rooting of Cuttings of Japanese Larch (Larix leptolepis S. et Z. Gordon))

  • 정덕영;이경준
    • 한국산림과학회지
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    • 제83권2호
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    • pp.205-210
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    • 1994
  • 본 연구는 채종원에서 개화결실이 부진한 낙엽송 (Larix leptolepis S. et Z. Gordon)의 삽목증식법을 개발하기 위하여, 삽수의 모수령, 채취부위, 클론 및 발근촉진제가 삽목 발근에 미치는 영향을 구명하고저 실시하였다. 2, 8, 16, 30년생 모수에서 7월 하순경 당년에 생장한 삽수를 채취한 후, 발근촉진제인 IBA(Indole Butyric Acid)를 1000, 2000. 5000ppm의 세가지 농도로 5초간 처리하였다. 삽수는 peatmoss, vermiculite, perlite를 1 : 1 : 1 로 배합하여 조제된 온실내 삽목상에 삽목한 후 3개월이 경과된 10월 하순에 발근여부를 조사하였다. 발근촉진제 무처리의 경우 발근율은 2년생에서 52%, 8년생에서 48%, 16년생에서 36%, 30년생에서 20%인 반면, IBA 1000ppm 처리시 가장 높은 발근율을 얻었는데 2년생 80%, 8년생 71%, 16년생 52%, 30년생 25%로 발근율이 향상되었으며, 부정근의 수와 주근의 길이가 모수령이 낮을수록 증가하였으며, IBA 처리로도 증가하였다. 시기별 생존율은 삽목후 15-45일 사이에 현저히 감소한 반면, 그 후에는 생존율이 거의 감소하지 않았으며, IBA 처리로 생존율이 향상되었다. 모수의 클론별 발근율 조사는 8년생 모수를 사용하였는데, IBA 1000ppm 처리시 강원 49호에서 40%로 저조한 반면, 충남 6, 7호와 전북 1, 9호는 67%로 가장 커서 클론간에 발근율이 차이가 있었다. 삽수의 채취부위에 따른 위치효과는 수관 상부에서 채취한 삽수가 IBA 처리시 발근율이 평균 53%로 가장 낮았으며, 수관 하부가 56%, 수관 중부는 60%의 순으로 발근율이 증가되었다.

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Efficient and Reliable in vitro Regeneration System for Rubus Species as the Basis of Genetic Engineering

  • Kalai Katalin;Meszaros Annamaria;Denes Ferenc;Zatyko Jozsef;Balazs Ervin
    • Journal of Plant Biotechnology
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    • 제7권4호
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    • pp.241-246
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    • 2005
  • Factors affecting regeneration of different Rubus varieties (blackberry, raspberry and their hybrid) were examined and a reliable regeneration system was established. Media for stock plant maintenance were tested; different explants and media were investigated to find the best circumstances for the regeneration. The effect of the commonly used antibiotics was studied to determine the most suitable one for selection of the transformants. We found that both MS and LS media supplemented by $20\;gL^{-1}$ sucrose are suitable for the stock plant maintenance. The optimal hormone content for the stock plants is $0.125\;mgL^{-1}$ 6-benzylaminopurine (BAP) with $0.01\;mgL^{-1}$ indole-3- butyric acid (IBA). The highest regeneration rate was observed on medium containing MS salts with B5 vitamins complemented with glucose, sucrose, maltose, $10\;gL^{-1}$ each, supplemented with benzylaminopurine riboside (BAR) ($2\;mgL^{-1}$) and indole-3-acetic acid (IAA) ($0.1\;mgL^{-1}$). The regenerated shoots appeared directly from the cut edges, without callus phase. Hygromycin and geneticin proved to be good selection agents for the Rubus explants, but due to their severe effect on the tissues we propose to use marker-free constructions for the transformation.

An Improved Method of Organogenesis from Cotyledon Callus of Acacia sinuata (Lour.) Merr. using Thidiazuron

  • Shahzad Anwar;Ahmad Naseem;Anis Mohammad
    • Journal of Plant Biotechnology
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    • 제8권1호
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    • pp.15-19
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    • 2006
  • An efficient protocol for in vitro multiple shoot bud induction and plant regeneration from mature green cotyledon derived callus tissues of Acacia sinuata has been developed. Callus formation occurs at all the concentrations of thidiazuron (TDZ) in Murashige and Skoog's (MS) medium, but 0.6 ${\mu}M$ proved to be the best with maximum callus formation frequency. Supplementation of TDZ in combination with indole-acetic acid (IAA) in MS media accelerates shoot bud organogenesis in differentiating callus tissues with 60-70% conversion of shoot buds into shoot Most efficient shoot organogenesis was recorded when TDZ induced calli were subcultured at different concentrations of 6-benzyla-denine (BA). Optimum shoot bud induction and plant regeneration from callus was achieved when 0.6 ${\mu}M$ (TDZ) induced calli were subcultured at 3.0 ${\mu}M$ (BA) where $16.6{\pm}0.74$ shoots/unit callus on obtained. Rooting in in vitro differentiated shoots was achieved when transferred to medium containing different concentration of indole-3-butyric acid (IBA) in full & half strength MS medium. The well rooted plantlets were hardened and transferred to net house with 90% survival rate.

Rapid Propagation of Pelagonium Inquinans Via Organogenesis from Mature Leaf Explants

  • Hwang, Sung-Jin
    • 한국약용작물학회지
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    • 제14권2호
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    • pp.92-95
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    • 2006
  • A method for plant regeneration via organogenesis from Pelagonium inquinans leaf disc has been developed. Mature leaf explants were collected from field-grown plants and used for the induction of adventitious shoot regeneration on Murashige and Skoog (MS) medium supplemented with 3% (w/v) sucrose plus plant growth regulators. Maximum shoot organogenesis, with $11.8{\pm}1.5$ shoots (98.6%) per leaf disc, was obtained with $2\;mg/l$ $N^6-benzyladenine$ (BA) and $0.5\;mg/l$ ${\alpha}-naphthyleneacetic$ acid (NAA) in 30 days. For rooting, the in vitro proliferated and elongated shoots were excised into 1.5-2 cm in length microcutting, which were plated individually on an half-strength MS (1/2MS) medium supplemented with 2% (w/v) sucrose plus various concentrations of indole-3-butyric acid (IBA). Shoots rooted with a frequency of 100% following culture on 1/2MS medium containing $0.5\;mg/l$ IBA.

Synthesis and Characterization of New Dihydroindolo[3,2-b]indole and 5,6-Bis(octyloxy)-4,7-di(thiophen-2-yl)benzo[c][1,2,5]thiadiazole-Based Polymer for Bulk Heterojunction Polymer Solar Cells

  • Kranthiraja, Kakaraparthi;Gunasekar, Kumarasamy;Song, Myungkwan;Gal, Yeong-Soon;Lee, Jae Wook;Jin, Sung-Ho
    • Bulletin of the Korean Chemical Society
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    • 제35권5호
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    • pp.1485-1490
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    • 2014
  • We have designed and developed a new ladder type tetrafused ${\pi}$-conjugated building block such as dihydroindolo[3,2-b]indole (DINI) and investigated its role as an electron rich unit. The photovoltaic properties of a new semiconducting ${\pi}$-conjugated polymer, poly[[5,10-bisoctyl-5,10-dihydroindolo[3,2-b]indole-[5,6- bis(octyloxy)-4,7-di(thiophen-2-yl)benzo[c][1,2,5]thiadiazole]], represented by PDINI-OBTC8 are described. The new polymer PDINI-OBTC8 was synthesized in donor-acceptor (D-A) fashion, where fused ${\pi}$-conjugated tetracyclic DINI, and 5,6-bis(octyloxy)-4,7-di(thiophen-2-yl) benzo[c][1,2,5]thiadiazole (OBTC8) were employed as electron rich (donor) and electron deficient (acceptor) moieties, respectively. The conventional bulk heterojunction (BHJ) device structure ITO/PEDOT:PSS/PDINI-OBTC8:PCB71M/LiF/Al was utilized to fabricate polymer solar cells (PSCs), which comprises the blend of PDINI-OBTC8 and [6,6]-phenyl-$C_{71}$-butyric acid methyl ester ($PC_{71}BM$) in BHJ network. A BHJ PSC that contain PDINI-OBTC8 delivered power conversion efficiency (PCE) value of 1.68% with 1 vol% of 1,8-diidooctane (DIO) under the illumination of A.M 1.5G 100 $mW/cm^2$.

A Test of Relative Removal Properties of Various Offensive Odors by Zeolite

  • Adelodun, Adedeji A.;Vellingiri, Kowsalya;Jeon, Byong-Hun;Oh, Jong-Min;Kumar, Sandeep;Kim, Ki-Hyun
    • Asian Journal of Atmospheric Environment
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    • 제11권1호
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    • pp.15-28
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    • 2017
  • The adsorptive removal properties of synthetic A4 zeolite were investigated against a total of 16 offensive odors consisting of reduced sulfur compounds (RSCs), nitrogenous compounds (NCs), volatile fatty acids (VFAs), and phenols/indoles (PnI). Removal of these odors was measured using a laboratory-scale impinger-based adsorption setup containing 25 g of the zeolite bed (flow rate of $100mL\;min^{-1}$). The high est and lowest breakthrough (%) values were shown for PnIs and RSCs, respectively, and the maximum and minimum adsorption capacity (${\mu}g\;g^{-1}$) of the zeolite was observed for the RSCs (range of 0.77-3.4) and PnIs (0.06-0.104), respectively. As a result of sorptive removal by zeolite, a reduction in odor strength, measured as odor intensity (OI), was recorded from the minimum of approximately 0.7 OI units (indole [from 2.4 to 1.6]), skatole [2.2 to 1.4], and p-cresol [5.1 to 4.4]) to the maximum of approximately 4 OI units (methanethiol [11.4 to 7.5], n-valeric acid [10.4 to 6.5], i-butyric acid [7.9 to 4.4], and propionic acid [7.2 to 3.7]). Likewise, when removal was examined in terms of odor activity value (OAV), the extent of reduction was significant (i.e., 1000-fold) in the increasing order of amy acetate, i-butyric acid, phenol, propionic acid, and ammonia.

Tissue-cultured regeneration and ecological values in major bamboo species

  • Sharma, Avinash;Manpoong, Chowlani;Gohain, Anwesha;Pandey, Himanshu;Padu, Gompi;Aku, Hage
    • Journal of Ecology and Environment
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    • 제46권3호
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    • pp.218-242
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    • 2022
  • Background: Promising specific growth regulators are employed in the tissue cultures of various bamboo species. Specific natural hardening mixtures support the acclimatization and adaptation of bamboo under protected cultivation. Results: The growth regulators like 2, 4-Dichlorophenoxyacetic acid (2, 4-D), Naphthaleneacetic Acid (NAA), Thidiazuron (TDZ), 6-Benzylaminopurine (BAP), Kinetin, Gelrite, Benzyl Adenine (BA), Indole Butyric Acid (IBA), Coumarin, Putrescine, Gibberellic acid (GA3), Indole Acetic Acid (IAA) has been widely used for callus induction, root regeneration and imposing plant regeneration in various species of bamboo such as Bambusa spp. and Dendrocalamus spp. Different combinations of growth regulators and phytohormones have been used for regenerating some of the major bamboo species. Natural hardening materials such as cocopeat, vermicompost, perlite, cow dung, farmyard manure, compost, soil, garden soil, and humus soil have been recommended for the acclimatization and adaptation of bamboo species. Standard combinations of growth regulators and hardening mixtures have imposed tissue culture, acclimatization, and adaptation in major bamboo species. Conclusions: Bamboo contributes to soil fertility improvement and stabilization of the environment. Bamboo species are also involved in managing the biogeochemical cycle and have immense potential for carbon sequestration and human use. This paper aims to review the various growth regulators, natural mixtures, and defined media involved in regenerating major bamboo species through in vitro propagation. In addition, the ecological benefits of safeguarding the environment are also briefly discussed.

An Efficient In vitro Propagation of Zanthoxylum piperitum DC.

  • Hwang, Sung-Jin;Hwang, Baik
    • 한국약용작물학회지
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    • 제11권4호
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    • pp.316-320
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    • 2003
  • A protocol is described for rapid multiplication of Zanthoxylum piperitum DC. (Rutaceae), an important aromatic and medicinal plant, through shoot-tip explant cultures. Murashige and Skoog (MS) medium supplemented with various concentrations of N-6-benzyladenine (BA), N-6-benzylaminopurine (BAP) and thidiazuron (TDZ), in single or in combination with ${\alpha}-naphthaleneacetic$ acid (NAA), was used to determine the rate of shoot proliferation. N-6-benzyladenine (BA) used at 0.5mg/l, was the most effective in initiating multiple shoot proliferation at the rate of 23 microshoots per shoot-tip explants after 40 days of culture. Shoot multiplication increased 1.2-fold in each successive subculture. Induction of rooting (98%) was achieved by transferring the shoots to the same basal medium containing 2 mg/l indole-3-butyric acid (IBA). Plantlets went through a hardening phase in a controlled growth chamber, prior to in vivo transfer. These results represented that possible application for the mass production of plantlets through in vitro culture system of Zanthoxylum piperitum DC.