• 제목/요약/키워드: Auxin

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담배 (Nicotiana tabacum L. cv. BY-4) 잎절편의 기관분화에 대한 항생제 carbenicillin의 auxin 유사효과 (Auxin-like Effect of the Antibiotic Carbenicillin on Organogenesis of Leaf Discs of Tobacco (Nicotiana tabacum L. cv. BY-4))

  • 배창휴;양덕춘;이효연
    • 식물조직배양학회지
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    • 제27권6호
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    • pp.469-474
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    • 2000
  • Agrobacterium tumefaciens를 매개로 한 형질전환 과정에서 제균제로 사용되고 있는 항생제인 carbenicillin이 담배(Nicotiana tabacum L. cv. BY-4) 잎절편 배양시 기관분화에 미치는 영향을 검토하였다. BAP와 kinetin을 각각 0.5 mg/L 첨가한 MS 배지에 250 mg/L∼2000 mg/L의 carbenicillin을 처리한 배지에서 신초 수는 크게 감소하였다. 또한 carbenicillin을 단독첨가하거나 0.5 mg/L의 2,4-D 또는 NAA와 혼합첨가한 MS 배지에서 250 mg/L∼500mg/L농도의 carbenlcillin은 캘러스 형성을 증가시켰다. 반면 carbenicillin을 0.5 mg/L의 2,4-B, NAA와 각각 혼합첨가한 배지에서 배양 4주째 치상조직의 생중량은 carbenicillin의 농도가 250mg/L에서 2000mg/L로 높아질수록 감소하였다. 이러한 결과는 carbenicillin이 캘러스 형성을 촉진하고 신초형성을 억제하는 auxin과 유사한 효과를 가지고 있다는 것을 시사해 준다. 따라서 담배 잎절편에 Agrobacterium tumefaciens를 매개로 형질전환하고자 할 때 최적 재분화용 식물생장조절제의 농도는 carbenicillin이 제균제뿐만 아니라 auxin 유사효과를 가지는 물질임을 고려하여 결정하여야 한다.

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Involvement of Pyridoxine/Pyridoxamine 5′- Phosphate Oxidase (PDX3) in Ethylene-Induced Auxin Biosynthesis in the Arabidopsis Root

  • Kim, Gyuree;Jang, Sejeong;Yoon, Eun Kyung;Lee, Shin Ae;Dhar, Souvik;Kim, Jinkwon;Lee, Myeong Min;Lim, Jun
    • Molecules and Cells
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    • 제41권12호
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    • pp.1033-1044
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    • 2018
  • As sessile organisms, plants have evolved to adjust their growth and development to environmental changes. It has been well documented that the crosstalk between different plant hormones plays important roles in the coordination of growth and development of the plant. Here, we describe a novel recessive mutant, mildly insensitive to ethylene (mine), which displayed insensitivity to the ethylene precursor, ACC (1-aminocyclopropane-1-carboxylic acid), in the root under the dark-grown conditions. By contrast, mine roots exhibited a normal growth response to exogenous IAA (indole-3-acetic acid). Thus, it appears that the growth responses of mine to ACC and IAA resemble those of weak ethylene insensitive (wei) mutants. To understand the molecular events underlying the crosstalk between ethylene and auxin in the root, we identified the MINE locus and found that the MINE gene encodes the pyridoxine 5′-phosphate (PNP)/pyridoxamine 5′-phosphate (PMP) oxidase, PDX3. Our results revealed that MINE/PDX3 likely plays a role in the conversion of the auxin precursor tryptophan to indole-3-pyruvic acid in the auxin biosynthesis pathway, in which TAA1 (TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS 1) and its related genes (TRYPTOPHAN AMINOTRANSFERASE RELATED 1 and 2; TAR1 and TAR2) are involved. Considering that TAA1 and TARs belong to a subgroup of PLP (pyridoxal-5′-phosphate)-dependent enzymes, we propose that PLP produced by MINE/PDX3 acts as a cofactor in TAA1/TAR-dependent auxin biosynthesis induced by ethylene, which in turn influences the crosstalk between ethylene and auxin in the Arabidopsis root.

Ethylene-Induced Auxin Sensitivity Changes in Petiole Epinasty of Tomato Mutant dgt

  • 장수철;이명숙;이상만;김진석;강빈구
    • Journal of Plant Biology
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    • 제37권3호
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    • pp.257-262
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    • 1994
  • The tomato (Lycopersicon esculentum Mill.) mutant diageotropica (dgt) lacking normal gravitropic response is known to be less sensitive to auxin compared with its isogenic parent VFN8. Straight growth as well as ethylene production in response to added auxin in hypocotyl segments of dgt was negligible. However, there was no significant difference between the two genotypes in auxin transport in petiole segments and its inhibition by the phytotropin N-1-naphthylphthalamic acid(NPA). Kinetic parameters of NPA binding to microsomal membranes were also non-distinguishable between the two. Its petiolar explants treated with ethylene developed epinastic curvature with the magnitude of response increased about 3 folds over non-mutant wild type. Ethylene-induced epinasty in both dgt and VFN8 was nullified by treatment of explants with the ethylene autagonist 2,5-norbonadiene. Lateral transport of 3H-IAA toward the upper side of ethylene-treated petioles in dgt, however, was not significantly more pronounced than in VFN8, the implications being that auxin sensitivity in the mutant was restored, or even rised above the wild type, by ethylene.

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Computational Study on the Binding of Aux/IAA17 and ARF5 Involved in Auxin's Transcriptional Regulation using Molecular Docking

  • Kwon, Sohee;Lee, Gyu Rie;Seok, Chaok
    • EDISON SW 활용 경진대회 논문집
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    • 제6회(2017년)
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    • pp.16-26
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    • 2017
  • Auxin response factor (ARF) and Aux/IAA transcriptional repressor family proteins play a major role in auxin's signalling process. Using the GALAXY protein modelling programs, monomer, dimer and oligomer structures of Aux/IAA17 and ARF5 protein were predicted based on the known experimental structures. By analysing the proposed complex structures, key interacting residues on binding site could be determined, and further suggestions for experimental studies were made.

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Kinetic Analyses of Spermine Effects on Petiole Elongation in Ranunculus sceleratus

  • Chang, Soo-Chul
    • Journal of Plant Biology
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    • 제37권4호
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    • pp.397-402
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    • 1994
  • Possible roles of polyamines in the inhibition of cell elongation in Ranunculus petioles were investigated. Exogenously apoplied polyamines greatly inhibited the auxin-induced petiole growth, while treatment of the tissue with $\alpha$-difluoromethylarginine, the inhibitor of putrescine biosynthesis, further enhanced the growth in the presence of IAA. Inhibitory effect of spermine can also be apparent for fusicoccin-induced elongation, but not for growth induced by a low pH. Spermine also suppressed the ethylene-enhanced growth in the presence of auxin. Using computer-based video digitizer system, the inhibitory effects of spermine on petiole growth were kinetically analyzed. Auxin-induced growth was characterized by an initial and transient growth with a highly elevated rate followed by a steady growth with a slightly reduced rate. Spermine treatment was found to shorten the duration of the initial phase of growth, and to reduce the rates of both the initial and steady growth as well. The latent period for auxin induction was not affected by spermine.

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Auxin Induced Expression of Expansin is Alered in a New Aux1 Allele that Shows Severe Defect in Gravitropic Response

  • Jeong, Hae-Jun;Kwon, Ye-Rim;Oh, Jee-Eun;Kim, Ki-Deok;Lee, Sung-Joon;Hong, Suk-Whan;Lee, Ho-Joung
    • Journal of Applied Biological Chemistry
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    • 제49권4호
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    • pp.148-153
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    • 2006
  • While the underlying molecular mechanism remains to be elucidated, recent studies suggest that polar auxin transport is a key controlling factor in triggering differential growth responses to gravity. Identification of regulatory components in auxin-mediated differential cell expansion would improve our understanding of the gravitropic response. In this study, we identify a mutant designated aux1-like(later changed to aux1), an allele of the aux1 mutant that exhibits a severely disrupted root gravitropic response, but no defects in developmental processes. In Arabidopsis, AUX1 encodes an auxin influx carrier. Since in-depth characterization of the gravitropic response caused by mutations in this gene has been performed previously, we focused on identifying the downstream genes that were differentially expressed compared to wild-type plants. Consistent with the mutant phenotype, the transcription of the auxin-responsive genes IAA17 and GH3 were altered in aux1 plants treated with IAA, 2, 4-D and NAA. In addition, we identified two expansin genes EXP10 and EXPL3 that exhibited different expression in wild-type and mutant plants.

Quercetin이 보리 자엽초에서 옥신에 의해 유도되는 에틸렌 생성에 미치는 영향 (Effect of Quercetin on Auxin-induced Ethylene Production in Barley Coleoptiles)

  • 이준승
    • Journal of Plant Biology
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    • 제35권4호
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    • pp.409-414
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    • 1992
  • Quercetin(3,5,7,3'-4'-OH-flavone)이 보리(Hordeum vulgare var. hexastichon ASCHERS.) 자엽초 조직에서 옥신유발 에틸렌 생성을 현저히 촉진시켰다. $3{\times}10^{-5}\;M$의 quercetin에서 배양한 보리 자엽초 조직에서 옥신 유발 에틸렌 생성은 4시간 이후부터 증가되기 시작하여 8시간 이후에는 200%까지 증가되었다. Quercetin은 내재옥신인 indol-3-acetic acid(IAA)에 의한 에틸렌 생성은 촉진하나 합성 옥신인 2,4-dichlorophenoxyacetic acid(2,4-D)나 naphthaleneacetic acid(NAA)에 의한 에틸렌 생성에는 아무런 영향을 주지 않았다. 또한, 에틸렌 전구체인 1-aminocyclopropen-1-carboxylic acid(ACC) 유발 에틸렌 생성에도 촉진효과가 없었다. 이러한 결과는 에틸렌 생성에 대한 quercetin의 효과는 ACC 전단계에 작용한다는 것을 의미한다. Quercetin이 IAA 대사에 어떠한 영향을 미치는지 확인한 결과 조직을 quercetin에 1시간 배양시켰을 때 조직내 IAA oxidase 효소 활성이 90% 감소되었으며, IAA conjugation에는 별 영향을 미치지 않았다. 따라서, 옥신 유발 에틸렌 생성에 대한 quercetin의 촉진작용은 quercetin이 IAA oxidase의 활성을 억제시켜 높아진 IAA 수준이 옥신 유발 에틸렌 생성을 증가시키는 것으로 생각된다.

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완두 돌연변이체 ageotropum 뿌리의 중력불감성 (Insensitivity of the ageotropum Pea Mutant Roots to Gravity)

  • Kim, Jeong-Im;Bin G. Kang
    • 식물조직배양학회지
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    • 제22권6호
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    • pp.345-350
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    • 1995
  • 완두 돌연변이체 ageotropum 뿌리의 굴중성 결여에 대하여 조사하였다. 정상 완두의 뿌리에서 에틸렌은 굴중성 반응을 억제하였다. 돌연변이체에서는 에틸렌이나 에틸렌 생합성 억제제 또는 작용 억제제 모두 뿌리의 굴중성 반응 결여를 회복시키지 못하였다. 옥신을 비대칭으로 처리한 뿌리에서 굴성반응이 일어나는 것으로 보아 옥신의 작용은 정상적으로 일어나는 것으로 판단되었다. 내생적 또는 옥신유도에 의한 에틸렌 생성은 정상 완두나 돌연변이체에서 크게 차이가 없었다. 그러나 정상 완두에서와는 달리 돌연변이체의 뿌리에서는 굴중성 반응의 작동체계인 옥신작용의 결함이 아니고 중력의 인식 또는 전달과정에 결함이 있다는 결론을 얻었다.

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토마토의 조직배양(組織培養)에 있어 Cytokinin과 Auxin의 영향(影響) (Effect of Cytokinin and Auxin on Tomato Leaf Segment Culture)

  • 이영복;김명원;조성섭
    • 농업과학연구
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    • 제13권2호
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    • pp.168-175
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    • 1986
  • 토마토의 엽육조직(葉肉組織)을 MS배지(培地)에 cytokinin으로 BA를 auxin으로 NAA 와 2, 4-D를 첨가하여 배양하여 다음과 같은 결과(結果)를 얻었다. 1. Cytokinin 인 BA의 단독처리구(單獨處理區)에서도 callus는 형성(形成)되었으며 농도(濃度)가 증가(增加)할수록 생체중(生體重)이나 건물중(乾物重)도 증가(增加)하였다. 2. Auxin 의 일종(一種)인 NAA를 처리(處理)하였을때 callus는 형성(形成)되었으나 BA처리시(處理時)보다 생체중(生體重)이나 건물중(乾物重)은 떨어졌으며 BA와의 혼합처리시(混合處理時)에는 callus의 생육(生育)에 상승적(上昇的) 효과(效果)를 보였다. 그러나 auxin의 농도가 증가하면서 callus의 생육(生育)은 떨어지는 경향(傾向)이었다. 3. 2, 4-D의 처리구(處理區)에 있어서는 NAA의 효과(效果)보다 부진한 결과(結果)로서 특히 농도(濃度)의 증가(增加)에 따른 억제효과(抑制效果)는 컸다. 4. Shoot의 형성(形成)은 BA단독처리구(單獨處理區)에서만 유도되었고, auxin은 shoot 형성(形成)에는 효과(效果)가 없었다. 5. 뿌리의 발생(發生)에 있어 cytokinin은 효과(效果)가 없었고, auxin 중에서도 NAA처리구(處理區)에서만 효과(效果)가 있었으며 저농도에서 양호하였다. NAA와 BA와의 혼합처리(混合處理)의 경우에서도 BA의 농도(濃度)가 증가(增加)됨에 따라 뿌리의 발생(發生)에는 억제적(抑制的) 효과(效果)가 나타났다.

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