• 제목/요약/키워드: Endogenous brassinosteroid

검색결과 11건 처리시간 0.009초

일반계 벼의 brassinosteroid활성물질 검색 (Investigation of brassinosteroid substances in the shoots of japonica type Korean rice)

  • 현규환;박근형
    • Applied Biological Chemistry
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    • 제33권4호
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    • pp.307-314
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    • 1990
  • Brassinosteroid는 특이한 생리작용을 갖는 식물의 신 생장조절물질로 주목을 받고 있으나, 아직 우리나라의 가장 중요한 작물인 벼의 brassinosteroid에 대해 연구된 바 없어, 일반계 품종의 벼를 대상으로 brassinosteroid활성물질의 검색을 시도하였다. 동진벼와 영산벼를 최고분얼기까지 재배하여 지상부를 수확하고, 유기용매로 추출하여 얻어진 추출물에서 rice lamina inclination test에 의한 생물검정법으로 활성이 인정되어, 활성본체의 구명과 정제의 목적으로 각각의 활성획분을 silica gel 흡착 chromatography, Sephadex LH-20 chromatography, charcoal 흡착 chromatography, preparative TLC, Bondesil chromatography 그리고 normal, reverse phase의 HPLC 등적 방법으로 분획하여 검정한 결과 2품종 모두 brassinosteroid활성물질을 생산하고 있으며, 또 2품종간의 endogenous brassinosteroid의 유사성이 인정되었다.

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들깨의 brassinosteroid 활성물질 (Brassinosteroid substances in immature Perilla frutescense seeds)

  • 박근형;김선재;현규환
    • Applied Biological Chemistry
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    • 제36권3호
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    • pp.197-202
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    • 1993
  • 들깨에 존재하는 brassinosteroid 활성물질을 탐색하기 위하여 미숙종자를 MeOH로 추출하고, 이 추출물을 rice inclination test를 지표로, 용매 분획, silica gel adsorption chromatography, Sephadex LH-20 chromatography, charcoal adsorption chromatography, Bondesil chromatography 등의 수법으로 brassinosteroid 활성물질을 정제한 다음, silica gel 흡착 chromatography로 활성성분을 분리하고, 각 활성획분에 대해 HPLC에 의해 활성본체를 구명한 결과, main brassinosteroid로 castasterone이 그리고 minor brassinosteroid로 homodolicholide가 최초로 동정되었다. 들깨에 함유된 brassinosteroid의 함량은 brassinolide로 환산하여 생체중량 g당 $0.5{\sim}0.8\;ng$ 수준이었다.

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결명자의 brassinosteroid 활성물질 (Brassinosteroid substances in immature Cassia tora seeds)

  • 박근형;김선재;현규환
    • Applied Biological Chemistry
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    • 제36권2호
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    • pp.99-104
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    • 1993
  • 결명자에 존재하는 brassinosteroid 활성물질을 탐색하기 위하여 미숙종자를 MeOH로 추출하고, 이 추출물을 rice inclination test를 지표로, 용매분획, silica gel adsorption chromatography, Sephadex LH-20 chromatography, charcoal adsorption chromatography, Bondesil chromatography 등의 수법으로 brassinosteroid 활성물질을 정제한 다음, silica gel 흡착 chromatography로 활성성분을 분리하고, 각 활성획분에 대해 TLC 및 $C_{18}$ column과 ODS column을 사용한 HPLC에 의해 활성본체를 구명한 결과, 결명자의 brassinosteroid 활성물질로 최초로 teasterone, castasterone, brassinolide 가 동정되었다. 결명자에 함유된 brassinosteroid의 함량은 brassinolide로 환산하여 생체중량g당 $3.5{\sim}5.5\;ng$ 정도였으며, 동정된 3종의 brassinosteroid는teasterone, castasterone, brassinolide순으로 존재하였다.

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벼종자의 brassinosteroid 활성물질 (Brassinosteroid substances in immature oryza sativa seeds)

  • 박근형;김선재;박종대;이란숙;현규환
    • Applied Biological Chemistry
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    • 제36권5호
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    • pp.376-380
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    • 1993
  • 벼종자에 존재하는 brassinosteroid 활성물질을 탐색하기 위하여 동진벼 미숙종자를 MeOH로 추출하고, 이 추출물을 rice inclination test를 지표로, 용매분획, silica gel adsorption chromatography, Sephadex LH-20 chromatography, charcoal adsorption chromatography 등으로 brassinosteroid 활성물질을 정제한 다음, silica gel 흡착 chromatography로 활성성분을 분리하였다. HPLC에 의해 활성본체를 구명한 결과, castaserone, teasterone, 6-deoxocastasterone이 최초로 동정되었다. 벼종자에 함유된 brassinosteroid 활성물질의 함량은 brassinolide로 환산하여 생체중량 g당 $0.5{\sim}1.5\;ng$ 수준이었다.

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통일계 벼의 Brassinosteroid활성물질 검색 (Investigation of Brassinosteroid substances in the shoots of hybrid type korean rices)

  • 현규환;박근형
    • KSBB Journal
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    • 제6권2호
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    • pp.123-128
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    • 1991
  • The production of bassinosteroid-like substances of two hybrid types of Korean rice, Jangseongbyeo, Taebackbyeo were investigated. The shoots at the maximum tillering stage were extracted and purified by solvent fractionation, silica gel adsorption chromatography Sephadex LH-20 chromatography, charcoal adsorption chromatography, Bondesil chromatography and HPLC of reverse phase, successively. Biological activities of each purification step were monitored by the rice lamina inclination test. Higher activities against the rice lamina inclination test in the each purification step showed that the shoots of two cultivars biosynthesize brassinosteroids. Two cultivars also showed a similar distribution of biological activities of endogenous brassinosteroids detected by HPLC.

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PIF4 Integrates Multiple Environmental and Hormonal Signals for Plant Growth Regulation in Arabidopsis

  • Choi, Hyunmo;Oh, Eunkyoo
    • Molecules and Cells
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    • 제39권8호
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    • pp.587-593
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    • 2016
  • As sessile organisms, plants must be able to adapt to the environment. Plants respond to the environment by adjusting their growth and development, which is mediated by sophisticated signaling networks that integrate multiple environmental and endogenous signals. Recently, increasing evidence has shown that a bHLH transcription factor PIF4 plays a major role in the multiple signal integration for plant growth regulation. PIF4 is a positive regulator in cell elongation and its activity is regulated by various environmental signals, including light and temperature, and hormonal signals, including auxin, gibberellic acid and brassinosteroid, both transcriptionally and post-translationally. Moreover, recent studies have shown that the circadian clock and metabolic status regulate endogenous PIF4 level. The PIF4 transcription factor cooperatively regulates the target genes involved in cell elongation with hormone-regulated transcription factors. Therefore, PIF4 is a key integrator of multiple signaling pathways, which optimizes growth in the environment. This review will discuss our current understanding of the PIF4-mediated signaling networks that control plant growth.

Brassinosteroid의 대사공학 (Metabolic Engineering of the Brassinosteroid Biosynthetic Pathways)

  • 이미옥;송기홍;이현경;정지윤;최빛나리;최성화
    • 한국식물생명공학회:학술대회논문집
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    • 한국식물생명공학회 2002년도 추계학술대회
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    • pp.69-75
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    • 2002
  • Sterols play two major roles in plants: a bulk component in biological membranes and precursors of plant steroid hormones. Physiological effects of plant steroids, brassinosteroids (BRs), include cell elongation, cell division, stress tolerance, and senescence acceleration. Arabidopsis mutants that carry genetic defects in BR biosynthesis or its signaling display characteristic phenotypes, such as short robust inflorescences, dark-green round leaves, and sterility. Currently there are more than 100 dwarf mutants representing 7 genetic loci in Arabidopsis. Mutants of 6 loci, dwf1/dim1/cbb1, cpd/dwf3, dwf4, dwf5, det2/dwf6, dwf7 are rescued by exogenous application of BRs, whereas bri1/dwf2 shares phenotypes with the above 6 loci but are resistant to BRs. These suggest that the 6 loci are defective in BR biosynthesis, and the one locus is in BR signaling. Biochemical analyses, such as intermediate feeding tests, examining the levels of endogenous BR, and molecular cloning of the genes revealed that dwf7, dwf5, and dwf1 are defective in the three consecutive steps of sterol biosynthesis, from episterol to campesterol via 5-dehydroepisterol. Similarly, det2/dwf6, dwf4, and cpd/dwf3 were shown to be blocked in $D^4$ reduction, 22a-hydroxylation, and 23 a-hydroxylation, respectively. A signaling mutant bri1/dwf2 carries mutations in a Leucine-rich repeat receptor kinase. Interestingly, the bri1 mutant was shown to accumulate significant amount of BRs, suggesting that signaling and biosynthesis are dynamically coupled in Arabidopsis. Thus It is likely that transgenic plants over-expressing the rate-limiting step enzyme DWF4 as well as blocking its use by BRI1 could dramatically increase the biosynthetic yield of BRs. When applied industrially, BRs will boost new sector of plant biotechnology because of its potential use as a precursor of human steroid hormones, a novel lead compound for cholesterol-lowering effects, and a various application in plant protection.

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Brassinosteroid의 대사공학 (Metabolic Engineering of the Brassinosteroid Biosynthetic Pathways)

  • 이미옥;송기홍;이현경;정지윤;최빛나리;최성화
    • 한국식물생명공학회:학술대회논문집
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    • 한국식물생명공학회 2002년도 춘계학술대회
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    • pp.69-75
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    • 2002
  • Sterols play two major roles in plants: a bulk component in biological membranes and precursors of plant steroid hormones. Physiological effects of plant steroids, brassinosteroids (BRs), include cell elongation, cell division, stress tolerance, and senescence acceleration. Arabidopsis mutants that carry genetic defects in BR biosynthesis or its signaling display characteristic phenotypes, such as short robust inflorescences, dark-green round leaves, and sterility. Currently there are more than 100 dwarf mutants representing 7 genetic loci in Arabidopsis. Mutants of 6 loci, dwf1/dim1/cbb1, cpd/dwf3, dwf4, dwf5, det2/dwf6, dwf7 are rescued by exogenous application of BRs, whereas bri1/dwf2 shares phenotypes with the above 6 loci but are resistant to BRs. These suggest that the 6 loci are defective in BR biosynthesis, and the one locus is in BR signaling. Biochemical analyses, such as intermediate feeding tests, examining the levels of endogenous BR, and molecular cloning of the genes revealed that dwf7, dwf5, and dwf1 are defective in the three consecutive steps of sterol biosynthesis, from episterol to campesterol via 5-dehydroepisterol. Similarly, det2/dwf6, dwf4, and cpd/dwf3 were Shown to be blocked in $D^4$ reduction, 22a-hydroxylation, and 23 a-hydroxylation, respectively. A signaling mutant bri1/dwf2 carries mutations in a Leucine-rich repeat receptor kinase. Interestingly, the bri1 mutant was shown to accumulate significant amount of BRs, suggesting that signaling and biosynthesis are dynamically coupled in Arabidopsis. Thus it is likely that transgenic plants over-expressing the rate-limiting step enzyme DWF4 as well as blocking its use by BRI1 could dramatically increase the biosynthetic yield of BRs. When applied industrially, BRs will boost new sector of plant biotechnology because of its potential use as a precursor of human steroid hormones, a novel lead compound for cholesterol-lowering effects, and a various application in plant protection.

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Brassinosteroid의 대사공학 (Metabolic Engineering of the Brassinosteroid Biosynthetic Pathways)

  • 이미옥;송기홍;이현경;정지윤;최빛나리;최성화
    • Journal of Plant Biotechnology
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    • 제29권2호
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    • pp.139-144
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    • 2002
  • Sterols play two major roles in plants: a bulk component in biological membranes and precursors of plant steroid hormones. Physiological effects of plant steroids, brassinosteroids (BRs), include cell elongation, cell division, stress tolerance, and senescence acceleration. Arabidopsis mutants that carry genetic defects in BR biosynthesis or its signaling display characteristic phenotypes, such as short robust inflorescences, dark-green round leaves, and sterility. Currently there are more than 100 dwarf mutants representing 7 genetic loci in Arabidopsis. Mutants of 6 loci, dwf1/dim1/cbb1, cpd/dwf3, dwf4, dwf5, det2/dwf6, dwf7 are rescued by exogenous application of BRs, whereas bri1/dwf2 shares phenotypes with the above 6 loci but are resistant to BRs. These suggest that the 6 loci are defective in BR biosynthesis, and the one locus is in BR signaling. Biochemical analyses, such as intermediate feeding tests, examining the levels of endogenous BR, and molecular cloning of the genes revealed that dwf7, dwf5, and dwf1 are defective in the three consecutive steps of sterol biosynthesis, from episterol to campesterol via 5-dehydroepisterol. Similarly, det2/dwf6, dwf4, and cpd /dwf3 were shown to be blocked in D$^4$reduction, 22a-hydroxylation, and 23 a-hydroxylation, respectively. A signaling mutant bril/dwf2 carries mutations in a Leucine-rich repeat receptor kinase. Interestingly, the bri1 mutant was shown to accumulate significant amount of BRs, suggesting that signaling and biosynthesis are dynamically coupled in Arabidopsis. Thus it is likely that transgenic plants over-expressing the rate-limiting step enzyme DWF4 as well as blocking its use by BRIl could dramatically increase the biosynthetic yield of BRs. When applied industrially, BRs will boost new sector of plant biotechnology because of its potential use as a precursor of human steroid hormones, a novel lead compound for cholesterol-lowering effects, and a various application in plant protection.

A Two-Strain Mixture of Rhizobacteria Elicits Induction of Systemic Resistance Against Pseudomonas syringae and Cucumber Mosaic Virus Coupled to Promotion of Plant Growth on Arabidopsis thaliana

  • Ryu Choong-Min;Murphy John F.;Reddy M.S.;Kloepper Joseph W.
    • Journal of Microbiology and Biotechnology
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    • 제17권2호
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    • pp.280-286
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    • 2007
  • We evaluated a commercial biopreparation of plant growth-promoting rhizobacteria (PGPR) strains Bacillus subtilis GB03 and B. amyloliquefaciens IN937a formulated with the carrier chitosan (Bio Yield) for its capacity to elicit growth promotion and induced systemic resistance against infection by Cucumber Mosaic Virus (CMV) and Pseudomonas syringae pv. tomato DC3000 in Arabidopsis thaliana. The biopreparation promoted plant growth of Arabidopsis hormonal mutants, which included auxin, gibberellic acid, ethylene, jasmonate, salicylic acid, and brassinosteroid insensitive lines as well as each wild-type. The biopreparation protected plants against CMV based on disease severity in wild-type plants. However, virus titre was not lower in control plants and those treated with biopreparation, suggesting that the biopreparation induced tolerance rather than resistance against CMV. Interestingly, the biopreparation induced resistance against CMV in NahG plants, as evidenced by both reduced disease severity and virus titer. The biopreparation also elicited induced resistance against P. syringae pv. tomato in the wild-type but not in NahG transgenic plants, which degrade endogenous salicylic acid, indicating the involvement of salicylic acid signaling. Our results indicate that some PGPR strains can elicit plant growth promotion by mechanisms that are different from known hormonal signaling pathways. In addition, the mechanism for elicitation of induced resistance by PGPR may be pathogen-dependent. Collectively, the two-Bacilli strain mixture can be utilized as a biological inoculant for both protection of plant against bacterial and viral pathogens and enhancement of plant growth.