• Title/Summary/Keyword: ginkgo (ginkgo biloba L.)

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Screening of Taxol-producing Endophytic Fungi from Ginkgo biloba and Taxus cuspidata in Korea

  • Kim, Soo-Un;Strobel, Gary;Ford, Eugene
    • Journal of Applied Biological Chemistry
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    • v.42 no.2
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    • pp.97-99
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    • 1999
  • Endophytic fungi from Ginkgo biloba and Taxus cuspidata in Korea were screened for production of taxol. Eighteen and twelve fungal isolates from G. biloba and T. cuspidata, respectively, were shown to produce immunologically detectable amount of taxol. The highest production of taxol at 260 ng/l was achieved by stationary culture of an Alternaria isolate from G. biloba. The strain also produced unidentified antifungal agent(s) against Pythium ultimum. However, the activity gradually decreased when the strain was stored at $4^{\circ}C$ for 6 months.

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Carbohydrate Metabolism During Germination of Ginkgo (Ginkgo biloba L.) Seed (은행나무 종자의 발아에서 탄수화물 대사)

  • 김명란
    • Journal of Plant Biology
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    • v.35 no.4
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    • pp.333-338
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    • 1992
  • Ginkgo (Ginkgo biloba L.) seeds were analyzed to determine the level of soluble sugars and insoluble starch during germination. Also the activities of the hydrolytic enzymes such as amylase, invertase and phosphatase were compared. As amylase activity was sharply increased, significant decline of starch was observed in the female gametophyte and increase of soluble sugars occurred concurrently. Invertase activity was gradually increased in cotyledon and radicle, while it was very low in dry seeds. In addition, phosphatase activity was variable only in radicle, and acid phosphatase showed higher activity than alkaline phosphatase.hatase.

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Identification and Quantitative Analysis of Flavonol Glycosides from Ginkgo biloba Leaves by High Performance Liquid Chromatography (고속액체크로마토그라피에 의한 은행잎중 Flavonoid Glycoside의 확인 및 정량)

  • Kang, Sam-Sik;Kim, Ju-Sun;Kwak, Wie-Jong;Kim, Ki-Hyup
    • Korean Journal of Pharmacognosy
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    • v.21 no.2
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    • pp.148-152
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    • 1990
  • Seven flavonol glycosides from the EtOAc fraction of Ginkgo biloba leaves were identified by high performance liquid chromatography. Separation by reversed phase chromatography on $Lichrosorb^{\circledR}$ RP-18 column was achieved by isocratic elution. The content of the major acylated flavonol glycoside, kaempferol 3-0-[$6'-O-{p}-coumaroyl-{\beta}-_D-glucosyl(1{\rightarrow}2)-{\alpha}-_L-rhamnoside$] was about 8.0% and 0.55% for EtOAc fraction and MeOH extract, respectively.

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Flavonoids from the Leaves of Ginkgo biloba (은행잎의 Flavonoid 성분에 관한 연구)

  • Kang, Sam-Sik;Kim, Ju-Sun;Kwak, Wie-Jong;Kim, Ki-Hyup
    • Korean Journal of Pharmacognosy
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    • v.21 no.2
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    • pp.111-120
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    • 1990
  • Five biflavones and sevenflavonolglycosideswereisolatedfromtheleaves of Ginkgo biloba. They were sciadopitysin(1), ginkgetin(2), isoginkgetin(3), bilobetin(4), amentoflavone(5), kaempferol 3-O-[$6'-O-{\rho}-coumaroyl-{\beta}-_D-glucopyranosyl(1{\rightarrow}2)-{\alpha}-_Lrhamnopyranoside$](6), quercetin 3-O-[$6'-O-{\rho}-coumaroyl-{\beta}-_D-glucopyranosyl(1{\rightarrow}2)-{\alpha}-_Lrhamnopyranoside$](8), rutinosides of kaempferol(7), isorhamnetin(9), quercetin(10), laricitrin(11), and kaempferol 3-O-($2',6'-{\alpha}-_L-dirhamnopyranosyl-{\beta}-_{D}-glucopyranoside$)(12). The structures were established by spectroscopic and chemical methods.

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Vascular Differentiation in the Mature Embryo and the Seedling of Ginkgo biloba L. (은행나무의 성숙배 및 유식물에 있어서 유관속조직의 분화)

  • 홍성식
    • Journal of Plant Biology
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    • v.26 no.4
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    • pp.207-216
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    • 1983
  • Mature embryo and developing seedlings of Ginkgo biloba L. were embedded in a paraplast and serially sectioned at 10${\mu}{\textrm}{m}$ to examine vascular differentiation and vascular transition. Procambium and protophloem formed a continuous system along the epicotylhypocotyl root axis and cotyledons in mature embryo, whereas protoxylem was differentiated discontinuously in the cotyledons and rarely in the upper hypocotyl. The traces of the first and second leaf primordia apeared almost at the same time oppositely to each otehr at the epicotyl and alternately with the cotyledon traces in the upper hypocotyl. The trace differentiated bidirectionally toward the epicotyl and root tips. the young root initially formed a diarch xylem. Then, as the traces of the first and second leaves were superimposed, the diarch xylem. Then, as the traces of the first and second leaves were superimposed, the diarch xylem of the root was changed totriarch and tetrarch xylem, respectively. On the formation of primary vascular system of Ginkgo biloba, it is suggested that the primary phloem forms a continuous system throughout the seedling, whereas the primary xylem of the epicotyl is formed independently from that of the root-hypocotyl cotyledon system.

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Inheritance and Linkage of Some Polymorphic Isozymes in Ginkgo biloba L. (은행나무의 몇가지 다형적(多形的) 동위효소(同位酵素)의 유전양식(遺傳樣式) 및 연관(連關))

  • Kwon, Hae-Yeun;Kim, Zin-Suh
    • Journal of Korean Society of Forest Science
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    • v.89 no.4
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    • pp.527-535
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    • 2000
  • Isozyme variants of 15 enzyme systems were analyzed in megagametophytes of Ginkgo biloba L. Five enzyme systems (ADH, G6PD, IDH, MPI, and UGPP) appeared to be monomorphic. Only 11 isozyme zones observed in 10 enzyme systems were polymorphic : ACON-A, FST-B, GDH-A, GOT-B, MDH-B, MDH-C, MNR-A, PGI-B, PGM-A, 6PGD-B and SKDH-B. The segregation ratio and heterogeneity at most polymorphic zones suggested that each isozyme zone was controlled by a single locus with codominant alleles, but significant deviation from 1 : 1 segregation was observed at MDH-B in pooled data. Three pairs of isozyme loci (ACON-A : MDH-B, GOT-B : PGI-B, and MNR-A : SKDH-B) were found to be weakly linked. Recombination frequencies between them ranged from 0.38 to 0.40 (p<0.05).

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Cultures of Ginkgo biloba, Effect of Nutritional and Hormonal Factors on the Growth of Cultured Cells Derived from Ginkgo biloba

  • Jeon, Mee-Hee;Sung, Sang-Hyun;Jeon, Soon-wha;Huh, Hoon;Kim, Jin-woong;Kim, Young-Choong
    • Archives of Pharmacal Research
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    • v.16 no.3
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    • pp.244-250
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    • 1993
  • Calli and suspension cultures were obtained following inoculation of the explant from leaves of Ginkgo biloba L on the supplemented MS basal medium. The obtained calli and suspension cultured cells were able to produce detectable amounts of ginkgolides which are known as natural specific PAF antagonists. The production of ginkgolides in the calli and suspension cultured celles were identified using GC/MS, GC and HPLC with authentic ocmpounds. Since the production of ginkgolides A and B the calli and suspension cultured cells had been confirmed, effects of types and concentration of plant growth regulators, media and illumination on the induction and growth of the callus were studied. The concentrations of growth regulators for optimal callus were studied. The concentrations of growth regulators for optimal callus induction were studied. The concentrations of growth regulators for optimal callus induction were 1.0 to 2.0 mg/L for NAA and o.1 mg/L for kinetin. The growth of the Callus seemed to be more simnultaed with the combination of NAA and kinetin than NAA and BA with illumination at all concentration ranges of 1.0 to 4.0 mg/l for NAA and o.1 to 1.0 mg/L for kinetin or BA studied. Amogn 8 different media used, the induction rate of callus on Anderson, Eriksson, and Shenk and Hildebrant at 4 weeks after the innoculation was almost the same as that of MS. However, callus was rarely induced on Heller or White medium. Suspension cultures were easily initiated with 3 g of callus (fresh weight) derived from ginkgo leaves on supplemented MS medium. A typical growth curve of suspension cultured cells could be obtained by measuring the fresh weight of the suspension cultured cells at every 3 days. To improve the growth of suspension cultured cells of ginkgo, effects of concentrations of NAA, sucrose, phosphate ions and molar ratio of $NH_{4}^+\;to\;NO_{3}^-$ ions in the culture medium were studied. The maximum growth of the cells was achieved when the culture medium contained 1.0 mg/L of NAA, 30 g/L sucrose, 1.75 mM phosphate ions and 1:5 molar ratio of $NH_{4}\;to\;NO_{3}^-$ ions.

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Identification of Biologically Active Substances from Ginkgo biloba L. (은행잎에 함유된 생리활성물질의 동정)

  • Nam, S.J.;Kim, K.U.;Shin, D.H.;Hwang, S.J.
    • Korean Journal of Weed Science
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    • v.17 no.4
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    • pp.421-430
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    • 1997
  • This experiment was conducted to detect the presence of allelopathic substances in the leaves of Ginkgo biloba L. Water extracts from G. biloba leaves which collected at different season markedly inhibited the germination and growth of O. sativa, E. crus-galli, D. sanguinalis, and L. sativa, indicating the presence of biological substances. Linolenic and palmitic acid were the major fatty acids of G. biloba leaves. The biochemical substances such as salicylic arid, p-coumaric acid, catechol, hydroquinone, orchinol, ferulic acid, phloroglucinol, and umbelliferone etc., belonging to the phenolic, compounds were, detected in a large amount, which may be responsible for exhibition inhibitory effects. The common phenolic compounds were detected in the early-harvested and late-harvested G. biloba leaves were salicylic and p-coumaric acid. All these compounds were related to the allelopathic activities in G. biloba leaves.

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Development of SCAR Marker for Identifying Male Trees of Ginkgo biloba using Multiplex PCR (Multiplex PCR을 이용한 은행나무 수나무 식별용 SCAR 마커 개발)

  • Hong, Yong-Pyo;Lee, Jei-Wan
    • Journal of Korean Society of Forest Science
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    • v.105 no.4
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    • pp.422-428
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    • 2016
  • Ginkgo (Ginkgo biloba L.) is one of the most appropriate roadside trees because of a good transplantation nature and ability to grow well in urban environment. Ginkgo is a dioecious species. Sex discrimination of ginkgo is possible through comparing morphological characters of reproductive organs. However, it needs more than about twenty years for reproductive organs to appear after sexual maturity. Until now, ginkgo trees for roadside plantation have been planted without discriminating the sex because ginkgo trees have been usually planted before sexual maturity. Ginkgo nuts from the female ginkgo trees planted along the roadside emit a foul odor, and make much pollution on the streets. Thus in this study a novel SCAR marker (SCAR-GBM) for the early sex discrimination was developed. Primers were developed on the basis of the sequence of male-specific RAPD variants reported previously. False-negative problem of SCAR marker, probably caused by dominant nature, was resolved by using multiplex PCR using primers of both the SCAR-GBM and a universal primer set of atp1 region in mitochondria DNA, which resulted in improved discrimination efficiency. The results showed that DNA bands of 1,039 bp were commonly amplified by the atp1 primer set in male and female trees, and SCAR-GBM markers of 675 bp were specifically amplified only in male trees. Reproducible and specific discrimination of the multiplex PCR was finally confirmed by applying multiple male and female individuals.