• Title/Summary/Keyword: octopine type Ti plasmid

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Identification of Octopine Type Ti Plasmid in Agrobacterium tumefaciens KU12 (Agrobacterium tumefaciens KU12내에 존재하는 Octopine Type Ti Plasmid의 확인)

  • 이용욱;음진성;심웅섭
    • Korean Journal of Microbiology
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    • v.31 no.4
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    • pp.292-299
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    • 1993
  • Agrobacterium tumefaciens KU12 isolated from Korea is able to induce tumors on various plants and catabolize octopine as a sole carbon and nitrogen source. A, tumefaciens KU12 contains three plasmids. Their sizes are 45.5 kb. 240 kb. and > 240 kb. respectively. For the purpose of identification of octopine type Ti plasmid, avirulent A, tumefacients A136 is transformed with plasmids isolated from KU12 by direct transformation. Transformants containing Ti plasmid were grown on AB medium containing octopine as a sole nitrogen source. The isolated strain, named KU911, contains only 240 kb plasmid. As a result of induction of crown gall and Southern hybridization with other octopine Ti plasmid pTiAch5, 240 kb plasmid named pTiKU12 was Ti plasmid.

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Restriction endonuclease mapping of the plasmid pTi12 from agrobacterium tumefaciens (Agrobacterium tumefaciens KU-12 균주에서 분리한 플라스미드 pTi 12의 제한효소 지도)

  • 이용욱;손정훈;심웅섭
    • Korean Journal of Microbiology
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    • v.25 no.3
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    • pp.173-179
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    • 1987
  • Ti plasmids were isolated from three strains of Agrobacterium tumefaciens in Korea and their types and molecular weights were determined. All of these are octopine-type and their molecular weights are 44Kb (pTi 12), 180Kb (pTi 14) and 172Kb (pti 49), respectively. In order to construct physical map of pTi 12, pTi 12 was digested with restriction endonucleases Sma I and Hind III. Sma I degestion of pTi 12 produce 8 fragments and Hind III produced 10 fragments. Physical arrangements of these fragments was determined by Southern hybridization techniques.

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Host Construction by Curing the Octopine Type Ti and Cryptic Plasmids in Agrobacterium tumefaciens KU12 (Agrobacterium tumefaciens KU12로부터 Octopine형 Ti 및 잠재 플라스미드의 제거에 의한 숙주 개발)

  • Ha, Un-Hwan;Lee, Yong-Woog;Moon, Hye-Yeon;Sim, Woong-Seop
    • Korean Journal of Microbiology
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    • v.32 no.1
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    • pp.53-59
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    • 1994
  • Agrobacterium tumefaciens KU12 contains pTiKU12 (240kb) of the octopine type Ti plamsid and pTi12 (45 kb) of the cryptic plasmid. To make the avirulent A. tumefaciens, the octopine type Ti plasmid, pTiKU12, was cured with elevated temperature (37${\circ}C$) and ethidium bromide (EtBr), respectively. Also the cryptic plasmid, pTi12, was cured by the introduction of recombinant plasmid, pYWXP, made by pTi12 replication origin and pUC19. pYWXP was cured by elevated temperature (37${\circ}C$) and EtBr simultaneously.

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Comparative Genetic Characterization of Plasmids of Agrobacterium Species Isolated in Korea (한국산 Agrobacterium plasmid의 유전학적 성상에 관한 연구)

  • Kim, Jung-Hye;Koo, Yong-Bum;Lee, Ki-Yung;Chung, Jae-Kyu
    • Journal of Yeungnam Medical Science
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    • v.1 no.1
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    • pp.41-48
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    • 1984
  • The soil bacterium Agrobacterium tumefaciens is a plant pathogen that cause3 crown gall tumors by infecting the wounded dicotyledonous plants and subsequent integration of bacterial DNA into plant nuclear DNA. Virulent A. tumefaciens strains harbor a large Ti (tumor-inducing) plasmid that carries genes essential for tumorigenesis. In the present study, 13 strains (Malus pumila Mill; $A_{1-3}$, Populus monilifera; $W_{1-6}$, Populus tomentiglandlosa; $P_{1-3}$ and Rosa species; $R_1$) of Agrobacterium isolated in korean crown gall tumors and plasmids were observed in 6 strains ($W_2$, $W_3$, $W_6$, $P_1$, $P_3$ and $A_2$). The test for crown gall tumor formation was resulted only in ATCC15955 and $KW_2$ strains inoculated into the stem of sun flower and the development was observed for 4 and 6 weeks after inoculation. Above two Ti plasmids (pTi) were purified by cesium chloride-ethidium bromide density gradient centrifugation and digested with restriction enzyme and fragments of pTiATCC 15955 and $pTiKW_2$ observed by EcoR I ; 25&27, Hind III; 23&21, BamH I ; each 20 and Hpa I ; 12&27, and sizes of pTiATCC15955 and and $pTiKW_2$ calculated as 200 and 87 kbases. Octopine was isolated from tumor tissue ($W_{1-6}$ and $P_{1-3}$) and these strains confirmed as octopine type.

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Genes for the Catabolism of Deoxyfructosyl Glutamine in pAtC58 Are Attributed to Utilization of Octopine in Agrobacterium tumefaciens Strain NT1

  • Baek, Chang-Ho;Park, Dae-Kyun;Lee, Ko-Eun;Hwang, Won;Kim, In-Hwang;Maeng, Jue-Son;Kim, Kun-Soo
    • Journal of Microbiology and Biotechnology
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    • v.14 no.4
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    • pp.822-828
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    • 2004
  • Nopaline-type Agrobacterium tumefaciens strain C58 cannot utilize octopine (Oct) as the sole carbon and nitrogen sources. This strain harbors two plasmids; a virulent plasmid, pTiC58, and a megaplasmid, pAtC58. From strain NT1, which is a derivative of C58 harboring only pAtC58, we isolated spontaneous mutants that utilize Oct as the sole nitrogen source. These Oct-catabolizing mutants, however, could not utilize the opine as the sole carbon source. In contrast, strain UIA5, a plasmid-free derivative of C58, could not give rise to such mutants. The mutations isolated from NT1 were mapped to socR in pAtC58, which is a negative regulator of the soc operon responsible for the uptake and catabolism of an Amadori opine, deoxyfructosyl glutamine (Dfg). A derivative of UIA5 carrying a clone of the soc operon with a transposon inserted in socR also utilizes Oct as the sole nitrogen source. However, UIA5 harboring the operon with mutations in each of the structural genes in the soc operon, socA, B, C, and D, lost the ability to generate spontaneous Oct-utilizing mutants, suggesting that soc genes in pAtC58 are required for the utilization of Oct as a nitrogen source, and that derepressed expression of these genes allows cells to utilize Oct. In contrast, Oct-catabolizing mutants derived from C58, which grew using Oct as the sole nitrogen source, could also utilize the opine as the sole carbon source. These mutants did not carry any detectable mutations in socR or the region upstream to the gene in pAtC58, suggesting that mutations occurring elsewhere in the genome, most likely in pTiC58, allow the uptake and catabolism of the opine.

Effects of Phenolic Compounds and Hosts on the vir Gene Expression of Various Ti Plasmids

  • Sim, Woong-Seop
    • Journal of Plant Biology
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    • v.38 no.1
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    • pp.19-24
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    • 1995
  • The vir genes expression of Ti plasmid is induced by a family of related phenolic compounds. We investigated the effects of various phenolic compounds, Ti plasmids and hosts on the expression of the vir genes in the same type of octopine Ti plasmids, pTiKU12, pTiAch5 and pTiA6. The vir gene induction of pTiKU12 was remarkably stimulated by p-coumaric acid in relation to acetosyringone, but those of pTiAch5 and pTiA6 were more stimulated by acetosyringone than by p-coumaric acid. The effect of phenolic compound on the vir gene induction was different according to the kind of Ti plasmids. Also, the vir gene expression of A. tumefaciens KU913, which has pTiKU12 was about 6.2 times as much as that of A. tumefaciens KU915, which has pTiKU12 in KU12 host, in the presence of ferulic acid. But no difference was shown in the presence of p-coumaric acid. The vir gene induction abilities of phenolic compounds are different according to the kinds of phenolic compounds, Ti plasmids and hosts.

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Formation of Crown Gall Tumor in Panax ginseng C.A. Meyer (인삼의 Crown Gall Tumor형성에 관한 연구)

  • 최광태;양덕춘
    • Journal of Ginseng Research
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    • v.10 no.1
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    • pp.45-54
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    • 1986
  • These studies were carried out to obtain the basic information about transformation of ginseng plant by potential vector system, utilization of opine compound by Agrobacterium sap. , and initiation of crown gall tumor callus. Crown gall tumors were induced from stem of Panax ginseng C.A. Meyer by infection of Agrobacterium tumefaciens. Therefore, it was clarified that transformation of ginseng by Ti plasmid was possible. The crown gall tumors induced by Agrobacterium tumefaciens isolated. from the soil were different in a shape, size, and growth rate. Especially, infection of ginseng by Agrobacterium tumefaciens Y104 led to the amorphic tumor, Tumor tissue derived from stem crown gall could not be continuously cultured on the medium which did not contain phytohormone, and did not form the callus even on the medium supplemented with 2,4-D. On the other hand, the root crown gall tumors formed the calli but the formation rate of callus was quite low. As for the utilization of octopine and nopaline, it was found that 3 strains of Agrobacterium app., Y104, Y110 and C58, utilized nopaline only, Y109 utilized octopine, and Y101 failed to utilize either compound.

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Analysis of Trans-Acting Elements for Regulation of moc Operons of pTi15955 in Agrobacterium tumefaciens

  • Jung, Won-Hee;Baek, Chang-Ho;Lee, Jeong-Kug;Kim, Kun-Soo
    • Journal of Microbiology and Biotechnology
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    • v.9 no.5
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    • pp.637-645
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    • 1999
  • Two putative regulator genes, mocR and mocS, of the moc (mannityl opine catabolism) operons in pTi15955 of the octopine-/mannityl opine-type Agrobacterium tumefaciens strain 15955, were tested for their possible roles as repressors in the moc operons. The regions upstream of macC and mocD, the first structural genes in the two divergently oriented moc operons, were transcriptionally fused into the promoterless lacZ reporter gene. Each of the lacZ-fusions was introduced into Agrobacterium strain UIA5, a Ti plasmid-cured derivative, harboring either a mocR or a mocS clone. The resulting strains were grown in media containing various sugar sources, and the $\beta$-galactosidase activities were quantitatively measured. The results suggested that MocR repressed the expression of macC and macD. The expression of the fused $\beta$-galactosidase was not induced by mannopine (MOP) or possible catabolic intermediates of the opine, e.g. santhopine (SOP), glucose, mannose, or glutamine. However, the repression was significantly relieved by the supplementation of MOP and the concomitant introduction of the agcA gene encoding MOP cyclase that catalyzes the lactonization of MOP to agropine (AGR). These results suggested that AGR, rather than MOP or the other catabolic intermediates, is the inducer for the expression of the operon. On the contrary to previous report showing that the induction levels of macC and macD were lowered by the supplementation of inorganic nitrogen in media, the expression of these genes was not affected by the level of nitrogen in our reporter system. MocS did not strongly repress the expressions of macC and mocD. It is possible that MocS may be involved in the regulation of the operons present downstream of the moc operon, which are responsible for the utilization of mannopinic acid and agropinic acid.

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