journal article Jul 01, 1995

Novel GUS expression patterns following transposition of an enhancer trap Ds element in Arabidopsis

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References
43
[1]
Altmann T, Schmidt R, Willmitzer L (1992) Establishment of a gene tagging system in Arabidopsis thaliana based on the maize transposable element Ac. Theor Appl Genet 84:371–383 10.1007/bf00229496
[2]
Baker B, Coupland G, Fedoroff N, Starlinger P, Schell J (1987) Phenotypic assay for excision of the maize controlling element Ac in tobacco. EMBO J 6:1547–1554 10.1002/j.1460-2075.1987.tb02399.x
[3]
Bancroft I, Dean C (1993) Factors affecting the excision frequency of the maize transposable element Ds in Arabidopsis thaliana. Mol Gen Genet 240:65–72 10.1007/bf00276885
[4]
Bancroft I, Bhatt AM, Sjodin C, Scofield S, Jones JDG, Dean C (1992) Development of an efficient two-element transposon tagging system in Arabidopsis thaliana. Mol Gen Genet 233:449–461 10.1007/bf00265443
[5]
Bellen HI, O'Kane CJ, Grossniklaus U, Pearson RK, Gehring WJ (1989) P-element-mediated enhancer detection: a versatile method to study development in Drosophila. Genes Dev 3:1288–1300 10.1101/gad.3.9.1288
[6]
Benfey PN, Ren L, Chua N-H (1989) The CaMV 35S enhancer contains at least two domains which can confer different developmental and tissue-specific expression patterns. EMBO J 8:2195–2202 10.1002/j.1460-2075.1989.tb08342.x
[7]
Benfey PN, Ren L, Chua N-H (1990a) Tissue-specific expression from CaMV 35S enhancer subdomains in early stages of plant development. EMBO J 9:1677–1684 10.1002/j.1460-2075.1990.tb08291.x
[8]
Benfey PN, Ren L, Chua N-H (1990b) Combinatorial and synergistic properties of CaMV 35S enhancer subdomains. EMBO J 9:1685–1696 10.1002/j.1460-2075.1990.tb08292.x
[9]
Bier E, Vaessin H, Shepherd S, Lee K, McCall K, Barbel S, Ackerman L, Caretto R, Uemura T, Grell E, Jan LJ, Jan YN (1989) Searching for pattern and mutation in the Drosophila genome with a P-lacZ vector. Genes Dev 3:1273–1287 10.1101/gad.3.9.1273
[10]
Bingham PM, Levis R, Rubin GM (1981) Cloning of cDNA sequences from the white locus of D. melanogaster by a novel and general method. Cell 25:693–704 10.1016/0092-8674(81)90176-8
[11]
Dean C, Sjodin C, Page T, Jones J, Lister C (1992) Behaviour of the maize transposable element Ac in Arabidopsis thaliana. Plant J 2:69–81 10.1111/j.1365-313x.1992.00069.x
[12]
Deblaere R, Bytebier B, DeGreve H, Deboeck F, Schell J, Van Montagu M, Leemans J (1985) Efficient octopine Ti plasmid-derived vectors for Agrobacterium-mediated gene transfer to plants. Nucl Acids Res 13:4777–4788 10.1093/nar/13.13.4777
[13]
De Block M, Debrouwer D (1992) In situ enzyme histochemistry on plastic-embedded plant material. The development of an artefact-free β-glucuronidase assay. Plant 12:261–266
[14]
Dolan L, Ducket C, Grierson C, Linstead P, Schneider K, Lawson E, Dean C, Poethig S, Roberts K (1994) Clonal relationships and cell patterning in the root epidermis of Arabidopsis. Development 120:2465–2474 10.1242/dev.120.9.2465
[15]
Fedoroff NV, Smith DL (1993) A versatile system for detecting transposition in Arabidopsis. Plant J 3:273–289 10.1111/j.1365-313x.1993.tb00178.x
[16]
Fedoroff NV, Furtek DB, Nelson OE (1984) Cloning of the bronze locus in maize by a simple and generalisable procedure using the transposable controlling element Activator (Ac). Proc Natl Acad Sci USA 81:3825–3829 10.1073/pnas.81.12.3825
[17]
Finnegan EJ, Lawrence GJ, Dennis ES, Ellis JG (1993) Behaviour of modified Ac elements in flax callus-regenerated plants. Plant Mol Biol 22:625–633 10.1007/bf00047403
[18]
Gielen J, De Beuckeleer M, Seurinck J, De Boeck F, De Greve H, Lemmers M, Van Montagu M, Schell J (1984) The complete nucleotide sequence of the Ti-DNA of the Agrobacterium tumefaciens plasmid pTi Ach5. EMBO J 3:835–846 10.1002/j.1460-2075.1984.tb01894.x
[19]
Gossler A, Joyner AL, Rossant J, Skarnes WC (1989) Mouse embryonic stem cells and reporter constructs to detect developmentally regulated genes. Science 244:463–465 10.1126/science.2497519
[20]
Haring MA, Gao J, Volbeda T, Rommens CMT, Nijkamp HJJ, Hille J (1989) A comparative study of Tam 3 and Ac transposition in transgenic tobacco and petunia plants. Plant Mol Biol 13:189–201 10.1007/bf00016137
[21]
Jefferson RA (1987) Assaying chimeric genes in plants: the GUS gene fusion system. Plant Mol Biol Rep 5:387–405 10.1007/bf02667740
[22]
Jefferson RA, Burgess SM, Hirsh D (1986) β-glucuronidase from Escherichia coli as a gene fusion marker. Proc Natl Acad Sci USA 86:8447–8451 10.1073/pnas.83.22.8447
[23]
Jones JDG, Carland FC, Maliga P, Dooner HK (1989) Visual detection of transposition of the maize element Activator (Ac) in tobacco seedlings. Science 244:204–207 10.1126/science.244.4901.204
[24]
Jones JDG, Carland FC, Harper L, Lim E, Dooner H (1990) Genetic properties of the maize transposon Activator (Ac) in tobacco. In: Plant gene transfer UCLA Symp 129:59–64
[25]
Jones JDG, Shlumukov L, Carland F, English J, Scofield S, Bishop G, Harrison K (1992) Effective vectors for transformation, expression of heterologous genes, and assaying transposon excision in transgenic plants. Transgenic Res 1:285–297 10.1007/bf02525170
[26]
Keller J, Lim E, Dooner HK (1993) Preferential transposition of Ac to linked sites in Arabidopsis. Theor App Genet 86:585–588 10.1007/bf00838713
[27]
Klimyuk VI, Carroll BJ, Thomas CM, Jones JDG (1993) Alkali treatment for rapid preparation of plant material for reliable PCR analysis. Plant J 3:493–494 10.1111/j.1365-313x.1993.tb00169.x
[28]
Knapp S, Coupland G, Uhrig H, Starlinger P, Salamini F (1988) Transposition of the maize transposable element Ac in Solanum tuberosum. Mol Gen Genet 213:285–290 10.1007/bf00339593
[29]
Koncz C, Martini N, Mayerhofer R, Koncz-Kalman Z, Korber H, Redei GP, Schell J (1989) High frequency T-DNA-mediated gene tagging in plants. Proc Natl Acad Sci USA 86:8467–8471 10.1073/pnas.86.21.8467
[30]
Lassner MW, Peterson P, Yoder JI (1989) Simultaneous amplification of multiple DNA fragments by polymerase chain reaction in the analysis of transgenic plants and their progeny. Plant Mol Biol Rep 7:116–128 10.1007/bf02669627
[31]
Lawson EJR, Scofield SR, Sjodin C, Jones JDG, Dean C (1994) Modification of the 5′ untranslated leader region of the maize Activator element leads to increase activity in Arabidopsis. Mol Gen Genet 245:608–615 10.1007/bf00282223
[32]
Lindsey K, Wei W, Clarke MC, McArdle HF, Rooke LM, Topping J (1993) Tagging genomic sequences that direct transgene expression by activation of a promoter trap in plants. Transgenic Research 2:33–47 10.1007/bf01977679
[33]
Martin C, Carpenter R, Sommer H, Saedler H, Coen E (1985) Molecular 'analysis of instability in flower pigmentation of Antirrhinum majus following isolation of the pallida locus by transposon tagging. EMBO J 4:1625–1630 10.1002/j.1460-2075.1985.tb03829.x
[34]
Mazodier P, Gossart P, Giraud E, Gasser F (1985) Completion of the nucleotide sequence of the central region of Tn5 confirms the presence of three resistance genes. Nucl Acids Res 13:195–203 10.1093/nar/13.1.195
[35]
Sambrook J, Fritsch EF, Maniatis T (1989) Molecular cloning: a laboratory manual. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, New York
[36]
Schmidt R, Willmitzer L (1989) The maize autonomous element Activator (Ac) shows a minimal germinal excision frequency of 0.2%–0.5% in transgenic Arabidopsis thaliana plants. Mol Gen Genet 220:17–24 10.1007/bf00260850
[37]
Skarnes WC (1990) Entrapment vectors: a new tool for mammalian genetics. Biotechnology 8:827–831
[38]
Swinburne J, Balcells L, Scofield SR, Jones JDG, Coupland G (1992) Elevated levels of Activator transposase mRNA are associated with high frequencies of Dissociation excision in Arabidopsis. Plant Cell 4:583–595
[39]
Topping JF, Wei W, Lindsey K (1991) Functional tagging of regulatory elements in the plant genome. Development 112:1009–1019 10.1242/dev.112.4.1009
[40]
Valvekens D, Van Montagu M, Van Lijsebettens M (1988) Agrobacterium tumefaciens-mediated transformation of Arabidopsis root explants using kanamycin selection. Proc Natl Acad Sci USA 85:5536–5540 10.1073/pnas.85.15.5536
[41]
Van Sluys MA, Tempe J, Fedoroff N (1987) Studies of the introduction and mobility of the maize Activator element in Arabidopsis thaliana and Daucus carota. EMBO J 6:3881–3889 10.1002/j.1460-2075.1987.tb02728.x
[42]
Wilson C, Pearson RK, Bellen HJ, O'Kane CJ (1989) P-element mediated enhancer detection: an efficient method for isolating and characterizing developmentally regulated genes in Drosophila. Genes Devel 3:1301–1313 10.1101/gad.3.9.1301
[43]
Yoder JI, Palys J, Alpert K, Lassner M (1988) Ac transposition in transgenic tomato plants. Mol Gen Genet 213:291–296 10.1007/bf00339594
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Published
Jul 01, 1995
Vol/Issue
249(4)
Pages
357-365
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V. I. Klimyuk, L. Nussaume, K. Harrison, et al. (1995). Novel GUS expression patterns following transposition of an enhancer trap Ds element in Arabidopsis. Molecular and General Genetics MGG, 249(4), 357-365. https://doi.org/10.1007/bf00287097