Method and Technology of Monitoring the Expression of Flowering Gene Marked with Green Fluorescent Protein in Space Culture Chamber
-
摘要: 绿色荧光蛋白(Green Fluorescent Protein,GFP)已被广泛用作一种强有力的生物发光报告蛋白.但是,其在空间植物培养箱中应用尚存很大困难.本文提出一种在空间植物培养箱中利用LED作为激发光源,对拟南芥中开花基因启动子控制下GFP基因表达的观察与分析方法,为在空间生物学实验中研究基因表达模式提供了新的方法和技术.Abstract: Green fluorescent Protein (GFP) has been widely used as a powerful bio-luminescence reporter molecule for monitoring gene expression on ground. However, it is still difficult to use GFP as a tool in the space culture chamber for life studies. In this study, we present a technical method, which use the LED as excitation light source, for monitoring and analysis of GFP gene expression of the flowering locus T gene in Arabidopsis thaliana that is controlled by the promoter. The method in this study provides a new technical reference for the gene expression studies in space.
-
Key words:
- Space culture chamber /
- Green fluorescent protein /
- Flowering locus T /
- Arabidopsis
-
[1] CHALFIE M, TU Y, EUSKIRCHEN G, et al. Green fluorescent protein as a marker for gene expression[J]. Science, 1994, 263(5148):802-805 [2] HEIM R, PRASHER D C, TSIEN R Y. Wavelength mutations and posttranslational autoxidation of green fluorescent protein[J]. Proc. Natl. Acad. Sci. USA, 1994, 91(26):12501-12504 [3] HEIM R, CUBITT A B, TSIEN R Y. Improved green fluorescence[J]. Nature, 1995, 373:663-664 [4] DAVIS S J, VIERSTRA R D. Soluble, highly fluore-scent variants of green fluore-scent protein (GFP) for use in higher plants[J]. Plant Mol. Biol., 1998, 36(4):521-528 [5] PATTERSON G H, KNOBEL S M, SHARIF WD, et al. Use of the green fluorescent protein and its mutants in quantitative fluorescence microscopy[J]. Biophys. J., 1997, 73(5):2782-2790 [6] HILY J M, LIU Z. A simple and sensitive high-throughput GFP screening in woody and herbaceous plants[J]. Plant Cell Rep., 2009, 28:493-501 [7] JEFFERSON R A, KAVANAGH T A, BEVAN M W. GUS fusions: beta-glucuronidase as a sensitive and versatile gene fusion marker in higher plants[J]. EMBO J., 1987, 6(13):3901-3907 [8] MILLAR A J, SHORT S R, CHUA N H, et al. A novel circadian phenotype based on firefly luciferase expression in transgenic plants[J]. Plantell., 1992, 4(9):1075-1087 [9] BAULCOMBE D C, CHAPMAN S, SANTA C S, et al. Jellyfish greenfluorescent protein as a reporter for virus infections[J]. Plant J., 1995, 7:1045-1053 [10] HILY J M, LIU Z. A simple and sensitive high-throughput GFP screening in woody and herbaceous plants[J]. Plant Cell Rep., 2009, 28:493-501 [11] GAGE D J, BOBO T, LONG S R. Use of green fluorescent protein to visualize the early events of symbiosis between Rhizobium meliloti and alfalfa (Medicago sativa)[J]. J. Bacteriol., 1996, 178(24):7159-7166 [12] URWIN P E, MØ LLER S G, LILLEY C J, et al. Continual green-fluorescent protein monitoring of cauliflower mosaic virus 35S promoter activity in nematode-induced feeding cells in Arabidopsis thaliana[J]. Mol. Plant. Microbe. Interact., 1997, 10(3):394-400 [13] OTTENSCHLÄGER I, BARINOVA I, VORONIN V, et al. Green fluorescent protein (GFP) as a marker during pollen development[J]. Transgenic. Res., 1999, 8(4):279-294 [14] FU Z Q, GUO M, JEONG B R, et al. A type I!I!I effector ADP-ribosylates RNA-binding proteins and quells plant immunity[J]. Nature, 2007, 447(7142):284-288 [15] MANAK J R, MITIKU N, LIPSICK J S. Mutation of the Drosophila homologue of the Myb protooncogene cau-ses genomic instability[J]. Proc. Natl. Acad. Sci. USA, 2002, 99(11):7438-7443 [16] EPEL B L, PADGETT H S, HEINLEIN M, et al. Plantvirusmovement protein dynamics probed witha GFP-proteinfusion[J]. Gene, 1996, 173:75-79 [17] HEINLEIN M, EPEL B, PADGETT H S, et al. Inte-raction oftobacco virus movement proteins withthe plant cytoskeleton[J]. Science, 1996, 270(5244):1983-1985 [18] GU X, VERNA D P. Dynamics of phragmoplast in living cellsduring cell plate formation and uncoupling of cell elongationfrom the plan of cell division[J]. Plant Cell, 1997, 9:157-169 [19] VAN DE SANDE K, PAVLOWSKI K, CZALA I, et al. Modification ofphytohormone response by a peptide encoded by ENOD40of legumes and a nonlegume[J]. Science, 1996, 273:370-373 [20] KORDYUM E L, SHEVCHENKO G V, YEMETS A I, et al. Application of GFP technique for cytoskeleton visua-lization onboard the international space station[J]. Acta Astron., 2005, 5:613-621 [21] MURASHIGE T S. A revised medium for rapid growth and bioassays with tobacco tissue cultures[J]. Physiol. Plant, 1962, 15:473-497 [22] BAULCOMBE D C, CHAPMAN S, SANTA C S. Jellyfish green fluorescent protein as a reporter for virus infec-tions[J]. Plant J., 1995, 7(6):1045-1053 [23] PAUL A L, BAMSEY M, BERINSTAIN A, et al. Deployment of a prototype plant GFP imager at the Arthur Clarke Mars greenhouse of the Huaghton Mars project[J]. Sensors, 2008, 8:2762-2773 [24] PAUL A L. Using Green Fluorescent Protein (GFP) reporter genes in RNAlaterm TM fixed tissue[J]. Gravitat. Space Res., 2011, 25:40-43 -
-
计量
- 文章访问数: 1821
- HTML全文浏览量: 277
- PDF下载量: 821
-
被引次数:
0(来源:Crossref)
0(来源:其他)
下载: