Alvarado Martha C, Zsigmond Laura M, Kovács Izabella, Cséplö Agnes, Koncz Csaba, Szabados László M
Institute of Plant Biology, Biological Research Center, Temesvári krt. 62, 6726-Szeged, Hungary.
Plant Physiol. 2004 Jan;134(1):18-27. doi: 10.1104/pp.103.027151.
To monitor the expression of T-DNA-tagged plant genes in vivo, a collection of 20,261 transgenic lines of Arabidopsis (Columbia-0) were generated with the promoter trap vector pTluc, which carries a promoterless firefly luc (luciferase) reporter gene linked to the right T-DNA border. By detection of bioluminescence in 3-week-old seedlings, 753 lines were identified showing constitutive, organ-specific, and stress-responsive luciferase expression patterns. To facilitate the identification of well-defined luciferase expression patterns, a pooled seed stock was established. Several lines showed sugar, salt, and abscisic acid (ABA)-inducible luciferase activity. Segregation analysis of 215 promoter trap lines indicated that about 50% of plants contained single insertions, whereas 40% carried two and 10% carried three or more T-DNA tags. Sequencing the T-DNA insert junctions isolated from 17 luciferase-expressing lines identified T-DNA tags in 5'- and 3'-transcribed domains and translational gene fusions generated by T-DNA insertions in exons and introns of Arabidopsis genes. Tissue specific expression of eight wild-type Arabidopsis genes was confirmed to be similar to the luminescence patterns observed in the corresponding luciferase-tagged lines. Here, we describe the characterization of a transcriptional luc reporter gene fusion with the WBC-type ABC transporter gene At1g17840. Expression of wild-type and luciferase-tagged At1g17840 alleles revealed similar induction by salt, glucose, and ABA treatments and gibberellin-mediated down-regulation of ABA-induced expression. These results illustrate that luciferase gene traps are well suited for monitoring the expression of stress-responsive Arabidopsis genes in vivo.
为了在体内监测T-DNA标记的植物基因的表达,利用启动子捕获载体pTluc构建了一个包含20261个拟南芥(哥伦比亚-0)转基因株系的群体,该载体携带一个与右T-DNA边界相连的无启动子萤火虫荧光素酶(luciferase)报告基因。通过检测3周龄幼苗中的生物发光,鉴定出753个株系呈现组成型、器官特异性和应激反应性荧光素酶表达模式。为便于鉴定明确的荧光素酶表达模式,建立了一个混合种子库。几个株系表现出糖、盐和脱落酸(ABA)诱导的荧光素酶活性。对215个启动子捕获株系的分离分析表明,约50%的植株含有单个插入片段,40%携带两个,10%携带三个或更多T-DNA标签。对从17个荧光素酶表达株系中分离的T-DNA插入连接进行测序,在拟南芥基因外显子和内含子中的5'和3'转录结构域以及由T-DNA插入产生的翻译基因融合中鉴定出T-DNA标签。八个野生型拟南芥基因的组织特异性表达被证实与在相应荧光素酶标记株系中观察到的发光模式相似。在此,我们描述了与WBC型ABC转运蛋白基因At1g17840的转录荧光素酶报告基因融合的特征。野生型和荧光素酶标记的At1g17840等位基因的表达显示出盐、葡萄糖和ABA处理诱导相似,以及赤霉素介导的ABA诱导表达下调。这些结果表明,荧光素酶基因捕获非常适合在体内监测拟南芥应激反应基因的表达。