Chiang H H, Hwang I, Goodman H M
Department of Genetics, Harvard Medical School, Boston, Massachusetts.
Plant Cell. 1995 Feb;7(2):195-201. doi: 10.1105/tpc.7.2.195.
Progeny from a transgenic Arabidopsis plant generated by the Agrobacterium root transformation procedure were found to segregate for a gibberellin (GA)-responsive semidwarf phenotype. Complementation analysis with genetically characterized GA-responsive mutants revealed that the transgenic plant has an insertional mutation (ga4-2) that is an allele of the ga4 locus. The semidwarf phenotype of ga4-2 is inherited as a recessive mutation that cosegregates with both the T-DNA insert and the kanamycin resistance trait. DNA gel blot analysis indicated that the insertion site contains a complex T-DNA unit. A genomic library was constructed with DNA from the tagged ga4 mutant; a DNA clone was isolated from the library that flanks the T-DNA insert. The plant sequence isolated from this clone was used to isolate the corresponding full-length genomic and cDNA clones from wild-type libraries. DNA sequence comparison of the clones to the existing data bases suggests that they encode a hydroxylase. This conclusion is in agreement with a biochemical study that indicated that the ga4 mutant is deficient in 3 beta-hydroxylase in the GA biosynthetic pathway of Arabidopsis. RNA gel blot analysis showed that the message is ubiquitously expressed in different tissues of Arabidopsis but most abundantly in the silique. Unexpectedly, a higher level of transcription was detected in the ethyl methanesulfonate-induced ga4 mutant, and this overexpression was repressed by treatment with exogenous GA.
通过农杆菌介导的根转化方法产生的转基因拟南芥植株的后代被发现分离出一种对赤霉素(GA)响应的半矮化表型。与遗传特征明确的GA响应突变体进行互补分析表明,该转基因植株具有一个插入突变(ga4-2),它是ga4基因座的一个等位基因。ga4-2的半矮化表型作为隐性突变遗传,与T-DNA插入和卡那霉素抗性性状共分离。DNA凝胶印迹分析表明插入位点包含一个复杂的T-DNA单元。用来自标记的ga4突变体的DNA构建了一个基因组文库;从文库中分离出一个位于T-DNA插入侧翼的DNA克隆。从该克隆中分离出的植物序列用于从野生型文库中分离相应的全长基因组和cDNA克隆。将这些克隆与现有数据库进行DNA序列比较表明它们编码一种羟化酶。这一结论与一项生化研究一致,该研究表明ga4突变体在拟南芥GA生物合成途径中缺乏3β-羟化酶。RNA凝胶印迹分析表明该信使RNA在拟南芥的不同组织中普遍表达,但在角果中表达量最高。出乎意料的是,在甲磺酸乙酯诱导的ga4突变体中检测到更高水平的转录,并且这种过表达被外源GA处理所抑制。