D'Agostino I B, Deruère J, Kieber J J
Department of Biological Sciences, Laboratory for Molecular Biology, University of Illinois, Chicago, Illinois 60607, USA.
Plant Physiol. 2000 Dec;124(4):1706-17. doi: 10.1104/pp.124.4.1706.
We examined the expression of a family of Arabidopsis response regulators (ARR) and found that the steady-state levels of RNA for most are elevated very rapidly by cytokinin. Using nuclear run-on assays we demonstrated that this increase in ARR transcript levels in response to cytokinin is due, at least in part, to increased transcription. The start site of transcription for the ARR5 gene was identified using primer extension analysis. A DNA fragment comprised of 1.6 kb upstream of the ARR5 transcript start site conferred cytokinin-inducible gene expression when fused to a beta-glucuronidase reporter, confirming that the transcription rate of ARR5 is elevated by cytokinin. This reporter construct was also used to examine the spatial pattern of ARR5 expression. The highest levels of expression were observed in the root and shoot apical meristems, at the junction of the pedicle and the silique, and in the central portion of mature roots. The expression of ARR5 in the apical meristems was confirmed by whole mount in situ analysis of seedlings and is consistent with a role for cytokinin in regulating cell division in vivo.
我们检测了拟南芥应答调节因子(ARR)家族的表达,发现大多数ARR的RNA稳态水平会被细胞分裂素迅速提高。通过核转录分析,我们证明了细胞分裂素诱导的ARR转录水平增加至少部分是由于转录增加所致。使用引物延伸分析确定了ARR5基因的转录起始位点。当与β-葡萄糖醛酸酶报告基因融合时,由ARR5转录起始位点上游1.6 kb组成的DNA片段赋予了细胞分裂素诱导的基因表达,证实细胞分裂素可提高ARR5的转录速率。该报告构建体还用于检测ARR5表达的空间模式。在根和茎顶端分生组织、花梗与角果的连接处以及成熟根的中部观察到最高水平的表达。通过对幼苗的整体原位分析证实了ARR5在顶端分生组织中的表达,这与细胞分裂素在体内调节细胞分裂的作用一致。