Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan.
Plant J. 2011 May;66(4):579-90. doi: 10.1111/j.1365-313X.2011.04514.x. Epub 2011 Mar 7.
The Arabidopsis thaliana NAC domain transcription factor, VASCULAR-RELATED NAC-DOMAIN7 (VND7), acts as a key regulator of xylem vessel differentiation. In order to identify direct target genes of VND7, we performed global transcriptome analysis using Arabidopsis transgenic lines in which VND7 activity could be induced post-translationally. This analysis identified 63 putative direct target genes of VND7, which encode a broad range of proteins, such as transcription factors, IRREGULAR XYLEM proteins and proteolytic enzymes, known to be closely associated with xylem vessel formation. Recombinant VND7 protein binds to several promoter sequences present in candidate direct target genes: specifically, in the promoter of XYLEM CYSTEINE PEPTIDASE1, two distinct regions were demonstrated to be responsible for VND7 binding. We also found that expression of VND7 restores secondary cell wall formation in the fiber cells of inflorescence stems of nst1 nst3 double mutants, as well as expression of NAC SECONDARY WALL THICKENING PROMOTING FACTOR3 (NST3, however, the vessel-type secondary wall deposition was observed only as a result of VND7 expression. These findings indicated that VND7 upregulates, directly and/or indirectly, many genes involved in a wide range of processes in xylem vessel differentiation, and that its target genes are partially different from those of NSTs.
拟南芥 NAC 结构域转录因子 VASCULAR-RELATED NAC-DOMAIN7(VND7)作为木质部导管分化的关键调节因子。为了鉴定 VND7 的直接靶基因,我们使用可以在翻译后诱导 VND7 活性的拟南芥转基因系进行了全局转录组分析。该分析鉴定了 63 个 VND7 的推定直接靶基因,这些基因编码广泛的蛋白质,如转录因子、IRREGULAR XYLEM 蛋白和蛋白水解酶,这些蛋白与木质部导管形成密切相关。重组 VND7 蛋白与候选直接靶基因中的几个启动子序列结合:具体来说,在 XYLEM CYSTEINE PEPTIDASE1 的启动子中,两个不同的区域被证明负责 VND7 结合。我们还发现,VND7 的表达恢复了 nst1 nst3 双突变体花序茎纤维细胞的次生细胞壁形成,以及 NAC SECONDARY WALL THICKENING PROMOTING FACTOR3(NST3 的表达,然而,仅观察到 VND7 表达导致导管型次生壁沉积。这些发现表明,VND7 直接和/或间接上调了许多参与木质部导管分化广泛过程的基因,并且其靶基因与 NSTs 的靶基因部分不同。