State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
J Genet Genomics. 2012 Mar 20;39(3):149-56. doi: 10.1016/j.jgg.2012.01.007. Epub 2012 Feb 14.
Anthocyanins often accumulate in plants subjected to environmental stress, including low temperature. However, the molecular regulatory mechanism of anthocyanin biosynthesis at low temperature is largely unknown. Here, tobacco was transformed with a maize anthocyanin regulatory gene Lc driven by AtSPX3 promoter to investigate the effect of Lc upon the anthocyanin-biosynthesis pathway. We found that the anthocyanin-biosynthesis pathway could not be activated in wild type, while Lc-transgenic tobacco lines exhibited purple pigmentation in juvenile leaves at low temperature. Accordingly, the total anthocyanin contents increased specifically in juvenile leaves in Lc-transgenic lines. Transcriptional analysis showed that NtCHS and NtCHI were induced by low temperature in leaves of wild type and transgenic lines. NtDFR was uniquely expressed in Lc-transgenic lines, but its transcript was not detected in wild type, implying that NtDFR expression in tobacco leaves was dependent on Lc. Furthermore, the expression of NtAN2 (regulatory gene) and NtANS (anthocyanidin synthase gene) was coordinately upregulated in Lc-transgenic lines under low temperature, suggesting that both Lc and NtAN2 might activate the expression of NtANS. Based on our findings and previous reports, we postulated that Lc interacted with NtAN2 induced by low-temperature stress and consequently stimulated anthocyanin biosynthesis in juvenile leaves of Lc-transgenic tobacco lines.
花青苷通常在植物受到环境胁迫时积累,包括低温。然而,低温下花青苷生物合成的分子调控机制在很大程度上尚不清楚。在这里,通过 AtSPX3 启动子驱动玉米花青苷调控基因 Lc 转化烟草,以研究 Lc 对花青苷生物合成途径的影响。我们发现,在野生型中,花青苷生物合成途径不能被激活,而 Lc 转基因烟草系在低温下表现出幼叶的紫色着色。因此,Lc 转基因系中幼叶的总花青苷含量特异性增加。转录分析表明,在野生型和转基因系的叶片中,NtCHS 和 NtCHI 被低温诱导。NtDFR 仅在 Lc 转基因系中表达,但在野生型中未检测到其转录物,表明 NtDFR 在烟草叶片中的表达依赖于 Lc。此外,在低温下,Lc 转基因系中 NtAN2(调控基因)和 NtANS(花青素合酶基因)的表达协同上调,表明 Lc 和 NtAN2 可能共同激活 NtANS 的表达。基于我们的发现和以前的报告,我们假设 Lc 与低温诱导的 NtAN2 相互作用,从而刺激 Lc 转基因烟草系幼叶中的花青苷生物合成。