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Gibberellins negatively regulate low temperature-induced anthocyanin accumulation in a HY5/HYH-dependent manner.

机译:赤霉素以依赖于HY5 / HYH的方式负调节低温诱导的花青素积累。

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摘要

Low temperature could significantly induce anthocyanin accumulation in the presence of light. Recently, two bZIP transcription factors LONG HYPOCOTYL 5 (HY5) and HOMOLOG OF HY5 (HYH) were identified to play an important role in the process of low temperature-induced anthocyanin accumulation. However, the mechanism by which HY5/HYH regulates anthocyanin accumulation under low temperature still remains unclear. Here, we found that the gibberellins (GAs) could decrease but PAC (endogenous GAs biosynthesis inhibitor) increase the low temperature-induced anthocyanin accumulation, implying that GAs signaling may involve in this process. Furthermore, the transcript levels of GA2ox1, encoding a major member of bioactive GAs-deactivating enzymes, were significantly up-regulated by low temperature in a HY5/HYH-dependent manner. Moreover, hy5 hyh mutant was insensitive to PAC in enhancing anthocyanin accumulation under low temperature. From these data we propose that, together with HY5/HYH, GA signaling may play an important role during low temperature-induced anthocyanin accumulation.
机译:在有光的情况下,低温可能会明显诱导花青素的积累。最近,已鉴定出两个bZIP转录因子长HYPOCOTYL 5(HY5)和HY5的同系物(HYH)在低温诱导的花青素积累过程中起重要作用。但是,HY5 / HYH在低温下调节花色苷积累的机理仍然不清楚。在这里,我们发现赤霉素(GAs)可能减少,而PAC(内源GAs生物合成抑制剂)增加了低温诱导的花色苷积累,这暗示GAs信号可能参与此过程。此外, GA2ox1 的转录水平,编码生物活性GAs失活酶的主要成员,被HY5 / HYH依赖性的低温显着上调。此外, hy5 hyh 突变体在增强低温下花青素积累方面对PAC不敏感。根据这些数据,我们提出,GA信号与HY5 / HYH一起可能在低温诱导的花青素积聚过程中发挥重要作用。

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