Kim Sang-Gyu, Lee An-Kyo, Yoon Hye-Kyung, Park Chung-Mo
Department of Chemistry, Molecular Signaling Laboratory, Seoul National University, Seoul 151-742, Korea.
Plant J. 2008 Jul;55(1):77-88. doi: 10.1111/j.1365-313X.2008.03493.x.
Gibberellic acid (GA) plays a key role in seed germination through coordinate interactions with other growth hormones and external signals. However, the way in which external signals are incorporated into the GA-signaling pathway is largely unknown. Here, we demonstrate that a membrane-bound NAC transcription factor NTL8 mediates the salt regulation of seed germination via the GA pathway, primarily independently of ABA. NTL8 is induced by high salinity. Its expression is also elevated by a GA biosynthetic inhibitor paclabutrazol (PAC), but is repressed by GA. Notably, high salinity greatly represses the GA3 oxidase 1 (GA3ox1) gene, supporting the hypothesis that salt signals inhibit seed germination by repressing GA biosynthesis. Induction of NTL8 and repression of GA3ox1 by high salinity still occur in the ABA-deficient aba3-1 mutant. Accordingly, the germination of a T-DNA insertional ntl8-1 mutant seed is resistant to high salinity and PAC. Interestingly, NTL8 is significantly induced during cold imbibition, but the induction declines quickly in germinating seeds, like RGL2. NTL8 activity is also regulated by controlled proteolytic release of the membrane-bound NTL8 form. Its release from the membranes is activated by PAC and high salinity. Our data support that NTL8 modulates GA-mediated salt signaling in regulating seed germination. This regulatory scheme may provide an adaptative fitness, which delays seed germination under high salinity conditions.
赤霉素(GA)通过与其他生长激素和外部信号的协同相互作用在种子萌发中起关键作用。然而,外部信号如何整合到GA信号通路中在很大程度上尚不清楚。在这里,我们证明膜结合的NAC转录因子NTL8通过GA途径介导种子萌发的盐调节,主要独立于脱落酸(ABA)。NTL8由高盐诱导。其表达也被GA生物合成抑制剂多效唑(PAC)提高,但被GA抑制。值得注意的是,高盐极大地抑制了GA3氧化酶1(GA3ox1)基因,支持了盐信号通过抑制GA生物合成来抑制种子萌发的假说。高盐对NTL8的诱导和对GA3ox1的抑制在ABA缺陷型aba3-1突变体中仍然发生。因此,T-DNA插入突变体ntl8-1种子的萌发对高盐和PAC具有抗性。有趣的是,在低温吸胀期间NTL8被显著诱导,但在萌发种子中这种诱导迅速下降,类似于RGL2。NTL8的活性也受膜结合形式的NTL8的可控蛋白水解释放调节。其从膜上的释放被PAC和高盐激活。我们的数据支持NTL8在调节种子萌发中调节GA介导的盐信号。这种调节机制可能提供一种适应性,即在高盐条件下延迟种子萌发。