University of Stavanger, Centre for Organelle Research, Faculty of Science and Technology, N-4036 Stavanger, Norway.
University of Stavanger, Centre for Organelle Research, Faculty of Science and Technology, N-4036 Stavanger, Norway.
Phytochemistry. 2014 Feb;98:34-40. doi: 10.1016/j.phytochem.2013.12.006. Epub 2013 Dec 31.
Ternary complexes consisting of a R2R3-MYB, a bHLH and a WD40 protein (MBW complexes) regulate trichome formation and anthocyanin synthesis in plants. Small R3-MYBs interact with the MBW complexes to exert a negative feedback, and thereby participate in regulation of epidermal cell fate, for example trichome numbers and clustering in leaves. In Arabidopsis thaliana, GL3, a bHLH transcription factor, is important in the MBW complex regulating trichome formation as well as in the MBW complex induced by nitrogen depletion and promoting anthocyanin formation. The small R3-MYBs: CPC, TRY, ETC1, ETC2, ETC3/CPL3, TCL1, MYBL2, are all known to interact with GL3. We here investigated these R3-MYBs in leaves of Arabidopsis rosette stage plants under nitrogen depletion to examine if the small MYBs would interfere with anthocyanin accumulation in plants under normal (autotrophic) growth conditions. CPC expression was enhanced two-fold in response to nitrogen depletion, and ETC3/CPL3 expression was enhanced by almost an order of magnitude (9×). Knockout of ETC3/CPL3 did not influence anthocyanin accumulation, but the results establish ETC3/CPL3 as a nitrate regulated gene and a putative candidate for being involved in nitrate status signaling and root development. Other R3-MYBs tested were not significantly influenced by nitrogen depletion. In conclusion, only CPC expression increased and clearly exerted a negative feedback on anthocyanin accumulation during nitrogen starvation in rosette leaves.
由 R2R3-MYB、bHLH 和 WD40 蛋白组成的三元复合物(MBW 复合物)调节植物的毛状体形成和花青素合成。小 R3-MYB 与 MBW 复合物相互作用,发挥负反馈作用,从而参与表皮细胞命运的调节,例如叶片上的毛状体数量和聚类。在拟南芥中,GL3,一种 bHLH 转录因子,在 MBW 复合物调节毛状体形成以及氮饥饿诱导和促进花青素形成的 MBW 复合物中很重要。小 R3-MYB:CPC、TRY、ETC1、ETC2、ETC3/CPL3、TCL1、MYBL2,都已知与 GL3 相互作用。我们在这里研究了氮饥饿下拟南芥莲座叶阶段植物叶片中的这些 R3-MYB,以检查在正常(自养)生长条件下,这些小 MYB 是否会干扰植物中花青素的积累。CPC 的表达在氮饥饿时增加了两倍,ETC3/CPL3 的表达增加了近一个数量级(9 倍)。ETC3/CPL3 的敲除对花青素积累没有影响,但结果表明 ETC3/CPL3 是一个硝酸盐调节基因,也是参与硝酸盐状态信号转导和根发育的候选基因。其他测试的 R3-MYB 受氮饥饿的影响不显著。总之,只有 CPC 的表达增加,并在氮饥饿期间对花青素积累明显发挥负反馈作用。