Efimova Marina V, Vankova Radomira, Kusnetsov Victor V, Litvinovskaya Raisa P, Zlobin Ilya E, Dobrev Petre, Vedenicheva Nina P, Savchuk Alina L, Karnachuk Raisa A, Kudryakova Natalia V, Kuznetsov Vladimir V
National Research Tomsk State University, Lenin Av., 36, 634050 Tomsk, Russia.
Institute of Experimental Botany, AS CR, Rozvojova 263, 165 02 Prague 6, Czech Republic.
Steroids. 2017 Apr;120:32-40. doi: 10.1016/j.steroids.2016.12.004. Epub 2016 Dec 18.
In order to evaluate whether brassinosteroids (BS) and green light regulate the transcription of plastid genes in a cross-talk with cytokinins (CKs), transcription rates of 12 plastid genes (ndhF, rrn23, rpoB, psaA, psaB, rrn16, psbA, psbD, psbK, rbcL, atpB, and trnE/trnY) as well as the accumulation of transcripts of some photoreceptors (PHYA, CRY2, CRY1A, and CRY1B) and signaling (SERK and CAS) genes were followed in detached etiolated barley leaves exposed to darkness, green or white light ±1μm 24-epibrassinolide (EBL). EBL in the dark was shown to up-regulate the transcription of 12 plastid genes, while green light activated 10 genes and the EBL combined with the green light affected the transcription of only two genes (psaB and rpoB). Green light inhibited the expression of photoreceptor genes, except for CRY1A. Under the green light, EBL practically did not affect the expression of CRY1A, CAS and SERK genes, but it reduced the influence of white light on the accumulation of CAS, CRY1A, CRY1B, and SERK gene transcripts. The total content of BS in the dark and under white light remained largely unchanged, while under green light the total content of BRs (brassinolide, castasterone, and 6-deoxocastasterone) and HBRs (28-homobrassinolide, 28-homocastasterone, and 6-deoxo-28-homocastasterone) increased. The EBL-dependent up-regulation of plastome transcription in the dark was accompanied by a significant decrease in CK deactivation by O-glucosylation. However, no significant effect on the content of active CKs was detected. EBL combined with green light moderately increased the contents of trans-zeatin and isopentenyladenine, but had a negative effect on cis-zeatin. The most significant promotive effect of EBL on active CK bases was observed in white light. The data obtained suggest the involvement of CKs in the BS- and light-dependent transcription regulation of plastid genes.
为了评估油菜素类固醇(BS)和绿光是否与细胞分裂素(CKs)相互作用来调节质体基因的转录,我们检测了12个质体基因(ndhF、rrn23、rpoB、psaA、psaB、rrn16、psbA、psbD、psbK、rbcL、atpB和trnE/trnY)的转录速率,以及一些光受体(PHYA、CRY2、CRY1A和CRY1B)和信号转导(SERK和CAS)基因的转录本积累情况。实验材料为离体黄化大麦叶片,分别置于黑暗、绿光或白光条件下,并添加或不添加1μm 24-表油菜素内酯(EBL)。结果表明,黑暗中EBL能上调12个质体基因的转录,绿光能激活10个基因,而EBL与绿光共同作用仅影响两个基因(psaB和rpoB)的转录。绿光抑制了除CRY1A之外的光受体基因的表达。在绿光下,EBL实际上不影响CRY1A、CAS和SERK基因的表达,但它减弱了白光对CAS、CRY1A、CRY1B和SERK基因转录本积累的影响。黑暗和白光条件下BS的总含量基本保持不变,而绿光下BRs(油菜素内酯、油菜甾酮和6-脱氧油菜甾酮)和HBRs(28-高油菜素内酯、28-高油菜甾酮和6-脱氧-28-高油菜甾酮)的总含量增加。黑暗中EBL依赖的质体基因组转录上调伴随着O-糖基化导致的CK失活显著降低。然而,未检测到对活性CKs含量的显著影响。EBL与绿光共同作用适度增加了反式玉米素和异戊烯腺嘌呤的含量,但对顺式玉米素产生了负面影响。在白光下观察到EBL对活性CK碱基的促进作用最为显著。所得数据表明CKs参与了BS和光依赖的质体基因转录调控。