Bulgakov Victor P, Veremeichik Galina N, Shkryl Yuri N
Institute of Biology and Soil Science of the Far East Branch of Russian Academy of Sciences, 159 Stoletija Str., Vladivostok, 690022, Russia,
Biotechnol Lett. 2015 Apr;37(4):921-5. doi: 10.1007/s10529-014-1743-7. Epub 2014 Dec 10.
The rolB gene of Agrobacterium rhizogenes renders cells more tolerant of environmental stresses and increases their defense potential. However, these effects, coupled with the developmental abnormalities caused by rolB, have not yet been explained. In rolB-transformed Arabidopsis thaliana cells, we detected a 2.2 to 7-fold increase in the expression of genes encoding core and accessory proteins (DCL1, SE, HYL1, AGO1, TGH, DDL, HEN1, AGO4 and RDR2) of the microRNA processing machinery. However, the rolB gene did not affect the expression of DCL2, DCL3 and HST. The diverse and complex effects of rolB on transformed plant cells may be attributable to changes caused by this gene in particular RNA silencing pathways.
发根农杆菌的rolB基因使细胞对环境胁迫更具耐受性,并增强其防御潜力。然而,这些效应,连同rolB引起的发育异常,尚未得到解释。在rolB转化的拟南芥细胞中,我们检测到参与微小RNA加工机制的核心和辅助蛋白(DCL1、SE、HYL1、AGO1、TGH、DDL、HEN1、AGO4和RDR2)编码基因的表达增加了2.2至7倍。然而,rolB基因并不影响DCL2、DCL3和HST的表达。rolB对转化植物细胞的多样而复杂的效应可能归因于该基因在特定RNA沉默途径中引起的变化。