Bakshi Achala, Moin Mazahar, Datla Raju, Kirti P B
a Department of Plant Sciences , University of Hyderabad , Hyderabad.
b National Research Council of Canada , Saskatoon , Saskatchewan , Canada.
Plant Signal Behav. 2017 Sep 2;12(9):e1362519. doi: 10.1080/15592324.2017.1362519. Epub 2017 Aug 17.
Expression analysis of genes associated with development at different growth stages such as shoot apical meristem (SAM), root apical meristem (RAM), shoot and root tissues 10 DAG, flowers and grains of 2 high expression transgenic lines of rice ectopically expressing AtTOR revealed the involvement of AtTOR in transcriptional regulation of these genes. We have observed that in the SAM of these 2 selected lines, TR-2.24 and TR-15.1, OsFON1 and OsFON4 (orthologs of AtCLV1 and AtCLV3, respectively), OsKNOX2, OsKNOX3 and OsWOX3 became upregulated. The upregulation of OsFON1 and OsFON4 is likely to be involved in the maintenance of effective meristem size of the inflorescence and phyllotaxis. The grains and spikes of transgenic plants exhibited enhanced transcript levels of OsMADS1, OsMADS6, and OsMADS29 further implicating the role of TOR in modulating the expression of the genes in rice grain formation and development. Moreover, the upregulation of auxin transporter, PIN1c in RAM and roots derived from seedlings 10 DAG showed the involvement of TOR in root development. The seeds of 2 high expression lines also showed increased expression of OSE2 and GAMYB transcription factors involved in seed development. In summary, the present study, by heterologous expression of AtTOR in rice, demonstrated the involvement of TOR in regulating genes involved in various growth and developmental stages of rice plant and also in photosynthesis, productivity related functions and water-use efficiency.
对不同生长阶段(如茎尖分生组织(SAM)、根尖分生组织(RAM)、10日龄的茎和根组织、花以及谷粒)中与发育相关基因的表达分析表明,在2个异位表达AtTOR的水稻高表达转基因系中,AtTOR参与了这些基因的转录调控。我们观察到,在这2个选定的系TR - 2.24和TR - 15.1的SAM中,OsFON1和OsFON4(分别是AtCLV1和AtCLV3的直系同源基因)、OsKNOX2、OsKNOX3和OsWOX3上调。OsFON1和OsFON4的上调可能参与了花序有效分生组织大小的维持和叶序的调控。转基因植物的谷粒和穗显示OsMADS1、OsMADS6和OsMADS29的转录水平增强,进一步表明TOR在调节水稻谷粒形成和发育相关基因表达中的作用。此外,生长素转运蛋白PIN1c在10日龄幼苗的RAM和根中的上调表明TOR参与根的发育。2个高表达系的种子还显示参与种子发育的OSE2和GAMYB转录因子的表达增加。总之,本研究通过在水稻中异源表达AtTOR,证明了TOR参与调节水稻植株各个生长和发育阶段的相关基因,以及光合作用、生产力相关功能和水分利用效率。