Bakshi Madhunita, Vahabi Khabat, Bhattacharya Samik, Sherameti Irena, Varma Ajit, Yeh Kai-Wun, Baldwin Ian, Johri Atul Kumar, Oelmüller Ralf
Institute of General Botany and Plant Physiology, Friedrich-Schiller-University Jena, Dornburgerstr. 159, D-07743, Jena, Germany.
Max-Planck-Institute for Chemical Ecology, Beutenberg Campus, Hans-Knöll-Straße 8, D-07745, Jena, Germany.
BMC Plant Biol. 2015 Dec 30;15:305. doi: 10.1186/s12870-015-0673-4.
Arabidopsis root growth is stimulated by Piriformospora indica, phosphate limitation and inactivation of the WRKY6 transcription factor. Combinations of these factors induce unexpected alterations in root and shoot growth, root architecture and root gene expression profiles.
The results demonstrate that P. indica promotes phosphate uptake and root development under Pi limitation in wrky6 mutant. This is associated with the stimulation of PHOSPHATE1 expression and ethylene production. Expression profiles from the roots of wrky6 seedlings identified genes involved in hormone metabolism, transport, meristem, cell and plastid proliferation, and growth regulation. 25 miRNAs were also up-regulated in these roots. We generated and discuss here a list of common genes which are regulated in growing roots and which are common to all three growth stimuli investigated in this study.
Since root development of wrky6 plants exposed to P. indica under phosphate limitation is strongly promoted, we propose that common genes which respond to all three growth stimuli are central for the control of root growth and architecture. They can be tested for optimizing root growth in model and agricultural plants.
拟南芥根的生长受到印度梨形孢、磷限制和WRKY6转录因子失活的刺激。这些因素的组合会导致根和地上部分生长、根系结构以及根基因表达谱发生意想不到的变化。
结果表明,在wrky6突变体中,磷限制条件下印度梨形孢促进了磷的吸收和根的发育。这与PHOSPHATE1表达的刺激和乙烯产生有关。对wrky6幼苗根系的表达谱分析确定了参与激素代谢、运输、分生组织、细胞和质体增殖以及生长调节的基因。在这些根系中,25个微小RNA也上调表达。我们在此生成并讨论了一份在生长根中受调控且在本研究中所研究的所有三种生长刺激下都共有的基因列表。
由于在磷限制条件下,暴露于印度梨形孢的wrky6植株的根发育受到强烈促进,我们提出对所有三种生长刺激都有响应的共有基因是控制根生长和结构的核心。可以对它们进行测试,以优化模式植物和农作物的根生长。