Zhu Jiang, Zhang Kun-Xiao, Wang Wen-Shu, Gong Wen, Liu Wen-Cheng, Chen Hong-Guo, Xu Heng-Hao, Lu Ying-Tang
State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China.
College of Chemistry and Biology, Hubei University of Science and Technology, Xianning 437100, Hubei Province, China.
Plant Cell Physiol. 2015 Apr;56(4):727-36. doi: 10.1093/pcp/pcu217. Epub 2014 Dec 31.
Plants exhibit reduced root growth when exposed to low temperature; however, how low temperature modulates root growth remains to be understood. Our study demonstrated that low temperature reduces both meristem size and cell number, repressing the division potential of meristematic cells by reducing auxin accumulation, possibly through the repressed expression of PIN1/3/7 and auxin biosynthesis-related genes, although the experiments with exogenous auxin application also suggest the involvement of other factor(s). In addition, we verified that ARABIDOPSIS RESPONSE REGULATOR 1 (ARR1) and ARR12 are involved in low temperature-mediated inhibition of root growth by showing that the roots of arr1-3 arr12-1 seedlings were less sensitive than wild-type roots to low temperature, in terms of changes in root length and meristem cell number. Furthermore, low temperature reduced the levels of PIN1/3 transcripts and the auxin level to a lesser extent in arr1-3 arr12-1 roots than in wild-type roots, suggesting that cytokinin signaling is involved in the low-temperature-mediated reduction of auxin accumulation. Taken together, our data suggest that low temperature inhibits root growth by reducing auxin accumulation via ARR1/12.
植物在低温条件下根系生长会受到抑制;然而,低温如何调节根系生长仍有待了解。我们的研究表明,低温会减小分生组织大小并减少细胞数量,通过减少生长素积累来抑制分生细胞的分裂潜能,这可能是通过PIN1/3/7和生长素生物合成相关基因的表达受抑制实现的,尽管外源生长素应用实验也表明还有其他因素参与其中。此外,我们通过显示arr1-3 arr12-1幼苗的根在根长和分生细胞数量变化方面对低温的敏感性低于野生型根,证实了拟南芥响应调节因子1(ARR1)和ARR12参与了低温介导的根系生长抑制。此外,与野生型根相比,低温在arr1-3 arr12-1根中降低PIN1/3转录本水平和生长素水平的程度较小,这表明细胞分裂素信号传导参与了低温介导的生长素积累减少过程。综上所述,我们的数据表明低温通过ARR1/12减少生长素积累来抑制根系生长。