Niu Yaofang, Jin Gulei, Li Xin, Tang Caixian, Zhang Yongsong, Liang Yongchao, Yu Jingquan
Department of Horticulture, College of Agricultural and Biotechnology, Zhejiang University, Hangzhou 310058, PR China College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, PR China.
College of Agricultural and Biotechnology, Zhejiang University, Hangzhou 310058, PR China.
J Exp Bot. 2015 Jul;66(13):3841-54. doi: 10.1093/jxb/erv181. Epub 2015 Apr 28.
A balanced supply of essential nutrients is an important factor influencing root architecture in many plants, yet data related to the interactive effects of two nutrients on root growth are limited. Here, we investigated the interactive effect between phosphorus (P) and magnesium (Mg) on root growth of Arabidopsis grown in pH-buffered agar medium at different P and Mg levels. The results showed that elongation and deviation of primary roots were directly correlated with the amount of P added to the medium but could be modified by the Mg level, which was related to the root meristem activity and stem-cell division. High P enhanced while low P decreased the tip-focused fluorescence signal of auxin biosynthesis, transport, and redistribution during elongation of primary roots; these effects were greater under low Mg than under high Mg. The altered root growth in response to P and Mg supply was correlated with AUX1, PIN2, and PIN3 mRNA abundance and expression and the accumulation of the protein. Application of either auxin influx inhibitor or efflux inhibitor inhibited the elongation and increased the deviation angle of primary roots, and decreased auxin level in root tips. Furthermore, the auxin-transport mutants aux1-22 and eir1-1 displayed reduced root growth and increased the deviation angle. Our data suggest a profound effect of the combined supply of P and Mg on the development of root morphology in Arabidopsis through auxin signals that modulate the elongation and directional growth of primary root and the expression of root differentiation and development genes.
必需营养元素的均衡供应是影响许多植物根系结构的一个重要因素,然而,关于两种营养元素对根系生长的交互作用的数据却很有限。在此,我们研究了磷(P)和镁(Mg)在不同P和Mg水平下对生长于pH缓冲琼脂培养基中的拟南芥根系生长的交互作用。结果表明,主根的伸长和偏斜与添加到培养基中的P量直接相关,但可被Mg水平所改变,这与根分生组织活性和干细胞分裂有关。高磷增强而低磷降低了主根伸长过程中生长素生物合成、运输和重新分布的根尖聚焦荧光信号;在低镁条件下这些影响比高镁条件下更大。响应P和Mg供应而改变的根系生长与AUX1、PIN2和PIN3 mRNA丰度、表达以及蛋白质积累相关。应用生长素流入抑制剂或流出抑制剂均抑制了主根的伸长并增加了主根的偏斜角度,同时降低了根尖中的生长素水平。此外,生长素运输突变体aux1-22和eir1-1表现出根系生长减少和偏斜角度增加。我们的数据表明,P和Mg联合供应通过生长素信号对拟南芥根系形态发育具有深远影响,该信号调节主根的伸长和定向生长以及根分化和发育基因的表达。