School of Life Sciences, Shandong University, 27 Shanda South Road, Jinan 250100, PR China.
Plant Sci. 2019 Jun;283:177-188. doi: 10.1016/j.plantsci.2019.02.011. Epub 2019 Mar 12.
Phytohormone signaling is involved in the low-phosphate (LP) response and causes root system changes. To understand the roles of auxin and gibberellic acid (GA) in the maize response to LP stress, inbred line Q319 was used to identify the changes in root morphology and the gene expression response to LP stress with or without exogenous auxin, GA or their inhibitors. The root morphology, IAA and GAs concentration and genes related to the LP response, cell elongation and division, auxin transport and signaling, and GA synthesis and signaling were analyzed. The LP-induced maize root morphological adaption was dependent on changes in the expression of related genes, like IPS1, pht1;1 LPR1b, KRPs, and EXPB1-4. The altered local auxin concentration and signaling were involved in promoting axial root elongation and reducing lateral root density and length under LP conditions, which were regulated by PID and PP2A activity and the auxin signaling pathway. The upregulation of the GA synthesis genes AN1, GA20ox1, and GA20ox2 and the downregulation of the GA inactive genes GA2ox1 and GA2ox2 were observed in maize roots subjected to LP stress, and the increased GA biosynthesis and signaling were involved in root growth. Both hormones participate in LP stress response and jointly regulated root modification and LP acclimation in maize.
植物激素信号转导参与低磷(LP)反应,并导致根系变化。为了了解生长素和赤霉素(GA)在玉米对 LP 胁迫响应中的作用,利用自交系 Q319 鉴定了根形态的变化以及在有或没有外源生长素、GA 或其抑制剂时对 LP 胁迫的基因表达响应。分析了与 LP 响应、细胞伸长和分裂、生长素运输和信号转导以及 GA 合成和信号转导相关的根形态、IAA 和 GAs 浓度以及基因。LP 诱导的玉米根形态适应依赖于相关基因表达的变化,如 IPS1、pht1;1 LPR1b、KRPs 和 EXPB1-4。改变的局部生长素浓度和信号转导参与在 LP 条件下促进轴向根伸长和减少侧根密度和长度,这受 PID 和 PP2A 活性以及生长素信号通路的调节。在 LP 胁迫下,玉米根中观察到 GA 合成基因 AN1、GA20ox1 和 GA20ox2 的上调和 GA 失活基因 GA2ox1 和 GA2ox2 的下调,增加的 GA 生物合成和信号转导参与根生长。这两种激素都参与 LP 应激反应,并共同调节玉米根系的修饰和 LP 适应。