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A role for redox factors in shaping root architecture under phosphorus deficiency

机译:缺磷条件下氧化还原因子对根系构型的影响

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摘要

The developmental response of the Arabidopsis root system to low phosphorus (P) availability involves the reduction in primary root elongation accompanied by the formation of numerous lateral roots. We studied the roles of selected redox metabolites, namely, radical oxygen species (ROS) and ascorbic acid (ASC) in the regulation of root system architecture by different P availability. Rapidly growing roots of plants grown on P-sufficient medium synthesize ROS in root elongation zone and quiescent centre. We have demonstrated that the arrest of root elongation at low P medium coincides with the disappearance of ROS from the elongation zone. P-starvation resulted in a decrease in ascorbic acid level in roots. This correlated with a decrease in cell division activity. On the other hand, feeding P-deficient plants with ASC, stimulated mitotic activity in the primary root meristem and partly reversed the inhibition of root growth imposed by low P conditions. In this paper, we discuss the idea of the involvement of redox agents in the regulation of root system architecture under low P availability.
机译:拟南芥根系对低磷(P)利用率的发育响应涉及初级根系伸长率的降低,并伴随着大量侧根的形成。我们研究了选定的氧化还原代谢产物,即自由基氧(ROS)和抗坏血酸(ASC)在通过不同P有效性调节根系结构中的作用。在磷充足的培养基上生长的植物快速生长的根在根伸长区和静止中心合成ROS。我们已经证明,在低磷培养基中根伸长的停止与伸长区中ROS的消失相吻合。 P饥饿导致根部抗坏血酸水平降低。这与细胞分裂活性的降低有关。另一方面,给缺磷的植物饲喂ASC,可以刺激初级根分生组织的有丝分裂活性,并部分逆转了低磷条件对根生长的抑制作用。在本文中,我们讨论了在低P可用性下氧化还原代理参与根系统体系结构调节的想法。

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