Ramaiah Madhuvanthi, Jain Ajay, Raghothama Kashchandra G
Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907-1165.
Plant Physiol. 2014 Mar;164(3):1484-98. doi: 10.1104/pp.113.231183. Epub 2014 Jan 6.
Inorganic phosphate (Pi) availability is a major factor determining growth and consequently the productivity of crops. However, it is one of the least available macronutrients due to its high fixation in the rhizospheres. To overcome this constraint, plants have developed adaptive responses to better acquire, utilize, and recycle Pi. Molecular determinants of these adaptive mechanisms include transcription factors (TFs) that play a major role in transcriptional control, thereby regulating genome-scale networks. In this study, we have characterized the biological role of Arabidopsis thaliana Ethylene Response Factor070 (AtERF070), a Pi starvation-induced TF belonging to the Apetala2/Ethylene Response Factor family of TFs in Arabidopsis (Arabidopsis thaliana). It is localized to the nucleus and induced specifically in Pi-deprived roots and shoots. RNA interference-mediated suppression of AtERF070 led to augmented lateral root development resulting in higher Pi accumulation, whereas there were reductions in both primary root length and lateral root number in 12-d-old transgenic seedlings overexpressing AtERF070. When the overexpressing lines were grown to maturity under greenhouse conditions, they revealed a stunted bushy appearance that could be rescued by gibberellic acid application. Furthermore, a number of Pi starvation-responsive genes were modulated in AtERF070-overexpressing and RNA interference lines, thereby suggesting a potential role for this TF in maintaining Pi homeostasis.
无机磷酸盐(Pi)的有效性是决定作物生长进而影响其生产力的主要因素。然而,由于其在根际的高固定性,它是最不易获得的大量营养素之一。为克服这一限制,植物已形成适应性反应以更好地获取、利用和循环利用Pi。这些适应性机制的分子决定因素包括转录因子(TFs),它们在转录调控中起主要作用,从而调节基因组规模的网络。在本研究中,我们对拟南芥乙烯反应因子070(AtERF070)的生物学作用进行了表征,AtERF070是一种Pi饥饿诱导的TF,属于拟南芥(Arabidopsis thaliana)中APETALA2/乙烯反应因子家族的TFs。它定位于细胞核,并且在缺Pi的根和芽中特异性诱导。RNA干扰介导的AtERF070抑制导致侧根发育增强,从而使Pi积累增加,而在过表达AtERF070的12日龄转基因幼苗中,主根长度和侧根数量均减少。当过表达系在温室条件下生长至成熟时,它们表现出矮小丛生的外观,施用赤霉素可使其恢复。此外,一些Pi饥饿响应基因在AtERF070过表达和RNA干扰系中受到调控,从而表明该TF在维持Pi稳态中具有潜在作用。