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拟南芥突变体lpsi显示出根系对局部磷有效性响应的损伤。

Arabidopsis thaliana mutant lpsi reveals impairment in the root responses to local phosphate availability.

作者信息

Karthikeyan Athikkattuvalasu S, Jain Ajay, Nagarajan Vinay K, Sinilal Bhaskaran, Sahi Shivendra V, Raghothama Kashchandra G

机构信息

Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, IN 47907-1165, USA.

National Research Centre on Plant Biotechnology, Indian Agricultural Research Institute, New Delhi 110012, India.

出版信息

Plant Physiol Biochem. 2014 Apr;77:60-72. doi: 10.1016/j.plaphy.2013.12.009. Epub 2014 Jan 7.

Abstract

Phosphate (Pi) deficiency triggers local Pi sensing-mediated inhibition of primary root growth and development of root hairs in Arabidopsis (Arabidopsis thaliana). Generation of activation-tagged T-DNA insertion pools of Arabidopsis expressing the luciferase gene (LUC) under high-affinity Pi transporter (Pht1;4) promoter, is an efficient approach for inducing genetic variations that are amenable for visual screening of aberrations in Pi deficiency responses. Putative mutants showing altered LUC expression during Pi deficiency were identified and screened for impairment in local Pi deficiency-mediated inhibition of primary root growth. An isolated mutant was analyzed for growth response, effects of Pi deprivation on Pi content, primary root growth, root hair development, and relative expression levels of Pi starvation-responsive (PSR) genes, and those implicated in starch metabolism and Fe and Zn homeostasis. Pi deprived local phosphate sensing impaired (lpsi) mutant showed impaired primary root growth and attenuated root hair development. Although relative expression levels of PSR genes were comparable, there were significant increases in relative expression levels of IRT1, BAM3 and BAM5 in Pi deprived roots of lpsi compared to those of the wild-type. Better understanding of molecular responses of plants to Pi deficiency or excess will help to develop suitable remediation strategies for soils with excess Pi, which has become an environmental concern. Hence, lpsi mutant will serve as a valuable tool in identifying molecular mechanisms governing adaptation of plants to Pi deficiency.

摘要

磷酸盐(Pi)缺乏会触发拟南芥(Arabidopsis thaliana)中局部Pi感知介导的主根生长抑制和根毛发育。在高亲和力Pi转运体(Pht1;4)启动子下表达荧光素酶基因(LUC)的拟南芥激活标签T-DNA插入文库的构建,是一种诱导遗传变异的有效方法,这些变异适合于对Pi缺乏反应异常进行视觉筛选。鉴定出在Pi缺乏期间显示LUC表达改变的推定突变体,并筛选其在局部Pi缺乏介导的主根生长抑制中的损伤。对一个分离的突变体进行生长反应、Pi剥夺对Pi含量、主根生长、根毛发育以及Pi饥饿响应(PSR)基因以及与淀粉代谢、铁和锌稳态相关基因的相对表达水平的影响分析。Pi剥夺局部磷酸盐感知受损(lpsi)突变体表现出主根生长受损和根毛发育减弱。尽管PSR基因的相对表达水平相当,但与野生型相比,lpsi突变体在Pi剥夺根中IRT1、BAM3和BAM5的相对表达水平显著增加。更好地了解植物对Pi缺乏或过量的分子反应将有助于为Pi过量的土壤制定合适的修复策略,Pi过量已成为一个环境问题。因此,lpsi突变体将成为鉴定植物适应Pi缺乏的分子机制的有价值工具。

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