Nagarajan Vinay K, Satheesh Viswanathan, Poling Michael D, Raghothama Kashchandra G, Jain Ajay
Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, IN 47907-2010, USA, Fax: +1 765-494-9613.
National Research Centre on Plant Biotechnology, Lal Bahadur Shastri Building, Pusa Campus, New Delhi-110012, India, Fax: +91 11 25843984.
Plant Cell Physiol. 2016 Jun;57(6):1142-52. doi: 10.1093/pcp/pcw063. Epub 2016 Mar 25.
Phosphate (Pi), an essential macronutrient required for growth and development of plants, is often limiting in soils. Pi deficiency modulates the expression of Pi starvation-responsive (PSR) genes including transcription factors (TFs). Here, we elucidated the role of the MYB-related TF HYPERSENSITIVITY TO LOW PHOSPHATE-ELICITED PRIMARY ROOT SHORTENING1 HOMOLOG2 (HHO2, At1g68670) in regulating Pi acquisition and signaling in Arabidopsis thaliana HHO2 was specifically and significantly induced in different tissues in response to Pi deprivation. Transgenic seedlings expressing 35S::GFP::HHO2 confirmed the localization of HHO2 to the nucleus. Knockout mutants of HHO2 showed significant reduction in number and length of first- and higher-order lateral roots and Pi content of different tissues compared with the wild-type irrespective of the Pi regime. In contrast, HHO2-overexpressing lines exhibited augmented lateral root development, enhanced Pi uptake rate and higher Pi content in leaf compared with the wild-type. Expression levels of PSR genes involved in Pi sensing and signaling in mutants and overexpressors were differentially regulated as compared with the wild-type. Attenuation in the expression of HHO2 in the phr1 mutant suggested a likely influence of PHR1 in HHO2-mediated regulation of a subset of traits governing Pi homeostasis.
磷酸盐(Pi)是植物生长和发育所需的必需大量营养素,但在土壤中往往含量有限。Pi缺乏会调节包括转录因子(TFs)在内的Pi饥饿响应(PSR)基因的表达。在此,我们阐明了MYB相关转录因子低磷诱导主根缩短1同源物2(HHO2,At1g68670)在拟南芥中调节Pi获取和信号传导中的作用。HHO2在不同组织中响应Pi剥夺而被特异性且显著地诱导。表达35S::GFP::HHO2的转基因幼苗证实了HHO2定位于细胞核。与野生型相比,无论Pi供应情况如何,HHO2的敲除突变体在一级和更高阶侧根的数量和长度以及不同组织的Pi含量上均显著降低。相反,与野生型相比,过表达HHO2的株系表现出侧根发育增强、Pi吸收速率提高以及叶片中Pi含量更高。与野生型相比,突变体和过表达体中参与Pi感知和信号传导的PSR基因的表达水平受到不同程度的调节。phr1突变体中HHO2表达的减弱表明PHR1可能对HHO2介导的调控Pi稳态的一部分性状有影响。