Tomato Phosphate Transporter Genes Are Differentially Regulated in Plant Tissues by Phosphorus1

Author:

Liu Chunming1,Muchhal Umesh S.1,Uthappa Mukatira1,Kononowicz Andrzej K.2,Raghothama Kaschandra G.1

Affiliation:

1. Department of Horticulture, Purdue University, West Lafayette, Indiana 47907–1165 (C.L., U.S.M., M.U., K.G.R.)

2. Department of Plant Cytochemistry and Cytogenetics, University of Lodz, 90–237 Lodz, Poland (A.K.K.)

Abstract

Abstract Phosphorus is a major nutrient acquired by roots via high-affinity inorganic phosphate (Pi) transporters. In this paper, we describe the tissue-specific regulation of tomato (Lycopersicon esculentum L.) Pi-transporter genes by Pi. The encoded peptides of the LePT1 and LePT2genes belong to a family of 12 membrane-spanning domain proteins and show a high degree of sequence identity to known high-affinity Pi transporters. Both genes are highly expressed in roots, although there is some expression of LePT1 in leaves. Their expression is markedly induced by Pi starvation but not by starvation of nitrogen, potassium, or iron. The transcripts are primarily localized in root epidermis under Pi starvation. Accumulation of LePT1 message was also observed in palisade parenchyma cells of Pi-starved leaves. Our data suggest that the epidermally localized Pi transporters may play a significant role in acquiring the nutrient under natural conditions. Divided root-system studies support the hypothesis that signal(s) for the Pi-starvation response may arise internally because of the changes in cellular concentration of phosphorus.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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