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      Two TIP-like genes encoding aquaporins are expressed in sunflower guard cells.

      The Plant Journal
      Amino Acid Sequence, Animals, Base Sequence, Cell Membrane Permeability, Codon, DNA, Complementary, Female, In Situ Hybridization, Ion Channels, biosynthesis, Molecular Sequence Data, Oocytes, physiology, Plant Cells, Plant Proteins, chemistry, Plants, metabolism, RNA, Messenger, Sequence Alignment, Sequence Homology, Nucleic Acid, Transcription, Genetic, Water, Xenopus laevis

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          Abstract

          SunTIP7 and SunTIP20 are closely related sunflower cDNAs showing a deduced amino acid sequence homologous to proteins of the tonoplast intrinsic protein (TIP) family. Their expression in Xenopus oocytes caused a marked increase in osmotic water permeability (demonstrating that they are water channels) which was sensitive to mercury. In leaves, in situ hybridization revealed that both SunTIP7 and SunTIP20 mRNA accumulated in the guard cells. The possible involvement of SunTIPs in stomatal movement was examined by comparing the time course of transcript accumulation and leaf conductance during the daily cycle and following a water limitation. SunTIP7 mRNA fluctuations fitted changes occurring in leaf conductance. The transcript levels were markedly and systematically increased during stomatal closure. It is suggested that aquaporin SunTIP7 facilitates water exit associated with a decrease in guard cell volume. In the same conditions, the transcript level of SunTIP20 remained constant indicating that SunTIP genes are differentially regulated within the same cell.

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