4.7 Article

Vacuolar biogenesis and aquaporin expression at early germination of broad bean seeds

Journal

PLANT PHYSIOLOGY AND BIOCHEMISTRY
Volume 82, Issue -, Pages 123-132

Publisher

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.plaphy.2014.05.014

Keywords

Cell elongation; Gene expression; Seed germination; Tonoplast aquaporins; Vacuole biogenesis; Vicia faba minor; Water transport

Categories

Funding

  1. Program of the Presidium of Russian Academy of Sciences Cellular and Molecular Biology
  2. Russian Federation for Basic Research [08-04-00416, 11-04-01139]
  3. CNRS/RAS cooperation agreement [Aquaporins and seed germination] [21263]

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A key event in seed germination is water uptake-mediated growth initiation in embryonic axes. Vicia faba var. minor (broad bean) seeds were used for studying cell growth, vacuolar biogenesis, expression and function of tonoplast water channel proteins (aquaporins) in embryonic axes during seed imbibition, radicle emergence and growth. Hypocotyl and radicle basal cells showed vacuole restoration from protein storage vacuoles, whereas de novo vacuole formation from provacuoles was observed in cells newly produced by root meristem. cDNA fragments of seven novel aquaporin isoforms including five Tonoplast Intrinsic Proteins (TIP) from three sub-types were amplified by PCR. The expression was probed using q-RT-PCR and when possible with isoform-specific antibodies. Decreased expression of TIP3s was associated to the transformation of protein storage vacuoles to vacuoles, whereas enhanced expression of a TIP2 homologue was closely linked to the fast cell elongation. Water channel functioning checked by inhibitory test with mercuric chloride showed closed water channels prior to growth initiation and active water transport into elongating cells. The data point to a crucial role of tonoplast aquaporins during germination, especially during growth of embryonic axes, due to accelerated water uptake and vacuole enlargement resulting in rapid cell elongation. (C) 2014 Elsevier Masson SAS. All rights reserved.

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