Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore
Abstract
Net fluxes of Ca2+ and H+ ions were measured non-invasively close to the surface of Phycomyces blakesleeanus sporangiophores stage I using ion-selective vibrating microelectrodes. The measurements were performed on a wild type (Wt) and a gravitropic mutant A909 kept in either vertical or tilted orientation. Microelectrodes were positioned 4 mu m from the surface of sporangiophore, and ion fluxes were recorded from the apical (0-20 mu m) and subapical (50-100 mu m) regions. The magnitude and direction of ionic fluxes measured were dependent on the distance from the tip along the growing zone of sporangiophore. Vertically oriented sporangiophores displayed characteristic tip-to-base ion fluxes patterns. Ca2+ and H+ fluxes recorded from apical region of Wt sporangiophores were inward-directed, while ion fluxes from subapical locations occurred in both directions. In contrast to Wt, mutant A909 showed opposite (outward) direction of Ca2+ fluxes and reduced H+ influxes in the apical region.... Following gravistimulation, the magnitude and direction of ionic fluxes were altered. Wt sporangiophore exhibited oppositely directed fluxes on the lower (influx) and the upper (efflux) sides of the cell, while mutant A909 did not show such patterns. A variable elongation growth in vertical position and reduced growth rate upon gravistimulation were observed in both strains. The data show that tip-growing sporangiophores exhibit a tip-to-base ion flux pattern which changes characteristically upon gravistimulation in Wt in contrast to the mutant A909 with a strongly reduced gravitropic response.
Keywords:
Tip growth / Ion-selective microelectrodes / Ion fluxes / Growth rate / Gravitropic bendingSource:
Planta, 2012, 236, 6, 1817-1829Publisher:
- Springer, New York
Funding / projects:
- DAADDeutscher Akademischer Austausch Dienst (DAAD)European Commission
- The membranes as sites of interaction between the intracellular and apoplastic environments: studies of the bioenergetics and signaling using biophysical and biochemical techniques. (RS-173040)
DOI: 10.1007/s00425-012-1738-3
ISSN: 0032-0935
PubMed: 22910875
WoS: 000311398100012
Scopus: 2-s2.0-84869506020
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Institution/Community
Institut za multidisciplinarna istraživanjaTY - JOUR AU - Živanović, Branka D. PY - 2012 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/588 AB - Net fluxes of Ca2+ and H+ ions were measured non-invasively close to the surface of Phycomyces blakesleeanus sporangiophores stage I using ion-selective vibrating microelectrodes. The measurements were performed on a wild type (Wt) and a gravitropic mutant A909 kept in either vertical or tilted orientation. Microelectrodes were positioned 4 mu m from the surface of sporangiophore, and ion fluxes were recorded from the apical (0-20 mu m) and subapical (50-100 mu m) regions. The magnitude and direction of ionic fluxes measured were dependent on the distance from the tip along the growing zone of sporangiophore. Vertically oriented sporangiophores displayed characteristic tip-to-base ion fluxes patterns. Ca2+ and H+ fluxes recorded from apical region of Wt sporangiophores were inward-directed, while ion fluxes from subapical locations occurred in both directions. In contrast to Wt, mutant A909 showed opposite (outward) direction of Ca2+ fluxes and reduced H+ influxes in the apical region. Following gravistimulation, the magnitude and direction of ionic fluxes were altered. Wt sporangiophore exhibited oppositely directed fluxes on the lower (influx) and the upper (efflux) sides of the cell, while mutant A909 did not show such patterns. A variable elongation growth in vertical position and reduced growth rate upon gravistimulation were observed in both strains. The data show that tip-growing sporangiophores exhibit a tip-to-base ion flux pattern which changes characteristically upon gravistimulation in Wt in contrast to the mutant A909 with a strongly reduced gravitropic response. PB - Springer, New York T2 - Planta T1 - Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore EP - 1829 IS - 6 SP - 1817 VL - 236 DO - 10.1007/s00425-012-1738-3 ER -
@article{ author = "Živanović, Branka D.", year = "2012", abstract = "Net fluxes of Ca2+ and H+ ions were measured non-invasively close to the surface of Phycomyces blakesleeanus sporangiophores stage I using ion-selective vibrating microelectrodes. The measurements were performed on a wild type (Wt) and a gravitropic mutant A909 kept in either vertical or tilted orientation. Microelectrodes were positioned 4 mu m from the surface of sporangiophore, and ion fluxes were recorded from the apical (0-20 mu m) and subapical (50-100 mu m) regions. The magnitude and direction of ionic fluxes measured were dependent on the distance from the tip along the growing zone of sporangiophore. Vertically oriented sporangiophores displayed characteristic tip-to-base ion fluxes patterns. Ca2+ and H+ fluxes recorded from apical region of Wt sporangiophores were inward-directed, while ion fluxes from subapical locations occurred in both directions. In contrast to Wt, mutant A909 showed opposite (outward) direction of Ca2+ fluxes and reduced H+ influxes in the apical region. Following gravistimulation, the magnitude and direction of ionic fluxes were altered. Wt sporangiophore exhibited oppositely directed fluxes on the lower (influx) and the upper (efflux) sides of the cell, while mutant A909 did not show such patterns. A variable elongation growth in vertical position and reduced growth rate upon gravistimulation were observed in both strains. The data show that tip-growing sporangiophores exhibit a tip-to-base ion flux pattern which changes characteristically upon gravistimulation in Wt in contrast to the mutant A909 with a strongly reduced gravitropic response.", publisher = "Springer, New York", journal = "Planta", title = "Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore", pages = "1829-1817", number = "6", volume = "236", doi = "10.1007/s00425-012-1738-3" }
Živanović, Branka D.. (2012). Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore. in Planta Springer, New York., 236(6), 1817-1829. https://doi.org/10.1007/s00425-012-1738-3
Živanović, Branka D.. Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore. in Planta. 2012;236(6):1817-1829. doi:10.1007/s00425-012-1738-3 .
Živanović, Branka D., "Surface tip-to-base Ca2+ and H+ ionic fluxes are involved in apical growth and graviperception of the Phycomyces stage I sporangiophore" in Planta, 236, no. 6 (2012):1817-1829, https://doi.org/10.1007/s00425-012-1738-3 . .