Identification of hyperpolarization-activated calcium channels in apical pollen tubes of Pyrus pyrifolia

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Abstract

The pollen tube has been widely used to study the mechanisms underlying polarized tip growth in plants. A steep tip-to-base gradient of free cytosolic calcium ([Ca2+]cyt) is essential for pollen-tube growth. Local Ca2+ influx mediated by Ca2+-permeable channels plays a key role in maintaining this [Ca2+]cyt gradient. Here, we developed a protocol for successful isolation of spheroplasts from pollen tubes of Pyrus pyrifolia and identified a hyperpolarization-activated cation channel using the patch-clamp technique. We showed that the cation channel conductance displayed a strong selectivity for divalent cations, with a relative permeability sequence of barium (Ba2+) ≈ Ca2+ > magnesium (Mg2+) > strontium (Sr2+) > manganese (Mn2+). This channel conductance was selective for Ca2+ over chlorine (Cl-) (relative permeability PCa/P Cl = 14 in 10 mM extracellular Ca2+). We also showed that the channel was inhibited by the Ca2+ channel blockers lanthanum (La3+) and gadolinium (Gd3+). Furthermore, channel activity depended on extracellular pH and pollen viability. We propose that the Ca2+-permeable channel is likely to play a role in mediating Ca 2+ influx into the growing pollen tubes to maintain the [Ca 2+]cyt gradient. © The Authors (2007).

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Qu, H. Y., Shang, Z. L., Zhang, S. L., Liu, L. M., & Wu, J. Y. (2007). Identification of hyperpolarization-activated calcium channels in apical pollen tubes of Pyrus pyrifolia. New Phytologist, 174(3), 524–536. https://doi.org/10.1111/j.1469-8137.2007.02069.x

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