Qu Hai-Yong, Shang Zhong-Lin, Zhang Shao-Ling, Liu Lian-Mei, Wu Ju-You
College of Horticulture, NanJing Agricultural University, NanJing, China.
HuaiYin Institute of Technology, HuaiAn, China.
New Phytol. 2007;174(3):524-536. doi: 10.1111/j.1469-8137.2007.02069.x.
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 (Ca(2+)) is essential for pollen-tube growth. Local Ca(2+) influx mediated by Ca(2+)-permeable channels plays a key role in maintaining this Ca(2+) 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 (Ba(2+)) approximately Ca(2+) > magnesium (Mg(2+)) > strontium (Sr(2+)) > manganese (Mn(2+)). This channel conductance was selective for Ca(2+) over chlorine (Cl(-)) (relative permeability P(Ca)/P(Cl) = 14 in 10 mm extracellular Ca(2+)). We also showed that the channel was inhibited by the Ca(2+) channel blockers lanthanum (La(3+)) and gadolinium (Gd(3+)). Furthermore, channel activity depended on extracellular pH and pollen viability. We propose that the Ca(2+)-permeable channel is likely to play a role in mediating Ca(2+) influx into the growing pollen tubes to maintain the Ca(2+) gradient.
花粉管已被广泛用于研究植物极性顶端生长的潜在机制。游离胞质钙(Ca(2+))从顶端到基部的陡峭梯度对花粉管生长至关重要。由钙通透通道介导的局部Ca(2+)内流在维持这种Ca(2+)梯度中起关键作用。在此,我们开发了一种从梨花粉管成功分离原生质球的方法,并使用膜片钳技术鉴定了一种超极化激活的阳离子通道。我们发现该阳离子通道电导对二价阳离子表现出强烈的选择性,其相对通透性顺序为钡(Ba(2+))≈钙(Ca(2+))>镁(Mg(2+))>锶(Sr(2+))>锰(Mn(2+))。在10 mM细胞外Ca(2+)条件下,该通道电导对Ca(2+)的选择性高于氯(Cl(-))(相对通透性P(Ca)/P(Cl)=14)。我们还发现该通道受到钙通道阻滞剂镧(La(3+))和钆(Gd(3+))的抑制。此外,通道活性取决于细胞外pH值和花粉活力。我们提出,钙通透通道可能在介导Ca(2+)流入生长中的花粉管以维持Ca(2+)梯度中发挥作用。