Franklin-Tong Vernonica E, Holdaway-Clarke Terena L, Straatman Kornelis R, Kunkel Joseph G, Hepler Peter K
School of Biosciences, University of Birmingham, Edgbaston, Birmingham, B15 TT, UK.
Plant J. 2002 Feb;29(3):333-45. doi: 10.1046/j.1365-313x.2002.01219.x.
We have previously demonstrated that increases in cytosolic free Ca2+ are triggered by the self-incompatibility (SI) response in incompatible Papaver rhoeas (the field poppy) pollen. However, one key question that has not been answered is whether extracellular Ca2+ may be involved. To address this question, we have used an ion-selective vibrating probe to measure changes in extracellular Ca2+ fluxes around poppy pollen tubes. Our data reveal several findings. First, we confirm that there is an oscillating Ca2+ influx directed at the apex of the pollen tube; we also provide evidence that Ca2+ influx also occurs at the shanks of pollen tubes. Second, upon challenge with self-incompatibility (S) proteins, there is a stimulation of Ca2+ influx along the shank of incompatible pollen tubes, approximately 50 microm behind the pollen tube tip. This demonstration of SI-induced Ca2+ influx suggests a role for influx of extracellular Ca2+ in the SI response.
我们之前已经证明,在不亲和的罂粟花粉中,自交不亲和(SI)反应会引发胞质游离Ca2+的增加。然而,一个尚未得到解答的关键问题是细胞外Ca2+是否参与其中。为了解决这个问题,我们使用了离子选择性振动探针来测量罂粟花粉管周围细胞外Ca2+通量的变化。我们的数据揭示了几个发现。首先,我们证实有一个振荡的Ca2+流入指向花粉管的顶端;我们还提供证据表明Ca2+流入也发生在花粉管的柄部。其次,在用自交不亲和(S)蛋白刺激后,不亲和花粉管柄部会出现Ca2+流入的刺激,大约在花粉管尖端后方50微米处。这种SI诱导的Ca2+流入的证明表明细胞外Ca2+流入在SI反应中起作用。