Wu Juyou, Qin Xiaoya, Tao Shutian, Jiang Xueting, Liang Yun-Kuan, Zhang Shaoling
State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing, 210095, China.
Plant J. 2014 Aug;79(3):507-16. doi: 10.1111/tpj.12576. Epub 2014 Jul 9.
Long-chain base phosphates (LCBPs) have been correlated with amounts of crucial biological processes ranging from cell proliferation to apoptosis in animals. However, their functions in plants remain largely unknown. Here, we report that LCBPs, sphingosine-1-phosphate (S1P) and phytosphingosine-1-phosphate (Phyto-S1P), modulate pollen tube growth in a concentration-dependent bi-phasic manner. The pollen tube growth in the stylar transmitting tissue was promoted by SPHK1 overexpression (SPHK1-OE) but dampened by SPHK1 knockdown (SPHK1-KD) compared with wild-type of Arabidopsis; however, there was no detectable effect on in vitro pollen tube growth caused by misexpression of SPHK1. Interestingly, exogenous S1P or Phyto-S1P applications could increase the pollen tube growth rate in SPHK1-OE, SPHK1-KD and wild-type of Arabidopsis. Calcium ion (Ca(2+) )-imaging analysis showed that S1P triggered a remarkable increase in cytosolic Ca(2+) concentration in pollen. Extracellular S1P induced hyperpolarization-activated Ca(2+) currents in the pollen plasma membrane, and the Ca(2+) current activation was mediated by heterotrimeric G proteins. Moreover, the S1P-induced increase of cytosolic free Ca(2+) inhibited the influx of potassium ions in pollen tubes. Our findings suggest that LCBPs functions in a signaling cascade that facilitates Ca(2+) influx and modulates pollen tube growth.
长链碱基磷酸盐(LCBPs)与动物体内从细胞增殖到细胞凋亡等一系列关键生物学过程的数量相关。然而,它们在植物中的功能仍 largely未知。在此,我们报告LCBPs,即鞘氨醇-1-磷酸(S1P)和植物鞘氨醇-1-磷酸(Phyto-S1P),以浓度依赖的双相方式调节花粉管生长。与拟南芥野生型相比,SPHK1过表达(SPHK1-OE)促进了花柱传递组织中的花粉管生长,但SPHK1敲低(SPHK1-KD)则抑制了花粉管生长;然而,SPHK1的错误表达对体外花粉管生长没有可检测到的影响。有趣的是,外源施加S1P或Phyto-S1P可以提高SPHK1-OE、SPHK1-KD和拟南芥野生型中的花粉管生长速率。钙离子(Ca(2+))成像分析表明,S1P引发了花粉中胞质Ca(2+)浓度的显著增加。细胞外S1P诱导花粉质膜上超极化激活的Ca(2+)电流,并且Ca(2+)电流的激活由异源三聚体G蛋白介导。此外,S1P诱导的胞质游离Ca(2+)增加抑制了花粉管中钾离子的内流。我们的研究结果表明,LCBPs在一个促进Ca(2+)内流并调节花粉管生长的信号级联中发挥作用。