Gardiner J, Andreeva Z, Barton D, Ritchie A, Overall R, Marc J
School of Biological Sciences, University of Sydney, Sydney, NSW, Australia.
Plant Biol (Stuttg). 2008 Nov;10(6):725-31. doi: 10.1111/j.1438-8677.2008.00090.x.
The role of phospholipase A(2) in Arabidopsis root growth and microtubule organisation was investigated using a specific inhibitor, aristolochic acid. At 0.5-1.5 microm concentrations, this inhibitor reduced root elongation and caused radial swelling of the root tip. The normally transverse cortical microtubules in root tip cells became progressively more disorganised with increasing concentrations of the inhibitor. Microtubule disorganisation also occurred in leaf epidermal cells of Allium porrum. We propose that phospholipase A(2) is involved in microtubule organisation and anisotropic growth in a manner similar to that reported previously for phospholipase D, thus broadening the significance of phospholipid signalling in microtubule organisation in plants.
使用一种特异性抑制剂马兜铃酸,研究了磷脂酶A(2)在拟南芥根生长和微管组织中的作用。在0.5-1.5微摩尔浓度下,该抑制剂降低了根的伸长,并导致根尖径向肿胀。随着抑制剂浓度的增加,根尖细胞中正常的横向皮质微管变得越来越紊乱。在韭葱的叶表皮细胞中也发生了微管紊乱。我们提出,磷脂酶A(2)以与先前报道的磷脂酶D类似的方式参与微管组织和各向异性生长,从而拓宽了磷脂信号在植物微管组织中的重要性。