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Inhibition of phospholipase C disrupts cytoskeletal organization and gravitropic growth in Arabidopsis roots

机译:磷脂酶C的抑制破坏拟南芥根中的细胞骨架组织和重力生长

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The phospholipase protein superfamily plays an important role in hormonal signalling and cellular responses to environmental stimuli. There is also growing evidence for interactions between phospholipases and the cytoskeleton. In this report we used a pharmacological approach to investigate whether inhibiting a member of the phospholipase superfamily, phospholipase C (PLC), affects microtubules and actin microfilaments as well as root growth and morphology of Arabidopsis thaliana seedlings. Inhibiting PLC activity using the aminosteroid U73122 significantly inhibited root elongation and disrupted root morphology in a concentration-dependent manner, with the response being saturated at 5 μM, whereas the inactive analogue U73343 was ineffective. The primary root appeared to lose growth directionality accompanied by root waving and formation of curls. Immunolabelling of roots exposed to increasingly higher U73122 concentrations revealed that the normal transverse arrays of cortical microtubules in the elongation zone became progressively more disorganized or depolymerized, with the disorganization appearing within 1 h of incubation. Likewise, actin microfilament arrays also were disrupted. Inhibiting PLC using an alternative inhibitor, neomycin, caused similar disruptions to both cytoskeletal organization and root morphology. In seedlings gravistimulated by rotating the culture plates by 90°, both U73122 and neomycin disrupted the normal gravitropic growth of roots and etiolated hypocotyls. The effects of PLC inhibitors are therefore consistent with the notion that, as with phospholipases A and D, PLC likewise interacts with the cytoskeleton, alters growth morphology, and is involved in gravitropism.
机译:磷脂酶蛋白超家族在激素信号传导和细胞对环境刺激的反应中起重要作用。磷脂酶和细胞骨架之间相互作用的证据也越来越多。在本报告中,我们使用药理学方法研究了抑制磷脂酶超家族成员磷脂酶C(PLC)是否影响微管和肌动蛋白微丝以及拟南芥幼苗的根系生长和形态。使用氨基类固醇U73122抑制PLC活性以浓度依赖的方式显着抑制了根伸长并破坏了根的形态,其响应在5μM时达到饱和,而无活性的类似物U73343无效。初生根似乎失去生长方向性,伴有根挥动和卷曲形成。暴露于越来越高的U73122浓度的根部的免疫标记显示,伸长区中皮质微管的正常横向排列逐渐变得更加杂乱或解聚,在培养1小时内出现杂乱。同样,肌动蛋白微丝阵列也被破坏。使用替代抑制剂新霉素抑制PLC对细胞骨架组织和根部形态均造成类似破坏。在将培养板旋转90°进行脱毛的幼苗中,U73122和新霉素都会破坏根和黄化的下胚轴的正常重力生长。因此,PLC抑制剂的作用与这样的观念是一致的,如同磷脂酶A和D一样,PLC同样与细胞骨架相互作用,改变生长形态,并参与重力运动。

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