Temasek Life Sciences Laboratory, 1 Research Link, 117604 Singapore.
Development. 2012 Oct;139(19):3644-52. doi: 10.1242/dev.082362.
In zebrafish, as in many animals, maternal dorsal determinants are vegetally localized in the egg and are transported after fertilization in a microtubule-dependent manner. However, the organization of early microtubules, their dynamics and their contribution to axis formation are not fully understood. Using live imaging, we identified two populations of microtubules, perpendicular bundles and parallel arrays, which are directionally oriented and detected exclusively at the vegetal cortex before the first cell division. Perpendicular bundles emanate from the vegetal cortex, extend towards the blastoderm, and orient along the animal-vegetal axis. Parallel arrays become asymmetric on the vegetal cortex, and orient towards dorsal. We show that the orientation of microtubules at 20 minutes post-fertilization can predict where the embryonic dorsal structures in zebrafish will form. Furthermore, we find that parallel microtubule arrays colocalize with wnt8a RNA, the candidate maternal dorsal factor. Vegetal cytoplasmic granules are displaced with parallel arrays by ~20°, providing in vivo evidence of a cortical rotation-like process in zebrafish. Cortical displacement requires parallel microtubule arrays, and probably contributes to asymmetric transport of maternal determinants. Formation of parallel arrays depends on Ca(2+) signaling. Thus, microtubule polarity and organization predicts the zebrafish embryonic axis. In addition, our results suggest that cortical rotation-like processes might be more common in early development than previously thought.
在斑马鱼中,与许多动物一样,母体背侧决定因素在卵中呈植物性定位,并在受精后以微管依赖性方式运输。然而,早期微管的组织、它们的动力学及其对轴形成的贡献尚未完全了解。使用实时成像,我们鉴定了两种微管群体,垂直束和平行阵列,它们是定向的,并且仅在第一次细胞分裂前在植物皮层中检测到。垂直束从植物皮层发出,延伸到胚盘,并沿动物-植物轴定向。平行数组在植物皮层上变得不对称,并朝向背侧定向。我们表明,受精后 20 分钟微管的取向可以预测斑马鱼中胚胎背侧结构将在哪里形成。此外,我们发现平行微管阵列与 wnt8a RNA 共定位,wnt8a RNA 是候选母体背侧因子。植物细胞质颗粒与平行数组一起被移位约 20°,为斑马鱼中的皮质旋转样过程提供了体内证据。皮质位移需要平行微管阵列,并且可能有助于母体决定因素的不对称运输。平行数组的形成取决于 Ca(2+)信号。因此,微管极性和组织预测了斑马鱼胚胎轴。此外,我们的结果表明,皮质旋转样过程在早期发育中可能比以前认为的更为普遍。