Coordinate Normalization of Live-Cell Imaging Data Reveals Growth Dynamics of the Arabidopsis Zygote

合子 拟南芥 叶尖生长 延伸率 顶端细胞 生物 活体细胞成像 生物物理学 细胞分裂 细胞生物学 根毛 生物系统 解剖 植物 花粉管 胚胎 细胞 胚胎发生 突变体 材料科学 花粉 遗传学 授粉 极限抗拉强度 基因 冶金
作者
Zichen Kang,Hikari Matsumoto,Tomonobu Nonoyama,Sakumi Nakagawa,Yukitaka Ishimoto,Satoru Tsugawa,Minako Ueda
出处
期刊:Plant and Cell Physiology [Oxford University Press]
卷期号:64 (11): 1279-1288 被引量:4
标识
DOI:10.1093/pcp/pcad020
摘要

Abstract Polarization of the zygote defines the body axis during plant development. In Arabidopsis (Arabidopsis thaliana), the zygote becomes polarized and elongates in the longitudinal direction, ultimately forming the apical–basal axis of the mature plant. Despite its importance, the mechanism for this elongation remains poorly understood. Based on live-cell imaging of the zygote, we developed new image analysis methods, referred to as coordinate normalization, that appropriately fix and align positions in an image, preventing fluctuation across a temporal sequence of images. Using these methods, we discovered that the zygote elongates only at its apical tip region, similar to tip-growing cells such as pollen tubes and root hairs. We also investigated the spatiotemporal dynamics of the apical tip contour of the zygote and observed that the zygote tip retains its isotropic, hemispherical apical shape during cell elongation. By looking at the elliptical fitting of the contour over time, we further discovered that the apical cell tip becomes thinner at first and then thickens, with a transient increase in growth speed that is followed by the first cell division. We performed the same series of analyses using root hairs and established that both the hemispherical tip shape and the changes in growth rate associated with changes in tip size are specific to the zygote. In summary, the Arabidopsis zygote undergoes directional elongation as a tip-growing cell, but its tip retains an unusual isotropic shape, and the manner of growth changes with the developmental stage.
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