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3D imaging reveals robustness and plasticity of cell division in rice early embryogenesis

Plant and Cell Physiology · 26 Dec 2025 · 10.1093/pcp/pcaf171

Abstract

Abstract Embryogenesis is an essential process involving a series of formative cell divisions that contribute to establishing the plant’s body axis. In many dicotyledons, the asymmetric cell division of the zygote gives rise to two daughter cells, which develop into two distinct cell lineages. In contrast, the fate of the two daughter cells and their contribution to the body axis formation remain poorly understood in the monocots. To address this question, we developed a method for three-dimensional imaging of early rice embryos. Our observations demonstrated that both an egg cell and two synergids are polarized prior to fertilization and are anchored to the micropylar end of the ovule via a cell wall-like structure stained with SR2200. Upon fertilization, the zygote undergoes an asymmetric cell division with a ventrally tilted division plane. The following cell divisions are not strictly synchronized between the apical and basal lineages, exhibiting non-stereotypic patterns up to the globular stage of embryogenesis. Furthermore, we examined the role of auxin signaling in rice embryogenesis using the auxin response sensor DR5rev::NLS-3xVENUS. The reporter activity was first detected at the center of the globular embryos and subsequently extended along the apical–basal axis as embryogenesis progressed. Our results highlight the importance of the progressive establishment of the body axes within cell populations during early embryogenesis.

Plant phenotyping relevance

イネ胚の三次元画像化法を開発し、細胞配置・分裂パターンという植物形態状態を取得しているため、表現型取得法が研究の中心である。

abstractwe developed a method for three-dimensional imaging of early rice embryos
abstractOur observations demonstrated that both an egg cell and two synergids are polarized prior to fertilization

Code and data availability

The paper describes 3D imaging and segmentation of rice embryos using MorphoGraphX and Fiji, but no public phenotype dataset, image collection, analysis code, or trained model is deposited or linked. Fiji (https://fiji.sc/) and MorphoGraphX (https://morphographx.org/) are generic third-party software tools, not paper-­

No evidence-backed public reproduction asset is currently recorded.

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