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拟南芥雌性配子体发育过程中细胞命运特化的动态变化。

Dynamics of the cell fate specifications during female gametophyte development in Arabidopsis.

机构信息

Kihara Institute for Biological Research, Yokohama City University, Yokohama, Japan.

Department of Biological Chemistry, College of Bioscience and Biotechnology, Chubu University, Kasugai, Japan.

出版信息

PLoS Biol. 2021 Mar 26;19(3):e3001123. doi: 10.1371/journal.pbio.3001123. eCollection 2021 Mar.

Abstract

The female gametophytes of angiosperms contain cells with distinct functions, such as those that enable reproduction via pollen tube attraction and fertilization. Although the female gametophyte undergoes unique developmental processes, such as several rounds of nuclear division without cell plate formation and final cellularization, it remains unknown when and how the cell fate is determined during development. Here, we visualized the living dynamics of female gametophyte development and performed transcriptome analysis of individual cell types to assess the cell fate specifications in Arabidopsis thaliana. We recorded time lapses of the nuclear dynamics and cell plate formation from the 1-nucleate stage to the 7-cell stage after cellularization using an in vitro ovule culture system. The movies showed that the nuclear division occurred along the micropylar-chalazal (distal-proximal) axis. During cellularization, the polar nuclei migrated while associating with the forming edge of the cell plate, and then, migrated toward each other to fuse linearly. We also tracked the gene expression dynamics and identified that the expression of MYB98pro::GFP-MYB98, a synergid-specific marker, was initiated just after cellularization in the synergid, egg, and central cells and was then restricted to the synergid cells. This indicated that cell fates are determined immediately after cellularization. Transcriptome analysis of the female gametophyte cells of the wild-type and myb98 mutant revealed that the myb98 synergid cells had egg cell-like gene expression profiles. Although in myb98, egg cell-specific gene expression was properly initiated in the egg cells only after cellularization, but subsequently expressed ectopically in one of the 2 synergid cells. These results, together with the various initiation timings of the egg cell-specific genes, suggest complex regulation of the individual gametophyte cells, such as cellularization-triggered fate initiation, MYB98-dependent fate maintenance, cell morphogenesis, and organelle positioning. Our system of live-cell imaging and cell type-specific gene expression analysis provides insights into the dynamics and mechanisms of cell fate specifications in the development of female gametophytes in plants.

摘要

被子植物的雌配子体包含具有不同功能的细胞,例如那些能够通过花粉管吸引和受精进行繁殖的细胞。尽管雌配子体经历了独特的发育过程,例如多次没有细胞板形成的核分裂和最终的细胞化,但仍不清楚在发育过程中何时以及如何确定细胞命运。在这里,我们可视化了雌配子体发育的活体动态,并对单个细胞类型进行了转录组分析,以评估拟南芥中细胞命运的决定。我们使用体外胚珠培养系统,从单核期到细胞化后的 7 细胞期,记录了核动态和细胞板形成的时间推移。电影显示核分裂沿着珠孔-合点(远端-近端)轴发生。在细胞化过程中,极核在与正在形成的细胞板边缘结合的同时迁移,然后迁移到彼此之间以线性融合。我们还跟踪了基因表达动态,并确定了 MYB98pro::GFP-MYB98 的表达,这是一个合胞体特异标记,在细胞化后立即在合胞体、卵和中央细胞中开始表达,然后仅限于合胞体细胞。这表明细胞命运是在细胞化后立即决定的。对野生型和 myb98 突变体的雌配子体细胞进行转录组分析表明,myb98 的合胞体细胞具有卵细胞样的基因表达谱。尽管在 myb98 中,卵细胞特异性基因表达仅在细胞化后才在卵细胞中正确开始,但随后在两个合胞体细胞中的一个中异位表达。这些结果,以及卵细胞特异性基因的各种起始时间,表明单个配子体细胞的复杂调控,例如细胞化触发的命运起始、MYB98 依赖性命运维持、细胞形态发生和细胞器定位。我们的活细胞成像和细胞类型特异性基因表达分析系统为植物雌配子体发育中细胞命运决定的动态和机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cd7/7997040/f46cb3546c5c/pbio.3001123.g001.jpg

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