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Cell-to-Cell Movement of Green Fluorescent Protein Reveals Post-Phloem Transport in the Outer Integument and Identifies Symplastic Domains in Arabidopsis Seeds and Embryos1

机译:绿色荧光蛋白的细胞间运动揭示了外皮中的韧皮部运输,并鉴定了拟南芥种子和Embryos1中的共生域。

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Developing Arabidopsis (Arabidopsis thaliana) seeds and embryos represent a complex set of cell layers and tissues that mediate the transport and partitioning of carbohydrates, amino acids, hormones, and signaling molecules from the terminal end of the funicular phloem to and between these seed tissues and eventually to the growing embryo. This article provides a detailed analysis of the symplastic domains and the cell-to-cell connectivity from the end of the funiculus to the embryo, and within the embryo during its maturation. The cell-to-cell movement of the green fluorescent protein or of mobile and nonmobile green fluorescent protein fusions was monitored in seeds and embryos of plants expressing the corresponding cDNAs under the control of various promoters (SUC2, SUC3, TT12, and GL2) shown to be active in defined seed or embryo cell layers (SUC3, TT12, and GL2) or only outside the developing Arabidopsis seed (AtSUC2). Cell-to-cell movement was also analyzed with the low-molecular-weight fluorescent dye 8-hydroxypyrene-1,3,6-trisulfonate. The analyses presented identify a phloem-unloading domain at the end of the funicular phloem, characterize the entire outer integument as a symplastic extension of the phloem, and describe the inner integument and the globular stage embryo plus the suspensor as symplastic domains. The results also show that, at the time of hypophysis specification, the symplastic connectivity between suspensor and embryo is reduced or interrupted and that the embryo develops from a single symplast (globular and heart stage) to a mature embryo with new symplastic domains.
机译:发育中的拟南芥(Arabidopsis thaliana)种子和胚胎代表了一组复杂的细胞层和组织,它们介导碳水化合物,氨基酸,激素和信号分子从缆索韧皮部末端到这些种子组织之间以及它们之间的运输和分配。最终到成长中的胚胎。本文详细介绍了共生结构域以及从真菌末端到胚胎以及成熟期间在胚胎内部的细胞间连接性。在显示的各种启动子(SUC2,SUC3,TT12和GL2)的控制下,在表达相应cDNA的植物的种子和胚胎中监控绿色荧光蛋白或可移动和不可移动绿色荧光蛋白融合物的细胞间运动。在定义的种子或胚细胞层(SUC3,TT12和GL2)中或仅在拟南芥种子(AtSUC2)外部具有活性。还使用低分子量荧光染料8-羟基py-1,3,6-三磺酸盐分析了细胞之间的运动。提出的分析确定了在缆索韧皮部末端的韧皮部卸载结构域,将整个外被膜表征为韧皮部的增生性延伸,并描述了内被膜和球状阶段胚加上悬吊器作为增生结构域。结果还表明,在垂体规范时,感受器和胚胎之间的共生连接性降低或中断,并且胚胎从单个共生体(球形和心脏阶段)发展为具有新共生域的成熟胚胎。

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