首页> 外文期刊>Annals of Botany >Unique stigmatic hairs and pollen-tube growth within the stigmatic cell wall in the early-divergent angiosperm family Hydatellaceae
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Unique stigmatic hairs and pollen-tube growth within the stigmatic cell wall in the early-divergent angiosperm family Hydatellaceae

机译:早期分化的被子植物Hydatellaceae的单根细胞壁内独特的单根毛发和花粉管生长

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Background and Aims The ultrastructure of the pollen tubes and the unusual multicellular stigmatic hairs of Trithuria, the sole genus of Hydatellaceae, are described in the context of comparative studies of stigmatic and transmitting tissue in other early-divergent angiosperms.Methods Scanning and transmission electron microscopy and immunocytochemistry are used to study the structure and composition of both mature and immature stigmatic hair cells and pollen-tube growth in Trithuria.Key Results Trithuria possesses a dry-type stigma. Pollen tubes grow within the cell walls of the long multicellular stigmatic hairs. Immunocytochemistry results suggest that arabinogalactan proteins are involved in attracting the pollen tubes through the stigmatic cuticle. Most tubes grow along the hair axis towards its base, but some grow towards the hair apex, suggesting that pollen tubes are guided by both physical constraints such as microfibril orientation and the presence of binding factors such as unesterified pectins and adhesive proteins.Conclusions The presence of a dry-type stigma in Trithuria supports the hypothesis that this condition is ancestral in angiosperms. Each multicellular stigmatic hair of Hydatellaceae is morphologically homologous with a stigmatic papilla of other angiosperms, but functions as an independent stigma and style. This unusual combination of factors makes Hydatellaceae a useful model for comparative studies of pollen-tube growth in early angiosperms.
机译:背景与目的在比较早熟其他被子植物的有盖和透射组织的比较研究的背景下,描述了花丝管的花粉管的超微结构和不寻常的多毛的多细胞的有毛的毛。用免疫细胞化学技术研究了特里休亚成熟和不成熟的有盖毛细胞的结构和组成以及花粉管的生长。关键结果特里休亚具有干型柱头。花粉管生长在长的多细胞带状毛的细胞壁内。免疫细胞化学结果表明,阿拉伯半乳聚糖蛋白参与通过花粉片的角质层吸引花粉管。大多数管沿毛发轴向其根部生长,但有些管向发根生长,这表明花粉管受物理约束(如微纤维取向)和结合因子(如未酯化的果胶和黏附蛋白)的存在引导。 Trithuria的一种干型柱头的假说支持了这种情况是被子植物祖先的假说。绣球花的每根多细胞带状毛与其他被子植物的带状乳头在形态上是同源的,但具有独立的柱头和样式。这种不寻常的因素组合使Hydatellaceae成为比较研究早期被子植物花粉管生长的有用模型。

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