The osmotic property and fluorescent tracer movement of developing orchid embryos of Phaius tankervilliae (Aiton) Bl.

Sexual Plant Reproduction Pub Date : 2010-12-01 Epub Date: 2010-05-14 DOI:10.1007/s00497-010-0143-y
Yung-I Lee, Edward C Yeung
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引用次数: 13

Abstract

The suspensor plays an active role during the early embryo development of flowering plants. In orchids, the suspensor cells are highly vacuolated without structural specializations, and the possible mechanism(s) that enable the suspensor to serve as the nutrient uptake site is virtually unknown. Here, we used the fluorescent tracer CFDA to characterize the pathway for symplastic transport in the suspensor cells of developing embryos and to provide direct visual evidence that the orchid suspensor has unique physiological properties. The embryo proper uptakes the fluorescent dye through the suspensor. CF could first be detected throughout the suspensor cell and then subsequently in the embryo proper. A plasmolysis experiment clearly indicates that suspensor cells have a more negative osmotic potential than the adjoining testa cells. It is proposed that the preferential entry of CFDA into the suspensor cell of the Nun orchid is aided by the more negative osmotic potential of the suspensor than neighboring cells, providing a driving force for the uptake of water from the apoplast into the symplast.

水兰胚发育的渗透特性及荧光示踪剂运动。
胚柄在开花植物早期胚发育过程中起着积极的作用。在兰花中,茎柄细胞是高度空泡化的,没有结构特化,而使茎柄作为营养吸收部位的可能机制几乎是未知的。在这里,我们使用荧光示踪剂CFDA来表征发育胚胎胚柄细胞的共塑运输途径,并提供直接的视觉证据,证明兰花胚柄具有独特的生理特性。胚胎通过胚柄吸收荧光染料。首先可以在整个胚柄细胞中检测到CF,然后在胚胎中检测到CF。质解实验清楚地表明,悬柄细胞比毗邻的睾丸细胞具有更大的负渗透电位。本文认为,CFDA之所以优先进入兰花的柄细胞,是因为柄细胞比邻近细胞具有更大的负渗透电位,这为外体向共体吸收水分提供了动力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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