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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >OCCURRENCE OF PLASMODESMATA BETWEEN DIFFERENTIATING VESSELS AND OTHER XYLEM CELLS IN SORBUS TORMINALIS L CRANTZ AND THEIR FATE DURING XYLEM MATURATION
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OCCURRENCE OF PLASMODESMATA BETWEEN DIFFERENTIATING VESSELS AND OTHER XYLEM CELLS IN SORBUS TORMINALIS L CRANTZ AND THEIR FATE DURING XYLEM MATURATION

机译:OR体发育中分化血管与其他木浆细胞间疟原虫的发生及其在木浆成熟过程中的命运。

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摘要

The development of pit-pairs between differentiating xylem cells has been examined by transmission electron microscopy in young shoots of Sorbus torminalis. In some vessel-to-tracheid pits, as well as in previously studied intertracheid pits, a thickening of the pit membrane containing branched plasmodesmata was observed. A secondary wall-like cap was deposited over the thickening prior to cytoplasmic autolysis; some plasmodesmata, parallel to the plane of section, appeared to perforate the cap. At the end of the cell maturation stage, the central part of the primary wall thickening was hydrolysed, while the cap, including plasmodesmata remnants, appeared unaltered. In half-bordered pit-pairs between a parenchyma cell and a vessel or a tracheid, similar structures could be observed beside the conducting elements. When the vessel or tracheid matured, sealing of the pit membrane plasmodesmata resulted from the formation of a protective layer on the parenchyma-side rather than from the deposition of a cap on the conducting cell-side. These observations provide the first information on the presence of symplasmic connections in pits between differentiating vessels and neighbouring xylem cells. In S. torminalis, xylem differentiation is probably highly coordinated within a symplasmic domain; the persistence of such connections may account for the lack of specialization of Sor bits wood. [References: 14]
机译:通过透射电子显微镜检查了山梨的幼枝中分化的木质部细胞之间的凹坑对的发育。在一些器皿到气管间的凹坑中,以及先前研究过的气管间的凹坑中,观察到了含有分支状胞浆菌的凹坑膜的增厚。在细胞质自溶之前,在增厚层上沉积了一个次要的壁状帽。平行于横切面的一些线虫似乎在帽上穿孔。在细胞成熟阶段结束时,原壁增厚的中心部分被水解,而包括纤毛虫残留物的帽未变。在薄壁细胞与血管或气管之间的半边界凹坑对中,在导电元件旁边可以观察到类似的结构。当血管或气管成熟时,凹膜胞膜的密封是由于在实质壁侧形成保护层而不是在导电细胞侧沉积盖所致。这些观察结果提供了关于分化血管和邻近木质部细胞之间凹坑中同质连接的存在的第一个信息。在torminalis中,木质部的分化可能在同质域内高度协调。此类连接的持久性可能是Sor钻头木材缺乏专业化的原因。 [参考:14]

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