首页> 外文期刊>Acta botanica sinica >Plasmodesmatal Dynamics in Both Woody Poplar and Herbaceous Winter Wheat Under Controlled Short Day and in Field Winter Period
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Plasmodesmatal Dynamics in Both Woody Poplar and Herbaceous Winter Wheat Under Controlled Short Day and in Field Winter Period

机译:短日和田间冬季控制下木本杨和草本冬小麦的质膜动态

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Electron microscopic observation revealed that poplar (Populus deltoides Marsh.) and winter wheat (Triticum aestivum L. cv. Seward 80004) plasmodesmatal structures significantly changed under short day (SD, 8 h light) and in winter period, and such changes differed also noticeably between these two woody and herbaceous plants. Under long day (LD, 16 h light), many plasmodesmata with strong stain appeared in the cell wall of both poplar apical buds and winter wheat young leaf tissues, and connections of cytoplasmic endoplasmic reticulum (ER) with the ER in some plasmodesmata were observed. In addition, the typical "neck type" plasmodesmata were observed in winter wheat young leaf tissues, and their central desmotubules (appressed-ER) could be clearly identified. Under SD, many poplar plasmodesmata showed only a partial structure in the cell wall and appeared to be discontinued; some plasmodesmata swelled in the mid-wall, forming the cavity, and no appressed-ER appeared. In winter wheat, however, no noticeable alterations of plasmodesmata occurred, and the plasmodesmatal structure essentially remained the same as it was under LD. In winter period, poplar plasmodesmata had a similar morphology as those observed under SD, however, winter wheat manifested at least two types of significant plasmodesmatal alterations: one plugged by electron-dense materials and the other of reduced neck region compared to those under LD. The above dynamic difference of the two species plasmodesmata under SD and winter period revealed the difference of their dormancy development under those environmental conditions.
机译:电镜观察表明,白杨(Populus deltoides Marsh。)和冬小麦(Triticum aestivum L.cv.Seward 80004)的质膜结构在短日(SD,8 h光照)和冬季明显改变,并且这种变化也明显不同。在这两种木本和草本植物之间。在漫长的一天(LD,16 h光照)下,杨树顶芽和冬小麦幼叶组织的细胞壁中出现了许多带有强烈染色的胞质瘤,并且在某些胞质瘤中观察到胞质内质网(ER)与ER的联系。 。另外,在冬小麦幼叶组织中观察到典型的“颈部型”胞膜胞瘤,并且可以清楚地识别出它们的中央支气管(被压迫的ER)。在SD下,许多杨的浆胞瘤仅在细胞壁中显示出部分结构,并且似乎不连续。内壁部分虫肿肿胀,形成空腔,未见包扎的ER。然而,在冬小麦中,未发生胞浆菌丝的明显变化,胞浆菌丝结构基本上与LD下相同。在冬季,杨树的等离子形态与SD下观察到的形态相似,但是,冬小麦表现出至少两种类型的显着的等离子形态改变:一种与LD相比,一种被电子致密材料堵塞,另一种被缩小了的颈部区域。上述两种SD和冬季虫体的动态差异揭示了在这些环境条件下它们的休眠发育的差异。

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