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Development and Ultrastructure of the Phloem Ganglion in Bamboo Node 被引量:11
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作者 丁雨龙 樊汝汶 黄金生 《Acta Botanica Sinica》 CSCD 2000年第10期1009-1013,共5页
The development, cytological characters and ultrastructure of phloem ganglion in the nodal region of Phyllostachys edulis (Carr.) H. de Lehaie, a most economically important bamboo, were investigated and the possi... The development, cytological characters and ultrastructure of phloem ganglion in the nodal region of Phyllostachys edulis (Carr.) H. de Lehaie, a most economically important bamboo, were investigated and the possible physiological function of this special structure was proposed. The phloem ganglion derived directly from procambium is situated at the sites where the vascular bundle forks and is present in pairs. The phloem ganglion is spindle_like in appearance and usually consists of 4 to 6 layers. Two kinds of cells in the ganglion could be distinguished. In the middle, there are two layers of filiform cells with pointed ends so that there are no normal sieve plates. Nevertheless, there are many pits on the lateral wall of the filiform cells. The other type of cells located at both ends of the spindle which possess an intermediate form between the filiform cell and the normal sieve tube. The walls of these cells towards the filiform cells are strongly convex forming a special sieve plate. Ultrastructure study showed that cells in the ganglion are connected by enriched plasmodesma. During early differentiation, the paramural body and the ingrowth of cell wall could be observed. It indicates that the cells of phloem ganglion have the character of transfer cells. The organelles in the mature cells are mainly plastids with abundant accumulation of proteins of crystalline structure. The above_mentioned results suggest that the physiological function of the phloem ganglion is closely related with substance transport. 展开更多
关键词 phloem ganglion individual development ULTRASTRUCTURE physiological function
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毛竹“韧皮部结”发育过程中Ca^(2+)-ATP酶的超微定位(英文) 被引量:4
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作者 于芬 丁雨龙 尹增芳 《西北植物学报》 CAS CSCD 北大核心 2007年第4期645-650,共6页
用电镜和细胞化学技术对毛竹[Phyllostachys edulis(Carr.)H.De Lehaie]节部韧皮部结"发育过程中Ca2+-ATP酶进行了超微细胞化学定位研究.结果显示:在韧皮部结"形成期,仅细胞质膜和细胞核上具有很高的Ca2+-ATP酶活性;随着韧皮... 用电镜和细胞化学技术对毛竹[Phyllostachys edulis(Carr.)H.De Lehaie]节部韧皮部结"发育过程中Ca2+-ATP酶进行了超微细胞化学定位研究.结果显示:在韧皮部结"形成期,仅细胞质膜和细胞核上具有很高的Ca2+-ATP酶活性;随着韧皮部结"的发育,发育期细胞质膜上的Ca2+-ATP酶活性较形成期有所降低,而细胞核上仍保持较高的Ca2+-ATP酶活性,胞间连丝、运输小泡膜上都具有Ca2+-ATP酶活性;发育后期,液泡膜及内质网上也开始出现Ca2+-ATP酶沉积物;成熟期的韧皮部结"细胞质膜上的Ca2+-ATP酶活性较发育期有所升高,并且在韧皮部结"成熟的过程中,细胞核、内质网、胞间连丝、质体膜和细胞质降解物上始终都有较高的Ca2+-ATP酶活性.实验结果表明韧皮部结"细胞具有活跃的生理代谢以及频繁的共质体运输和信息交流. 展开更多
关键词 CA^2+-ATP酶 发育 韧皮部 毛竹 生理功能
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