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竹子节部“韧皮部结”的发育与超微结构
引用本文:丁雨龙 樊汝汶. 竹子节部“韧皮部结”的发育与超微结构[J]. Acta Botanica Sinica, 2000, 42(10): 1009-1013
作者姓名:丁雨龙 樊汝汶
作者单位:南京林业大学森林资源与环境学院,南京
基金项目:InternationalFoundationforScience,Sweden,D/ 2 1 69_1,FoundationoftheEducationMinistryofChina .
摘    要:
研究了中国最为重要的经济竹种毛竹(Phyllostachys edulis (Carr.)H.de Lehaie)节部“韧皮部结”的个体发育、构成该结构细胞的形态学特征及其超微结构,探讨了该结构可能的生理功能。“韧皮部结”的发育直接来源于原形成层,发生在维管束分叉处,一般成对出现。“韧皮部结”外形呈纺锤体状,一般由4~6层细胞形成叠生构造。构成“韧皮部结”的细胞可以区分为两类,一类是位于纺锤体中部

关 键 词:韧皮部结 个体发育 超微结构 生理功能 竹

Development and Ultrastructure of the Phloem Ganglion in Bamboo Node
DING Yu_Long ,FAN Ru_Wen,HUANG Jin_Sheng [WTBZ]. Development and Ultrastructure of the Phloem Ganglion in Bamboo Node[J]. , 2000, 42(10): 1009-1013
Authors:DING Yu_Long   FAN Ru_Wen  HUANG Jin_Sheng [WTBZ]
Affiliation:DING Yu_Long *,FAN Ru_Wen,HUANG Jin_Sheng [WT6BZ]
Abstract:
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.
Keywords:phloem ganglion  individual development  ultrastructure  physiological function
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