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在 Nitella 节间细胞生长和成熟过程中的细胞壁合成。

Cell wall synthesis during growth and maturation of Nitella internodal cells.

机构信息

Departments of Viticulture and Enology and Pomology, University of California, 95616, Davis, CA, USA.

出版信息

Planta. 1993 Mar;189(3):321-8. doi: 10.1007/BF00194428.

Abstract

An improved (13)C-density-labeling method was used to study cell wall synthesis in rapidly expanding, slowly expanding and recently mature internodes of Nitella translucens var axillaris (A.Br.) R.D.W. As cells matured, the rate of wall synthesis slowed and the deposition of cellulose microfibrils changed from a predominantly transverse direction in the primary wall of rapidly expanding internodes to a helicoidal array in the secondary wall of mature internodes. The secondary wall was characterized by relatively higher rates of cellulose synthesis and lower rates of pectin synthesis than the primary wall. The synthesis of xyloglucan also decreased markedly at the transition to secondary wall synthesis, while the synthesis of mannose-rich hemicellulose increased. Even though structural differences were striking between the primary and secondary walls of Nitella, compositional differences between the two types of wall were quantitative rather than qualitative.

摘要

采用改进的 (13)C 密度标记法研究了泡叶藻属(Nitella translucens var axillaris)快速生长、缓慢生长和最近成熟节间的细胞壁合成。随着细胞的成熟,细胞壁合成的速度减慢,纤维素微纤丝的沉积方向从快速生长节间初生壁的主要横向方向转变为成熟节间次生壁的螺旋排列。次生壁的纤维素合成速率相对较高,果胶合成速率相对较低,而初生壁则相反。在向次生壁合成转变的过程中,木葡聚糖的合成也显著减少,而富含甘露糖的半纤维素的合成增加。尽管泡叶藻属初生壁和次生壁之间存在显著的结构差异,但这两种壁之间的成分差异在数量上而不是质量上。

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