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Morphology, wood structure and cell wall composition of rolC transgenic and non-transformed aspen trees

机译:转rolC基因和未转化白杨树的形态,木材结构和细胞壁组成

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摘要

Morphology, wood structure and cell wall composition of 35S-rolC transgenic hybrid aspen (P. tremulaxtremuloides) were compared with non-transformed control trees. The transgenics are characterised by stunted growth, altered physiological parameters and light green leaves of reduced size. Histometric measurements revealed thinner fibre walls as compared to the controls. UV microspectrophotometry of individual wall layers did not reveal distinctive differences in the lignification of xylem cells, but in the extremely thin-walled fibres of the transgenics the secondary walls were less lignified as revealed by KMnO4 staining in transmission electron microscopy. In the transgenics the formation of xylem cells was delayed and the differentiation zone reduced to only a few rows. Immunocytochemical analyses revealed the deposition of lignins in less differentiated xylem cells as compared to the controls. The first labelling of condensed lignin appeared in cell corners and of non-condensed lignin in secondary walls near cell corners during the deposition of S 1 polysaccharides. Because of alterations in the formation and differentiation of xylem cells, 35S-rolC transgenic aspen may be useful for studies on molecular factors controlling the differentiation continuum.
机译:将35S-rolC转基因杂种白杨(P. tremulaxtremuloides)的形态,木材结构和细胞壁组成与未转化的对照树进行了比较。转基因的特征是生长发育迟缓,生理参数改变和大小减小的浅绿色叶子。直方图测量显示与对照相比,纤维壁更薄。各个壁层的紫外显微分光光度法没有发现木质部细胞木质素的明显差异,但是在转基因生物的极薄壁纤维中,次壁的木质素较少,如透射电子显微镜中KMnO4染色所揭示的。在转基因中,木质部细胞的形成被延迟并且分化区减少到仅几行。免疫细胞化学分析显示,与对照相比,木质素在分化程度较低的木质部细胞中的沉积。在S 1多糖沉积过程中,缩合木质素的第一个标记出现在细胞角处,而未缩合木质素的第一个标记出现在细胞角附近的次生壁中。由于木质部细胞形成和分化的改变,35S-rolC转基因白杨可能对研究控制分化连续体的分子因子有用。

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