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在分化中的针叶树管胞次生壁最内表面,通过场发射扫描电子显微镜检测到的免疫金标记葡甘露聚糖量的日变化。

Diurnal difference in the amount of immunogold-labeled glucomannans detected with field emission scanning electron microscopy at the innermost surface of developing secondary walls of differentiating conifer tracheids.

作者信息

Hosoo Yoshihiro, Yoshida Masato, Imai Takanori, Okuyama Takashi

机构信息

Laboratory of Bio-material Physics, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya 464-8601, Japan.

出版信息

Planta. 2002 Oct;215(6):1006-12. doi: 10.1007/s00425-002-0824-3. Epub 2002 Jul 12.

Abstract

The differences between cell wall formation at night, when the tangential strain used as an index of the volumetric changes in differentiating cells is high, and in the day, when the tangential strain is low, were investigated in Cryptomeria japonica D. Don. Samples containing differentiating xylem were collected at 0500 hours and 1400 hours. The innermost surface of developing secondary walls in differentiating tracheids was observed by field emission scanning electron microscopy. In the specimens collected at 0500 hours, an amorphous material was observed covering the cellulose microfibrils. The cell wall surface was immunogold-labeled with an anti-glucomannan antiserum. After chlorite treatment, the amorphous material disappeared, and immunogold labeling was rarely observed. In the specimens collected at 1400 hours, cellulose microfibrils were clearly evident, and amorphous material and immunogold labeling were rarely observed. We thus confirmed that much amorphous material containing glucomannans is observed at night, when differentiating tracheids are turgid due to the increase in their volume, while the amorphous material was rarely observed during the day when cellulose microfibrils are clearly observed.

摘要

以日本柳杉为研究对象,对夜间(以切向应变作为分化细胞体积变化指标时,切向应变较高)和白天(切向应变较低)细胞壁形成的差异进行了研究。在05:00和14:00收集含有分化木质部的样本。通过场发射扫描电子显微镜观察分化管胞中次生壁发育的最内表面。在05:00收集的标本中,观察到一种无定形物质覆盖在纤维素微纤丝上。细胞壁表面用抗葡甘露聚糖抗血清进行免疫金标记。经过亚氯酸盐处理后,无定形物质消失,很少观察到免疫金标记。在14:00收集的标本中,纤维素微纤丝清晰可见,很少观察到无定形物质和免疫金标记。因此我们证实,夜间,当分化管胞因体积增加而膨胀时,会观察到大量含有葡甘露聚糖的无定形物质,而在白天,当纤维素微纤丝清晰可见时,很少观察到无定形物质。

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