辉尾蛇胎盘中的细胞壁聚合物反映了不同世代的发育和功能差异。

Jason S Henry, Roberto Ligrone, Kevin C Vaughn, Renee A Lopez, Karen S Renzaglia
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摘要

角叉菜的胎座在叶绿体植物中是独一无二的,其特征是配子体一代的转移细胞具有复杂的壁迷宫。在发育过程中,孢子叶足外围的细胞伸长,形成与配子体细胞互相连接的光滑壁管细胞。我们使用 22 种不同细胞壁聚合物的抗体进行免疫金标记,研究了辉尾蛇胎盘中配子体转移细胞和孢子体厚壁细胞在发育和形态上不同细胞壁的成分差异。通过钙荧白荧光检测,纤维素构成了胎盘两侧细胞的细胞壁支架。同聚半乳糖醛酸(HG)和鼠李糖半乳糖醛酸 I(RG-I)果胶在两种细胞类型中都很丰富,厚壁细胞进一步富含甲基酯化的 HG。胎盘细胞壁中丰富的果胶与推测的这些聚合物在细胞壁多孔性和维持有利于溶质运输的酸性细胞外pH值方面的作用相一致。木聚糖半纤维素(而不是甘露聚糖或葡萄糖醛酸聚糖)存在于两代植物细胞壁的交界处,在配子体细胞壁萌发区的密度较低。阿拉伯半乳聚糖蛋白(AGPs)沿着胎盘细胞的质膜多种多样,在两代胎盘细胞的周围细胞中都不存在。胎盘细胞壁中的 AGPs 可能在与信号转导相关的钙结合和释放过程中发挥作用,这与其他植物中的糖蛋白的作用一样。配子体转移细胞的细胞壁中只有较薄的区域含有角质。与对其他系统中转移细胞的研究不同,在辉石菌中没有观察到对针对延展素的 JIM12 抗体的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cell wall polymers in the Phaeoceros placenta reflect developmental and functional differences across generations.

The placenta of hornworts is unique among bryophytes in the restriction of transfer cells that are characterized by elaborate wall labyrinths to the gametophyte generation. During development, cells around the periphery of the sporophyte foot elongate, forming smooth-walled haustorial cells that interdigitate with gametophyte cells. Using immunogold labeling with 22 antibodies to diverse cell wall polymers, we examined compositional differences in the developmentally and morphologically distinct cell walls of gametophyte transfer cells and sporophyte haustorial cells in the placenta of Phaeoceros. As detected by Calcofluor White fluorescence, cellulose forms the cell wall scaffolding in cells on both sides of the placenta. Homogalacturonan (HG) and rhamnogalacturonan I (RG-I) pectins are abundant in both cell types, and haustrorial cells are further enriched in methyl-esterified HGs. The abundance of pectins in placental cell walls is consistent with the postulated roles of these polymers in cell wall porosity and in maintaining an acidic apoplastic pH favorable to solute transport. Xyloglucan hemicellulose, but not mannans or glucuronoxylans, are present in cell walls at the interface between the two generations with a lower density in gametophytic wall ingrowths. Arabinogalactan proteins (AGPs) are diverse along the plasmalemma of placental cells and are absent in surrounding cells in both generations. AGPs in placental cell walls may play a role in calcium binding and release associated with signal transduction as has been speculated for these glycoproteins in other plants. Callose is restricted to thin areas in cell walls of gametophyte transfer cells. In contrast to studies of transfer cells in other systems, no reaction to the JIM12 antibody against extensin was observed in Phaeoceros.

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