Laboratory of Plant Anatomy LAVeg, Department of Botany, Institute of Biosciences, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
Laboratory of Cytogenetics and Plant Diversity, Department of General Biology, Center of Biological Sciences, Universidade Estadual de Londrina, Londrina, Brazil.
Cell Biol Int. 2020 Oct;44(10):2065-2074. doi: 10.1002/cbin.11415. Epub 2020 Jul 9.
Cyperaceae representatives present peculiar microsporogenesis and microgametogenesis, which raises the question of how regular the sedge pollen is. In order to answer this question, preanthesis pollen grains of Cyperaceae individuals were analyzed under different tools such as light and transmission electron microscopy, which included cytochemistry and immunogold procedures. The results showed that maturing pollen in Cyperaceae presents some unusual endomembrane behaviors. Endoplasmic reticulum and dictyosomes are concerned in classic secretion pathways in vegetative cells, and possibly the late breakdown of degenerative microspores. However, cortical and concentric endoplasmic reticulum are also present and are possibly related to other functions aside the biosynthetic pathway. Unconventional secretion of large membrane-bound bodies containing cell wall precursors was also observed and confirmed by immunogold. However, since these bodies most likely receive material from dictyosomes, as observed in silver nitrate reaction, the "unconventional" status of this secretion is debatable. Reports of the literature show that these unusual endomembrane formations are not exclusive of the sedge pollen, but little attention have been given to them so far. This could represent an opportunity to re-examine our understanding on the endomembrane system in pollen cells in general.
莎草科代表植物具有独特的小孢子发生和小配子发生,这引发了一个问题,即莎草科花粉是否具有规律性。为了回答这个问题,我们在不同的工具下分析了莎草科个体的花粉粒,包括光镜和透射电镜、细胞化学和免疫胶体金技术。结果表明,成熟的莎草科花粉具有一些不寻常的内膜行为。内质网和高尔基体参与了营养细胞中的经典分泌途径,可能与退化小孢子的晚期解体有关。然而,也存在皮质和同心内质网,它们可能与生物合成途径以外的其他功能有关。还观察到含有细胞壁前体的大型膜结合体的非常规分泌,并通过免疫胶体金进行了证实。然而,由于这些体在硝酸银反应中观察到它们可能从高尔基体接收物质,因此这种分泌的“非常规”状态是值得商榷的。文献报道表明,这些不寻常的内膜形成并非莎草科花粉所特有,但迄今为止,人们对它们的关注较少。这可能代表了重新审视我们对花粉细胞内膜系统的理解的机会。