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羊栖菜(褐藻纲,墨角藻目)发育过程中合子和胚胎的超微结构及结构特征

Ultrastructural and structural characterization of zygotes and embryos during development in Sargassum cymosum (Phaeophyceae, Fucales).

作者信息

Rover Ticiane, Simioni Carmen, Hable Whitney, Bouzon Zenilda L

机构信息

Department of Cell Biology, Embryology and Genetics, Federal University of Santa Catarina (UFSC), Trindade, 88040-900, Florianópolis, Santa Catarina, Brazil,

出版信息

Protoplasma. 2015 Mar;252(2):505-18. doi: 10.1007/s00709-014-0696-y. Epub 2014 Sep 25.

Abstract

This study investigates the pattern and performance of cellular structures during the early development of zygotes and embryos of Sargassum cymosum. The early development S. cymosum germlings has already been characterized and compared with the pattern of development established for all fucoid algae, in which the zygote remains attached to the receptacle by mucilage during the establishment of polarity and early cell division. As in the algae Fucus and Silvetia, the first division is transverse across the longer axis of the zygote of S. cymosum. However, the cell that will give rise to the rhizoids is not determined in the first division; rather, the formation of this cell occurs with the second division, forming a small cell in the embryo shaded site. Stabilizing polarity during the process of forming a multicellular embryo occurs rapidly. During development, significant cytoplasmic alterations take place. Initially, the cytoplasm shows large clusters of phenolic compounds located in specific parts, but later, in the course of development, these compounds are dispersed in the cytoplasm, although a significant amount remains confined to the nucleus. Moreover, to produce more zygotes and higher growth rates for the germlings, the best conditions found for the species S. cymosum were 22 and 26 °C, respectively.

摘要

本研究调查了半叶马尾藻合子和胚胎早期发育过程中细胞结构的模式和表现。半叶马尾藻幼苗的早期发育已得到表征,并与所有墨角藻目藻类所确立的发育模式进行了比较,在墨角藻目藻类中,合子在极性确立和早期细胞分裂过程中通过黏液附着于生殖托。与墨角藻属和银叶藻属藻类一样,半叶马尾藻合子的第一次分裂是横向于合子的长轴。然而,产生假根的细胞并非在第一次分裂时就确定;相反,该细胞的形成发生在第二次分裂时,在胚胎的荫蔽部位形成一个小细胞。在形成多细胞胚胎的过程中,极性的稳定迅速发生。在发育过程中,细胞质发生了显著变化。最初,细胞质在特定部位显示出大量酚类化合物簇,但后来,在发育过程中,这些化合物分散在细胞质中,尽管仍有大量化合物局限于细胞核。此外,为了使半叶马尾藻产生更多合子并使幼苗具有更高的生长速率,发现该物种的最佳条件分别为22℃和26℃。

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