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海金沙受精作用的细胞学观察

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[目的]阐明蕨类植物中演化地位特殊类群海金沙受精作用的特点和细胞学机制,以完善蕨类植物生殖生物学的细胞学研究.[方法]采用包埋和透射电镜技术,对海金沙受精过程中精子入卵、核融合、受精卵膨胀和极性分化阶段进行超微结构观察.[结果]海金沙卵细胞无典型的卵膜和受精孔,精子通过孔区位置进入卵细胞.第1个精子进入卵细胞的细胞质,有2~6个精子也可通过孔区进入卵细胞孔区下方的受精腔,但无法与卵细胞融合.精子进入卵细胞后,卵细胞剧烈收缩,阻止其他精子进入,在受精腔上方孔区位置形成1层膜结构,能一定程度上阻挡其他精子进入受精腔.精子进入卵细胞后30 min开始进行核融合,精子的细胞核最初集中在卵核的一端,逐渐渗透进入卵核,随受精卵膨胀继续核融合.受精10 h左右,合子产生大量液泡,先建立垂直极性,后转为水平极性,并进行合子第1次分裂.[结论]海金沙进行受精作用时,精子从孔区位置进入,产生受精腔,其受精过程与核心薄囊蕨相似.
Cytological observation of the fertilization of fern Lygodium japonicum
[Objective]The study aims to elucidate the characteristics and cytological mechanisms of fertili-zation in the evolutionary special group of fern Lygodium japonicum.[Methods]Using embedding and electron microscopy techniques,ultrastructural observation was performed on the stage of sperm entry in-to the egg,nuclear fusion,egg expansion,and zygote polarity establishment during the fertilization process of L.japonicum.[Results]L.japonicum didn't have the typical egg envelope and fertilization pore,and spermatozoa penetrated the egg through the pore region.The first spermatozoon entered the cy-toplasm of the egg,and 2-6 spermatozoa could also pass through the pore region to enter the fertilization cavity below the pore region of the egg,but could not fuse with the egg cytoplasm.After sperm entered the egg,the fertilized egg shrinked markedly to prevent the entry of other sperms,and a membrane struc-ture was formed at the pore region above the fertilization cavity,blocking the entry of other sperms into the fertilization cavity.Nuclear fusion was initiated 30 min after spermatozoa entered the egg cell.The nu-cleus of spermatozoa was initially concentrated at one end of the nucleus and gradually penetrated into the nucleus of the egg,and nuclear fusion continued as the fertilized egg were expanding.Around 10 h after fertilization,the zygote produced a large number of vesicles,which first established vertical polarity and then changed to horizontal polarity,and underwent the first division of the zygote.[Conclusion]When L.japonicum undergoes fertilization,spermatozoa enters from the pore region and produces a fertilization cavity,similar to the core leptosporangiatae.

fernsLygodium japonicumfertilizationultrastructure

孙锐、曹建国、戴锡玲

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上海师范大学生命科学学院,上海 200234

蕨类植物 海金沙 受精作用 超微结构

上海市绿化和市容管理局科学技术项目

G242415

2024

西北植物学报
西北农林科技大学,陕西省植物学会

西北植物学报

CSTPCD北大核心
影响因子:1.031
ISSN:1000-4025
年,卷(期):2024.44(9)