• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

‘红宝石’番石榴种子败育机理细胞学研究

Cytological Analysis on Seed Abortion of Psidium guava Ruby

  • 摘要:
    目的 通过解析无籽番石榴‘红宝石’种子败育类型的机制,为番石榴无籽果实发育研究和无籽品种培育提供理论支持。
    方法 以红宝石番石榴(无籽)和‘西瓜’番石榴植株为试验材料,通过花器官形态结构观察、花粉萌发试验、杂交授粉处理、胚胎胚囊石蜡切片以及胚珠授粉受精检测,探究红宝石番石榴无籽特性及其败育机制。
    结果 红宝石番石榴花器官发育完整,不存在缺陷,花药均饱满,充满花粉粒。红宝石花粉萌发率为72.66%,其大部分花粉可萌发出正常的花粉管,花粉育性正常。杂交授粉试验显示,红宝石去雄不授粉处理果实全部脱落,其不具备天然单性结实能力。染色体倍性鉴定红宝石番石榴具有正常的染色体倍性,为二倍体。通过子房及胚囊解剖结构观察发现,红宝石番石榴具有完整的胚珠结构,从开花当天到花后第5天发育正常,此时胚囊状态由球形胚向心形胚发育,当发育至鱼雷形胚时期,胚囊开始出现中空现象。红宝石番石榴在授粉后,精细胞进入胚囊,在授粉后第7天,胚珠开始出现明显的死亡,由于精卵细胞的长期不融合,在授粉后第11天极核降解,珠柄消失,胚珠逐渐瓦解,出现空胚,绝大部分胚珠完全死亡。
    结论 红宝石番石榴种子败育类型属于刺激性单性结实,其需要授粉才能形成无籽果实,受精障碍是导致种子败育的根本原因,且在授粉后第7天胚珠开始发生败育,绝大数胚珠在授粉后第11天已完全死亡。

     

    Abstract:
    Objective Seed-abortion mechanism in the fruit development of seedless Ruby guava was studied based on the cellular observations to aid the breeding and cultivating the unique variety.
    Method Seedless Psidium guava Ruby and Watermelon Guava were compared on flower morphology, pollen germination, hybrid pollination, embryonic blastocyst paraffin section examination, and ovule pollination and fertilization.
    Result The floral organs of Ruby Guava developed fully without apparent defects. The anthers were filled with pollen grains which germinated at a rate of 72.66%, mostly with normal pollen tubes and fertility. In a cross-pollination test, all Ruby fruits were emasculated and not pollinated, indicating an inability to set seeds unisexually. Its diploid chromosomal ploidy was normal, and so was the ovule shown by the regular structure of the ovary and embryo sac. From the day of flowering to the 5th day afterward, the embryo sac developed normally, turning from a spherical to heart shape. Then, a torpedo-like structure appeared with a hollowing core. After the sperms entered the embryo sac in pollination, some ovules began to die in 7d. The lasting absence of sperm-egg fusion invariably caused the polar nucleus to degrade by the 11th day with disappearing funicles, disintegrating ovules, emptying embryos, and eventual death of most ovules.
    Conclusion The stimulating parthenogenesis type of fertilization of Ruby Guava required successful pollination to form the seedless fruits. Failure to inseminate the eggs invariably led to the seed abortion that started in 7d and ended in ovule death in 11d after pollination.

     

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