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园艺学报 ›› 2004, Vol. 31 ›› Issue (3): 372-374.

• 研究报告 • 上一篇    下一篇

草莓愈伤组织再生能力与活性氧代谢水平相关性研究

田敏1,2;韩凝2;边红武2;朱睦元2*   

  1. (1中国林业科学研究院亚热带林业研究所,富阳311400; 2浙江大学生命科学学院,杭州310012)
  • 收稿日期:2003-11-10 修回日期:2004-04-06 出版日期:2004-06-25 发布日期:2004-06-25
  • 通讯作者: 田敏

The Possible Relationship between the Regeneration Capacity and Reactive Oxygen Species in the Strawberry Calli

Tian Min1,2;Han Ning2;Bian Hongwu2;Zhu Muyuan2*   

  1. (1The Research Institute of Subtropical Forestry,Chinese Academy of Forestry,Fuyang 311400,China;2College of Scienees,Zhejiang University,Hangzhou 310012,China)
  • Received:2003-11-10 Revised:2004-04-06 Online:2004-06-25 Published:2004-06-25

摘要: 草莓外植体在不同组合培养基上诱导产生3类愈伤组织,I型愈伤组织的再生能力较低,Ⅱ和Ⅲ型愈伤组织具有较高的再生能力。Ⅱ和Ⅲ型初生愈伤组织H202 的含量分别是I型的5倍和9倍,02-.的释放速率是其3倍和4倍,并且具有较高的抗氧化酶活性。在继代培养过程中,愈伤组织的形态发生能力下降,I型愈伤组织逐渐失去再生能力,同时所有类型愈伤组织中H202含量缓慢上升,02-.释放速率较快增长,而抗氧化酶活性降低。

关键词: 草莓, 活性氧, 抗氧化酶, 再生能力, 愈伤组织

Abstract: Three types of callus,which present different regeneration capacity,were established in the tissue culture of strawberry.The and types of callus possessed higher regeneration capacity while I type of callus had much lower.In the freshly induced calli,the and types of callus had 5-fold and 9-fold higher contents of intracellular H202,and 3-fold and 4-fold higher level of 02-.,compared with the I type of callus,respectively.Also,the calli and had much higher activities of antioxidant enzymes than the callus I. During the subculture,H202level increased gradually and 02-. rapidly,while the activities of antioxidant enzymes gradually declined.The ability of expression of totipotency in calli decreased,especially the callus I lost the ability after 12 week subculture.The results indicated that the reactive oxygen species might play a dual role in the regeneration of strawberry calli.On the one hand,a certain level of ROS may have a positive effect on the regeneration,and on the other hand,high level of ROS is inhibitory for the expression of totipotency in calli.

Key words: Strawberry, Reactive oxygen species, Antioxidant enzymes, Regeneration capacity, Callus

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