首页> 外文期刊>British Biotechnology Journal >Establishment of an Efficient and PracticalVirus-free Seedling Supply System by Means ofCulture of Shoot Apexes, RT-PCR and ClonalPropagation in Sweet Potato (Ipomoea batatas)
【24h】

Establishment of an Efficient and PracticalVirus-free Seedling Supply System by Means ofCulture of Shoot Apexes, RT-PCR and ClonalPropagation in Sweet Potato (Ipomoea batatas)

机译:利用甘薯芽尖培养,RT-PCR和克隆繁殖建立高效实用的无病毒苗木供应系统

获取原文
           

摘要

Aims: Sweet potato (Ipomoea batatas) cv. “Miyazakibeni” was used as material for shoot apex culture, reverse transcription-polymerase chain reaction (RT-PCR) and clonal propagation to establish an efficient and practical virus-free seedling supply system in production of vegetatively reproductive plants.Study Design: At first, efficient plant regeneration was achieved from shoot apex culture of sweet potato. Secondly, RT-PCR method was used to detect the sweet potato feathery mottle virus (SPFMV) viral infection of tuber surface of edible sweet potato using the RNAs from the plants obtained from shoot apex culture. Finally, the virus-free plants verified by RT-PCR were propagated clonally by culture of suckers cut from stems of the virus-free plants. Place and Duration of Study: Faculty of Environmental and Horticultural Science, Minami Kyushu University, between June 2008 and December 2012.Methodology: The best efficiency for material sterilization was tested using different concentrations (0.1% - 1.5%) of sodium hypochlorite solution (SHS) and the treated times (5 min – 20 min). Theshoot apexes less than 0.3mm in size were cultured on Komamine and Nomura (1998) (KN) medium and Murashige and Skoog (1962) (MS) medium. The regenerated plants were used for RNA extraction and then, used for RT-PCR for detection of SPFMV. Based on the result of RT-PCR, the suckers cut from stems of virus-free plants were cultured and propagated clonally and routinely within a short period. Results: The combination of 0.3% of SHS and 10 and/or 20 min gave the best result (100%) of surviving rate for material sterilization. The culture of shoot apexes less than 0.3 mm in size gave plant regenerating rates of 82% and 65% on KN and MS medium, respectively. The results of RT-PCR of RNAs from plants obtained from shoot apex culture and plants of SPFMV infection showed that SPFMV virus was clearly removed by shoot apex culture conducted in this study. For clonal propagation, 80-100% of suckers cut from the stems of the virus-free plants detected grew into complete plants after 6 weeks of culture, indicating that the virus-free plants could be routinely propagated 5 times in number each time and repeatable by the short circle. The sweet potato produced in field showed no symptom called as russet crack-like symptom (RC-LS) even after cultivation two seasons.Conclusion: Overall, an efficient and practical virus-free seedling supply system was established in sweet potato by the three steps of 1) virus-free plant regeneration from shoot apex culture, 2) quick detection of SPFMV using RNA of the regenerated plants by RT-PCR, and 3) the verified virus-free plants were propagated clonally and routinely within a short period using culture of suckers cut from the stems of virus-free plants.
机译:目的:甘薯(番薯)。 “ Miyazakibeni”被用作茎尖培养,逆转录-聚合酶链反应(RT-PCR)和克隆繁殖的材料,以建立用于生产无性繁殖植物的高效实用的无病毒苗木供应系统。研究设计:首先通过从甘薯的茎尖培养获得有效的植物再生。其次,采用RT-PCR方法,利用从茎尖培养物中提取的RNA,检测可食甘薯块茎表面的甘薯羽状斑驳病毒(SPFMV)病毒感染。最后,通过培养从无病毒植物的茎上切下来的吸盘,通过RT-PCR验证的无病毒植物被无性繁殖。研究的地点和持续时间:南九州大学环境与园艺科学学院,2008年6月至2012年12月。方法:采用不同浓度(0.1%-1.5%)的次氯酸钠溶液测试了材料杀菌的最佳效率(SHS)和处理时间(5分钟– 20分钟)。在Komamine和Nomura(1998)(KN)培养基以及Murashige和Skoog(1962)(MS)培养基上培养直径小于0.3毫米的尖顶。将再生的植物用于RNA提取,然后用于RT-PCR以检测SPFMV。根据RT-PCR的结果,从无病毒植物的茎上切下的吸盘在短时间内进行了无性繁殖和常规繁殖。结果:0.3%的SHS和10和/或20分钟的组合对材料灭菌的存活率达到最佳结果(100%)。在KN和MS培养基上培养的茎尖小于0.3 mm的植物再生率分别为82%和65%。 RT-PCR的结果表明,从茎尖培养物中获得的植物和SPFMV感染的植物中的RNA均通过本研究的茎尖培养明显清除了SPFMV病毒。对于克隆繁殖,从检测到的无病毒植物的茎上切下的吸盘中有80-100%可以在培养6周后长成完整的植物,这表明无病毒植物每次可以常规繁殖5次,并且短圈可重复。田间生产的红薯即使经过两个季节的耕种,也没有出现称为赤褐色裂状症状(RC-LS)的症状。结论:总体上,通过三个步骤,建立了高效,实用的无病毒苗木供应系统1)芽顶培养中的无病毒植物再生; 2)使用再生植物的RNA通过RT-PCR快速检测SPFMV; 3)经验证的无病毒植物通过培养在短时间内克隆和常规繁殖从无病毒植物的茎上切下的吸盘。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号