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Characterization of an algal phosphomannose isomerase gene and its application as a selectable marker for genetic manipulation of tomato

机译:藻类磷酸族磷糖异构酶基因的表征及其应用作为番茄遗传操作的选择标志物

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摘要

Establishing a transgenic plant largely relies on a selectable marker gene that can confer antibiotic or herbicide resistance to plant cells.The existence of such selectable marker genes in genetically modified foods has long been criticized.Plant cells generally exhibit too low an activity of phosphomannose isomerase(PMI)to grow with mannose as a sole carbon source.In this study,we characterized PMI from the green microalga Chlorococcum sp.and assessed its feasibility as a selectable marker for plant biotechnology.Chlorococcum sp.PMI(ChlPMI)was shown to be closely related to higher plants but more distant to bacterial counterparts.Overexpression of ChlPMI in tomato induced callus and shoot formation in media containing mannose(6 g/L)and had an average transformation rate of 3.9%.Based on this transformation system,a polycistronic gene cluster containing crtB,HpBHY,CrBKT and SlLCYB(BBBB)was co-expressed in a different tomato cultivar.Six putative transformants were achieved with a transformation rate of 1.4%,which produced significant amounts of astaxanthin due to the expression of the BBBB genes.Taken together,these findings indicate that we have established an additional tool for plant biotechnology that may be suitable for genetically modifying foods safely.
机译:建立转基因植物在很大程度上依赖于可选择的标记基因,该基因可以赋予植物细胞的抗生素或除草剂抗性。在遗传修饰食品中存在这种选择的标记基因长期以来一直受到批评.PLANT细胞通常表现出磷蛋白酶异构酶的活性过低( PMI)用甘露糖生长作为唯一的碳源。本研究中,我们将PMI从绿色微藻Chlorococcum Sp中表征了PMI.and,评估其作为植物生物技术选择的可选标记的可行性。表明,表现出密切关注的植物生物技术的可选标记与高等植物相关但对细菌对应的更远。在番茄诱导的愈伤组织中ChlpMI的肿瘤和含有甘露糖(6g / L)的培养基中的芽形成,并且在该转化系统上具有3.9%的平均转化率,是多函数基因含有CRTB,HPBHY,CRBKT和Sllcyb(BBBB)的簇在不同的番茄栽培品种中共同表达。符号推定转化体与TRAN实现由于BBBB基因的表达,这些调查结果表明,由于BBBB基因的表达,这些调查结果表明我们已经建立了适用于植物生物技术的额外工具,这些结果表明,植物生物技术的额外工具可能适合安全地改性食品。

著录项

  • 来源
    《植物多样性:英文版》 |2021年第001期|P.63-70|共8页
  • 作者

    Yuanyuan Lin; Junchao Huang;

  • 作者单位

    Key Laboratory of Economic Plants and Biotechnology Yunnan Key Laboratory for Wild Plant Resources Kunming Institute of Botany Chinese Academy of Sciences Kunming 650201 People''s Republic of ChinaUniversity of Chinese Academy of Sciences Beijing 100049 People''s Republic of China;

    Key Laboratory of Economic Plants and Biotechnology Yunnan Key Laboratory for Wild Plant Resources Kunming Institute of Botany Chinese Academy of Sciences Kunming 650201 People''s Republic of China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 S64;
  • 关键词

    Algae; Tomato; Transformation; Phosphomannose isomerase; Astaxanthin;

    机译:藻类;番茄;转化;磷酸磷酸异构酶;虾青素;
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