首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >MtTdp2 alpha-overexpression boosts the growth phase of Medicago truncatula cell suspension and increases the expression of key genes involved in the antioxidant response and genome stability
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MtTdp2 alpha-overexpression boosts the growth phase of Medicago truncatula cell suspension and increases the expression of key genes involved in the antioxidant response and genome stability

机译:MtTdp2α过表达促进了苜蓿截叶苜蓿细胞悬液的生长阶段,并增加了抗氧化反应和基因组稳定性所涉及的关键基因的表达

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Aside from the great importance of Leguminosae in food and agriculture industry, legume model systems like Medicago truncatula are also essential tools to dissect complex cellular pathways and retrieve valuable information to other crops. Here, we investigated the roles played by the tyrosyl-DNA phosphodiesterase 2 alpha (MtTdp2 alpha) gene in cell viability and proliferation using M. truncatula suspension cultures. Our research hypothesis is that the overexpression of MtTdp2 alpha, implicated in the removal of transient topoisomerase/DNA covalent complexes, can impact on cell suspension viability. M. truncatula suspension cultures derived from leaf explants of MtTdp2 alpha-overexpressing lines and a control line carrying the empty vector were used. Our results showed that the control line reached the stationary growth phase by the fourth day of culture while the transgenic lines presented an extended exponential growth, reaching the stationary phase at day six following culture. The MtTdp2 alpha-overexpressing lines also showed increased viability as compared to the control line. The transcript levels of MtSOD, MtAPX, MtMT2, MtMRE11, MtNBS1, MtRad50, MtOGG1 and MtFPG were significantly enhanced in the transgenic lines as compared to control. Overall, our results show that the MtTdp2 alpha overexpression impacts in a positive manner on cell viability and proliferation in suspension cultures. Additionally, our study provides an insight on the suitability of M. truncatula cell suspension cultures as a promising alternative to evaluate potential protective mechanisms, with results comparable to those obtained when using whole plants.
机译:除了豆科在粮食和农业行业中的重要性外,像苜蓿苜蓿这样的豆科植物模型系统也是剖析复杂细胞途径并从其他农作物中获取有价值信息的重要工具。在这里,我们调查了酪氨酰-DNA磷酸二酯酶2α(MtTdp2α)基因在使用truncatula悬浮培养的细胞活力和增殖中的作用。我们的研究假设是,MtTdp2 alpha的过表达与瞬时拓扑异构酶/ DNA共价复合物的去除有关,可能会影响细胞悬液的生存能力。使用了来自MtTdp2α过表达株系的叶外植体和带有空载体的对照株系的截叶芒藻悬浮培养物。我们的结果表明,在培养的第四天,对照品系达到稳定的生长期,而转基因品系呈现出扩展的指数生长,在培养后的第六天达到稳定的生长期。与对照品系相比,MtTdp2 alpha过表达品系还显示出更高的生存力。与对照相比,转基因品系中的MtSOD,MtAPX,MtMT2,MtMRE11,MtNBS1,MtRad50,MtOGG1和MtFPG的转录水平显着提高。总体而言,我们的结果表明MtTdp2α过表达对悬浮培养中的细胞活力和增殖具有积极的影响。此外,我们的研究提供了关于截叶分枝杆菌细胞悬浮培养物作为评估潜在保护机制的有希望替代方法的适用性的见解,其结果可与使用整株植物获得的结果相媲美。

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