...
首页> 外文期刊>Biotechnology for Biofuels >A high-throughput transient gene expression system for switchgrass (Panicum virgatum L.) seedlings
【24h】

A high-throughput transient gene expression system for switchgrass (Panicum virgatum L.) seedlings

机译:柳枝switch(Panicum virgatum L.)幼苗的高通量瞬时基因表达系统

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background Grasses are relatively recalcitrant to genetic transformation in comparison to certain dicotyledons, yet they constitute some of the most important biofuel crops. Genetic transformation of switchgrass (Panicum virgatum L.) has previously been reported after cocultivation of explants with Agrobacterium and biolistics of embryogenic calli. Experiments to increase transient gene expression in planta may lead to stable transformation methods with increased efficiency. Results A high-throughput Agrobacterium-mediated transient gene expression system has been developed for in planta inoculation of germinating switchgrass seedlings. Four different Agrobacterium strains were compared for their ability to infect switchgrass seedlings, and strain AGL1 was found to be the most infective. Wounding pretreatments such as sonication, mixing by vortex with carborundum, separation by centrifugation, vacuum infiltration, and high temperature shock significantly increased transient expression of a reporter gene (GUSPlus, a variation of the β-glucuronidase (GUS) gene). The addition of L-cysteine and dithiothreitol in the presence of acetosyringone significantly increased GUS expression compared with control treatments, whereas the addition of 0.1% surfactants such as Silwet L77 or Li700 decreased GUS expression. 4-Methylumbelliferyl beta-D-galactopyranoside (MUG) assays showed a peak of β-glucuronidase (GUS) enzyme activity 3 days after cocultivation with Agrobacterium harboring pCambia1305.2, whereas MUG assays showed a peak of enzyme activity 5 days after cocultivation with Agrobacterium harboring pCambia1305.1. Conclusion Agrobacterium strains C58, GV3101 and EHA105 are less able to deliver transfer DNA to switchgrass seedlings (cultivar Alamo) compared with strain AGL1. Transient expression was increased by double or triple wounding treatments such as mixing by vortex with carborundum, sonication, separation by centrifugation, and heat shock. The addition of thiol compounds such as L-cysteine and dithiothreitol in combination with acetosyringone during cocultivation also increased transient expression. The combination of multiple wounding treatments along with the addition of thiol compounds during cocultivation increased transient expression levels from 6% to 54%. There were differences in temporal GUS expression induced by pCambia1305.1 and pCambia1305.2.
机译:背景技术与某些双子叶植物相比,草对基因转化的抵抗力相对较强,但它们构成了一些最重要的生物燃料作物。先前已经报道了柳枝((Panicum virgatum L.)的遗传转化是在将外植体与农杆菌共培养并进行了胚发生性愈伤组织的生物筛选后进行的。增加植物中瞬时基因表达的实验可能会导致效率提高的稳定转化方法。结果已开发出一种高通量农杆菌介导的瞬时基因表达系统,用于植物萌发的柳枝switch幼苗的接种。比较了四种不同农杆菌菌株感染柳枝switch幼苗的能力,发现菌株AGL1最具感染力。诸如超声处理,涡旋与金刚砂混合,离心分离,真空浸润和高温冲击等创伤性预处理显着增加了报告基因(GUSPlus,一种β-葡萄糖醛酸苷酶(GUS)基因的变异)的瞬时表达。与对照处理相比,在乙酰丁香酮存在下添加L-半胱氨酸和二硫苏糖醇显着提高了GUS表达,而添加0.1%表面活性剂(如Silwet L77或Li700)则降低了GUS表达。与带有pCambia1305.2的农杆菌共培养3天后,4-甲基伞形酮基β-D-吡喃半乳糖苷(MUG)分析显示了β-葡萄糖醛酸酶(GUS)酶活性的峰值,而与农杆菌共培养5天后,MUG分析显示了酶活性的峰值。带有pCambia1305.1。结论与AGL1菌株相比,农杆菌C58,GV3101和EHA105菌株不能将转移DNA递送至柳枝seedling幼苗(Alamo品种)。瞬时表达通过双重或三次创伤处理而增加,例如涡旋与金刚砂混合,超声处理,离心分离和热激处理。在共培养过程中添加硫醇化合物(例如L-半胱氨酸和二硫苏糖醇)与乙酰丁香酮的组合也增加了瞬时表达。在共培养过程中多次伤口处理以及硫醇化合物的添加将瞬时表达水平从6%提高到54%。 pCambia1305.1和pCambia1305.2诱导的颞GUS表达存在差异。

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