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Efficient regeneration and Agrobacterium-mediated stable transformation of perennial ryegrass.

机译:多年生黑麦草的高效再生和农杆菌介导的稳定转化。

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摘要

We utilized gene transfer technology for genetic perennial ryegrass improvement, efficient regeneration, and Agrobacterium-mediated transformation of phosphinothricin acetyltransferase gene (bar). Four growth regulator combinations were compared and intact seeds of six turf-type cultivars as mature embryo sources were tested to optimize the regeneration conditions. Callus formation and regeneration were observed in all seeds. The highest callus formation frequency was observed in the seeds cultured on MS medium supplemented with 9 mg/l 2,4-D, without benzyladenine. Cv. TopGun revealed the highest callus induction and regeneration frequencies of 96 and 48.9%, respectively. By using an optimized regeneration system, embryogenic calli were transformed by an Agrobacterium strain LBA4404 containing the plasmid pCAMBIA3301. After the selection of the potentially transgenic calli with phosphinothricin, a herbicide, 22 transgenic resistant plants were regenerated. With PCR, Southern-blot hybridizations, and GUS expression techniques, we confirmed that some regenerants were transgenic. Two of the tested transgenic plants showed herbicide resistance. Our results indicated that embryogenic calli from mature seeds can be directly used for perennial ryegrass efficient regeneration and transformation and this protocol is applicable for genetic engineering of herbicide-resistant plants..
机译:我们利用基因转移技术进行了多年生黑麦草的遗传改良,有效再生以及农杆菌介导的膦丝菌素乙酰转移酶基因(bar)的转化。比较了四种生长调节剂组合,并测试了六个草皮型品种的完整种子作为成熟胚源,以优化再生条件。在所有种子中均观察到愈伤组织的形成和再生。在补充有9 mg / l 2,4-D,无苄腺嘌呤的MS培养基上培养的种子中观察到最高的愈伤组织形成频率。简历。 TopGun揭示了最高的愈伤组织诱导和再生频率,分别为96%和48.9%。通过使用优化的再生系统,胚芽愈伤组织被含有质粒pCAMBIA3301的农杆菌菌株LBA4404转化。在用除草剂草丁膦选择潜在的转基因愈伤组织后,再生了22个转基因抗性植物。通过PCR,Southern印迹杂交和GUS表达技术,我们证实了一些再生剂是转基因的。两种测试的转基因植物显示出对除草剂的抗性。我们的结果表明,成熟种子的胚性愈伤组织可直接用于多年生黑麦草的高效再生和转化,该方案可用于抗除草剂植物的基因工程。

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