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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >An efficient method for Agrobacterium-mediated genetic transformation and plant regeneration in cumin (Cuminum cyminum L.)
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An efficient method for Agrobacterium-mediated genetic transformation and plant regeneration in cumin (Cuminum cyminum L.)

机译:农杆菌介导的孜然(Cuminum cyminum L.)的遗传转化和植物再生的有效方法

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摘要

Cumin is an annual herbaceous medicinally important plant having diverse applications. An efficient and reproducible method of Agrobacterium-mediated genetic transformation was herein established for the first time. A direct regeneration method without callus induction was optimised using embryos as explant material in Gamborg's B5 medium supplemented with 0.5-μM 6-benzyladenine and 2.0-μM α-naphthalene acetic acid. About 1,020 embryos (a mean of 255 embryos per batch) were used for the optimisation of transformation conditions. These conditions were an Agrobacterium cell suspension of 0.6 OD_(600), a co-cultivation time of 72 h, 300-μM acetosyringone and wounding of explants using a razor blade. Pre-cultured elongated embryos were treated using optimised conditions. About 720 embryos (a mean of 180 embryos per batch) were used for transformation and 95 % embryos showed transient β-glucuronidase expression after co-cultivation. Putative transformed embryos were cultured on B5 medium for shoot proliferation and 21 regenerated plants were obtained after selection and allowed to root. T 0 plantlets showed β-glucuronidase expression and gene integration was confirmed via PCR amplification of 0.96 and 1.28 kb fragments of the hygromycin-phosphotransferase II and β-glucuronidase genes, respectively. In this study, a transformation efficiency of 1.5 % was demonstrated and a total of 11 transgenic plants were obtained at the hardening stage, however, only four plants acclimatised during hardening. Gene copy number was analysed by Southern blot analysis of hardened plants and single-copy gene integration was observed. This is the first successful attempt of Agrobacterium-mediated genetic transformation of cumin.
机译:孜然是具有多种应用的一年生草本重要药用植物。本文首次建立了一种有效且可重现的农杆菌介导的遗传转化方法。优化了无愈伤组织诱导的直接再生方法,该方法使用胚胎作为外植体材料在Gamborg的B5培养基中添加了0.5μM的6-苄腺嘌呤和2.0μM的α-萘乙酸。约1,020个胚胎(每批次平均255个胚胎)用于优化转化条件。这些条件是农杆菌细胞悬液为0.6 OD_(600),共培养时间为72 h,300μM乙酰丁香酮和使用剃刀刀片外植体受伤。使用优化的条件处理预培养的细长胚胎。共培养后,大约720个胚胎(每批次平均180个胚胎)被用于转化,并且95%的胚胎显示出瞬时的β-葡萄糖醛酸苷酶表达。将推定的转化胚在B5培养基上培养以进行芽增殖,选择后获得21株再生植株并使其生根。 T 0幼苗显示β-葡萄糖醛酸苷酶表达,并且通过PCR扩增潮霉素-磷酸转移酶II和β-葡萄糖醛酸苷酶基因的0.96和1.28kb片段证实了基因整合。在这项研究中,证明了1.5%的转化效率,并且在硬化阶段获得了11种转基因植物,但是,在硬化过程中只有4株植物适应了环境。通过硬化植物的Southern印迹分析来分析基因拷贝数,并观察到单拷贝基因整合。这是农杆菌介导的孜然遗传转化的首次成功尝试。

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