Plant regeneration and transformation of Trachyspermum ammi using Agrobacterium tumefaciens and zygotic embryos.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal, genetic engineering & biotechnology Pub Date : 2021-05-11 DOI:10.1186/s43141-021-00173-8
Masoumeh Nomani, Masoud Tohidfar
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引用次数: 2

Abstract

Background: Trachyspermum ammi is one of the key medicinal plant species with many beneficial properties. Thymol is the most important substance in the essential oil of this plant. Thymol is a natural monoterpene phenol with high anti-microbial, anti-bacterial, and anti-oxidant properties. Thymol in the latest research has a significant impact on slowing the progression of cancer cells in human. In this research, embryos were employed as convenient explants for the fast and effectual regeneration and transformation of T. ammi. To regenerate this plant, Murashige and Skoog (MS) and Gamborg's B5 (B5) media were supplemented with diverse concentrations of plant growth regulators, such as 6-benzyladenine (BA), 1-naphthaleneacetic acid (NAA), 2,4-dichlorophenoxyacetic acid (2,4-D), and kinetin (kin). Transgenic Trachyspermum ammi plants were also obtained using Agrobacterium-mediated transformation and zygotic embryos explants. Moreover, two Agrobacterium tumefaciens strains (EHA101 and LBA4404) harboring pBI121-TPS2 were utilized for genetic transformation to Trachyspermum ammi.

Results: According to the obtained results, the highest plant-regeneration frequency was obtained with B5 medium supplemented with 0.5 mg/l BA and 1 mg/l NAA. The integrated gene was also approved using the PCR reaction and the Southern blot method. Results also showed that the EHA101 strain outperformed another strain in inoculation time (30 s) and co-cultivation period (1 day) (transformation efficiency 19.29%). Furthermore, HPLC method demonstrated that the transformed plants contained a higher thymol level than non-transformed plants.

Conclusions: In this research, a fast protocol was introduced for the regeneration and transformation of Trachyspermum ammi, using zygotic embryo explants in 25-35 days. Our findings confirmed the increase in the thymol in the aerial part of Trachyspermum ammi. We further presented an efficacious technique for enhancing thymol content in Trachyspermum ammi using Agrobacterium-mediated plant transformation system that can be beneficial in genetic transformation and other plant biotechnology techniques.

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农杆菌和合子胚对羊草植株再生转化的研究。
背景:羊草(Trachyspermum ammi)是具有多种有益特性的重要药用植物之一。百里酚是这种植物精油中最重要的物质。百里香酚是一种天然的单萜酚,具有很高的抗微生物、抗菌和抗氧化性能。在最新的研究中,百里香酚对减缓人类癌细胞的进展有显著的影响。本研究以胚为外植体,快速有效地实现了棉桃的再生转化。为了使该植物再生,在Murashige and Skoog (MS)和Gamborg’s B5 (B5)培养基中添加不同浓度的植物生长调节剂,如6-苄基腺嘌呤(BA)、1-萘乙酸(NAA)、2,4-二氯苯氧乙酸(2,4- d)和kinetin (kin)。利用农杆菌介导的转化和合子胚外植体也获得了转基因羊草植株。此外,利用携带pBI121-TPS2基因的两株农杆菌EHA101和LBA4404向水稻进行了遗传转化。结果:结果表明,在B5培养基中添加0.5 mg/l BA和1 mg/l NAA时植株再生频率最高。利用PCR反应和Southern blot方法对整合基因进行了验证。结果还表明,EHA101菌株在接种时间(30 s)和共培养时间(1 d)上均优于另一菌株(转化效率19.29%)。高效液相色谱法表明,转化植株的百里酚含量高于未转化植株。结论:本研究建立了一种利用合子胚外植体在25 ~ 35 d内再生转化的快速方法。我们的研究结果证实了百里香酚在香草的气生部分的增加。我们进一步提出了一种利用农杆菌介导的植物转化系统提高羊草百里香酚含量的有效技术,该技术可用于遗传转化和其他植物生物技术。
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