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金花石蒜的农杆菌介导的植株转化。

Agrobacterium-Mediated in Planta Transformation in Periwinkle.

机构信息

Molecular Plant Biology and Biotechnology Lab, CSIR-Central Institute of Medicinal and Aromatic Plants, Research Centre, Bengaluru, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.

出版信息

Methods Mol Biol. 2022;2505:301-315. doi: 10.1007/978-1-0716-2349-7_22.

Abstract

Madagascar periwinkle (Catharanthus roseus, family Apocynaceae) is a reservoir of more than 130 monoterpene indole alkaloids (MIAs) including the famous anti-neoplastic dimeric MIAs vinblastine and vincristine, and anti-hypertensive monomeric MIAs ajmalicine and serpentine. Understanding the biosynthetic steps and regulatory factors leading to the formation of MIAs is crucial for rational engineering to achieve targeted enhancement of different MIAs. Due to its highly recalcitrant nature, C. roseus is considered genetically non-tractable for transformation at the whole-plant level. Though few reports have demonstrated tissue culture-mediated regeneration and transformation of C. roseus at whole-plant level recently, the efficiency and reproducibility of these protocols have been a major challenge. To overcome this, we have developed a tissue-culture-independent Agrobacterium-mediated in planta transformation method in C. roseus. Using this method, we were able to efficiently generate stable transgenic plants without relying on the cumbersome methods of tissue-culture regeneration and transformation. Moreover, the transformed plants obtained through this in planta method exhibited stability in subsequent generations. Our method is useful not only for the elucidation of biosynthetic and regulatory steps involved in MIA formation through transgenic plant approach but also for metabolic engineering at the whole-plant level in C. roseus.

摘要

马达加斯加长春花(夹竹桃科)是 130 多种单萜吲哚生物碱(MIAs)的储存库,其中包括著名的抗肿瘤二聚 MIA 长春碱和长春新碱,以及抗高血压单体 MIA 阿马碱和蛇根碱。了解形成 MIA 的生物合成步骤和调控因子对于实现针对不同 MIA 的目标增强至关重要。由于其高度顽固的性质,长春花被认为在整个植物水平上的遗传转化难以实现。尽管最近有少数报道证明了组织培养介导的长春花的整体再生和转化,但这些方案的效率和可重复性一直是一个主要挑战。为了克服这一困难,我们开发了一种在长春花中无需组织培养的农杆菌介导的体内转化方法。使用这种方法,我们能够高效地生成稳定的转基因植物,而无需依赖组织培养再生和转化的繁琐方法。此外,通过这种体内方法获得的转化植物在随后的世代中表现出稳定性。我们的方法不仅有助于通过转基因植物方法阐明 MIA 形成涉及的生物合成和调控步骤,而且有助于在长春花的整个植物水平上进行代谢工程。

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