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苜蓿(Medicago sativa)的农杆菌介导转化的改良方案

An Improved Protocol for -Mediated Transformation in Subterranean Clover ( L.).

机构信息

UWA School of Agriculture and Environment/Institute of Agriculture, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia.

出版信息

Int J Mol Sci. 2021 Apr 17;22(8):4181. doi: 10.3390/ijms22084181.

Abstract

Subterranean clover () is the most widely grown annual pasture legume in southern Australia. With the advent of advanced sequencing and genome editing technologies, a simple and efficient gene transfer protocol mediated by was developed to overcome the hurdle of genetic manipulation in subterranean clover. In vitro tissue culture and transformation play a central role in testing the link between specific genes and agronomic traits. In this paper, we investigate a variety of factors affecting the transformation in subterranean clover to increase the transformation efficiency. In vitro culture was optimised by including cefotaxime during seed sterilisation and testing the best antibiotic concentration to select recombinant explants. The concentrations for the combination of antibiotics obtained were as follows: 40 mg L hygromycin, 100 mg L kanamycin and 200 mg L cefotaxime. Additionally, 200 mg L cefotaxime increased shoot regeneration by two-fold. Different plant hormone combinations were tested to analyse the best rooting media. Roots were obtained in a medium supplemented with 1.2 µM IAA. Plasmid pH35 containing a hygromycin-resistant gene and gene was inoculated into the explants with strain AGL0 for transformation. Overall, the transformation efficiency was improved from the 1% previously reported to 5.2%, tested at explant level with Cefotaxime showing a positive effect on shooting regeneration. Other variables in addition to antibiotic and hormone combinations such as bacterial OD, time of infection and incubation temperature may be further tested to enhance the transformation even more. This improved transformation study presents an opportunity to increase the feeding value, persistence, and nutritive value of the key Australian pasture.

摘要

三叶草(Trifolium subterraneum)是澳大利亚南部种植最广泛的一年生牧草豆科植物。随着先进测序和基因组编辑技术的出现,开发了一种由农杆菌介导的简单高效的基因转移方案,以克服三叶草遗传操作的障碍。体外组织培养和农杆菌转化在测试特定基因与农艺性状之间的联系方面起着核心作用。在本文中,我们研究了影响三叶草转化的多种因素,以提高转化效率。通过在种子消毒过程中添加头孢噻肟并测试最佳抗生素浓度来选择重组外植体,对体外培养进行了优化。获得的抗生素组合浓度如下:40mg/L 潮霉素、100mg/L 卡那霉素和 200mg/L 头孢噻肟。此外,200mg/L 头孢噻肟使芽再生增加了一倍。测试了不同的植物激素组合来分析最佳生根培养基。在添加 1.2µM IAA 的培养基中获得了根。将含有潮霉素抗性基因和基因的 pH35 质粒接种到用 AGL0 菌株感染的外植体中进行转化。总体而言,转化效率从之前报道的 1%提高到了 5.2%,在添加头孢噻肟的情况下通过外植体水平进行了测试,该抗生素对外植体的芽再生有积极影响。除了抗生素和激素组合之外,还可以进一步测试其他变量,如细菌 OD、感染时间和培养温度,以进一步提高转化效率。这项改进的转化研究为提高澳大利亚关键牧场的饲料价值、持久性和营养价值提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d011/8073064/d9c8eed15c12/ijms-22-04181-g001.jpg

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