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用于开发基于转座子的插入诱变系统的野生二棱大麦遗传转化

Genetic Transformation of Hordeum vulgare ssp. spontaneum for the Development of a Transposon-Based Insertional Mutagenesis System.

作者信息

Cardinal Marie-Josée, Kaur Rajvinder, Singh Jaswinder

机构信息

Plant Science Department, McGill University, Ste-Anne-de-Bellevue, Quebec, H9X 3V9, Canada.

Department of Bioresource Engineering, McGill University, Ste-Anne-de-Bellevue, Quebec, H9X 3V9, Canada.

出版信息

Mol Biotechnol. 2016 Oct;58(10):672-683. doi: 10.1007/s12033-016-9967-5.

DOI:10.1007/s12033-016-9967-5
PMID:27480175
Abstract

Domestication and intensive selective breeding of plants has triggered erosion of genetic diversity of important stress-related alleles. Researchers highlight the potential of using wild accessions as a gene source for improvement of cereals such as barley, which has major economic and social importance worldwide. Previously, we have successfully introduced the maize Ac/Ds transposon system for gene identification in cultivated barley. The objective of current research was to investigate the response of Hordeum vulgare ssp. spontaneum wild barley accessions in tissue culture to standardize parameters for introduction of Ac/Ds transposons through genetic transformation. We investigated the response of ten wild barley genotypes for callus induction, regenerative green callus induction and regeneration of fertile plants. The activity of exogenous Ac/Ds elements was observed through a transient assay on immature wild barley embryos/callus whereby transformed embryos/calli were identified by the expression of GUS. Transient Ds expression bombardment experiments were performed on 352 pieces of callus (3-5 mm each) or immature embryos in 4 genotypes of wild barley. The transformation frequency of putative transgenic callus lines based on transient GUS expression ranged between 72 and100 % in wild barley genotypes. This is the first report of a transformation system in H. vulgare ssp. spontaneum.

摘要

植物的驯化和密集选择育种引发了与重要胁迫相关等位基因的遗传多样性丧失。研究人员强调了利用野生种质作为基因源来改良诸如大麦等谷类作物的潜力,大麦在全球具有重大的经济和社会意义。此前,我们已成功引入玉米Ac/Ds转座子系统用于栽培大麦中的基因鉴定。当前研究的目的是调查野生大麦(Hordeum vulgare ssp. spontaneum)种质在组织培养中的反应,以标准化通过遗传转化引入Ac/Ds转座子的参数。我们研究了10种野生大麦基因型在愈伤组织诱导、再生绿愈伤组织诱导和可育植株再生方面的反应。通过对未成熟野生大麦胚/愈伤组织进行瞬时分析来观察外源Ac/Ds元件的活性,由此通过GUS表达鉴定转化的胚/愈伤组织。对4种野生大麦基因型的352块愈伤组织(每块3 - 5毫米)或未成熟胚进行了瞬时Ds表达轰击实验。基于瞬时GUS表达的推定转基因愈伤组织系的转化频率在野生大麦基因型中介于72%至100%之间。这是关于野生大麦(H. vulgare ssp. spontaneum)转化系统的首次报道。

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