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发根农杆菌介导的源自超级根的百脉根植株转化:功能基因组学的一种宝贵工具。

Agrobacterium rhizogenes-mediated transformation of Superroot-derived Lotus corniculatus plants: a valuable tool for functional genomics.

作者信息

Jian Bo, Hou Wensheng, Wu Cunxiang, Liu Bin, Liu Wei, Song Shikui, Bi Yurong, Han Tianfu

机构信息

The National Key Facility for Crop Gene Resources and Genetic Improvement (NFCRI), Institute of Crop Sciences, The Chinese Academy of Agricultural Sciences, Beijing, PR China.

出版信息

BMC Plant Biol. 2009 Jun 25;9:78. doi: 10.1186/1471-2229-9-78.

Abstract

BACKGROUND

Transgenic approaches provide a powerful tool for gene function investigations in plants. However, some legumes are still recalcitrant to current transformation technologies, limiting the extent to which functional genomic studies can be performed on. Superroot of Lotus corniculatus is a continuous root cloning system allowing direct somatic embryogenesis and mass regeneration of plants. Recently, a technique to obtain transgenic L. corniculatus plants from Superroot-derived leaves through A. tumefaciens-mediated transformation was described. However, transformation efficiency was low and it took about six months from gene transfer to PCR identification.

RESULTS

In the present study, we developed an A. rhizogenes-mediated transformation of Superroot-derived L. corniculatus for gene function investigation, combining the efficient A. rhizogenes-mediated transformation and the rapid regeneration system of Superroot. The transformation system using A. rhizogenes K599 harbouring pGFPGUSPlus was improved by validating some parameters which may influence the transformation frequency. Using stem sections with one node as explants, a 2-day pre-culture of explants, infection with K599 at OD(600) = 0.6, and co-cultivation on medium (pH 5.4) at 22 degrees C for 2 days enhanced the transformation frequency significantly. As proof of concept, Superroot-derived L. corniculatus was transformed with a gene from wheat encoding an Na+/H+ antiporter (TaNHX2) using the described system. Transgenic Superroot plants were obtained and had increased salt tolerance, as expected from the expression of TaNHX2.

CONCLUSION

A rapid and efficient tool for gene function investigation in L. corniculatus was developed, combining the simplicity and high efficiency of the Superroot regeneration system and the availability of A. rhizogenes-mediated transformation. This system was improved by validating some parameters influencing the transformation frequency, which could reach 92% based on GUS detection. The combination of the highly efficient transformation and the regeneration system of Superroot provides a valuable tool for functional genomics studies in L. corniculatus.

摘要

背景

转基因方法为植物基因功能研究提供了强大工具。然而,一些豆科植物对当前的转化技术仍具有抗性,这限制了功能基因组学研究的开展程度。百脉根的超级根是一种连续根克隆系统,可实现植物的直接体细胞胚胎发生和大量再生。最近,有人描述了一种通过根癌农杆菌介导的转化从超级根衍生叶片中获得转基因百脉根植株的技术。然而,转化效率较低,从基因转移到PCR鉴定大约需要六个月。

结果

在本研究中,我们开发了一种发根农杆菌介导的转化超级根衍生百脉根的方法用于基因功能研究,该方法结合了高效的发根农杆菌介导的转化和超级根的快速再生系统。通过验证一些可能影响转化频率的参数,对携带pGFPGUSPlus的发根农杆菌K599的转化系统进行了改进。以带有一个节的茎段作为外植体,外植体预培养2天,在OD(600)=0.6时用K599侵染,并在22℃的培养基(pH 5.4)上共培养2天,显著提高了转化频率。作为概念验证,使用所述系统将来自小麦的编码Na+/H+反向转运蛋白(TaNHX2)的基因转化到超级根衍生的百脉根中。获得了转基因超级根植株,并且正如TaNHX2表达所预期的那样,其耐盐性增强。

结论

结合超级根再生系统的简便性和高效性以及发根农杆菌介导转化的可行性,开发了一种用于百脉根基因功能研究的快速高效工具。通过验证一些影响转化频率的参数对该系统进行了改进,基于GUS检测,转化频率可达92%。超级根的高效转化和再生系统的结合为百脉根的功能基因组学研究提供了一个有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82a5/2708162/8876e73414cc/1471-2229-9-78-1.jpg

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