首页> 外文期刊>Journal of Applied Phycology >An optimized method and a dominant selectable marker for genetic engineering of an industrially promising microalga-Pavlova lutheri
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An optimized method and a dominant selectable marker for genetic engineering of an industrially promising microalga-Pavlova lutheri

机译:一种在工业上有前途的微观帕夫拉路德的基因工程中的优化方法和主导选择标记

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摘要

The marine microalga Pavlova lutheri has great nutritional value as it synthesizes and accumulates higher amounts of polyunsaturated fatty acids (PUFAs). It is commonly used in aquaculture. However, no transformation procedure has been realized for this industrially important microalga so far. Here, we report an efficient protocol for the nuclear transformation of P. lutheri. Agrobacterium-mediated transformation (AMT) of P. lutheri with a mutated genomic clone of phytoene desaturase (pds) gene, pds-L504R, from Haematococcus pluvialis yielded norflurazon-resistant P. lutheri cells. Ideal co-cultivation conditions for achieving higher numbers of transformants was found to be artificial seawater (ASW) medium, 100 mu M acetosyringone, and a 24-h co-cultivation at 25 +/- 1 degrees C. The integration of the introduced gene into the nuclear genome of P. lutheri was shown by PCR amplification of the T-DNA sequences from the genomic DNA of transformants and Southern blot analysis using T-DNA sequences as probes. The transgene expressed efficiently as evidenced by the results of stability and tolerance study, and the qRT-PCR analysis. Results clearly demonstrate the application of AMT approach and pds gene as a dominant selectable marker for the genetic engineering of P. lutheri for fundamental studies and biotechnological applications.
机译:海洋Microalga Pavlova Lutheri具有良好的营养价值,因为它合成并积累了较高量的多不饱和脂肪酸(PUFA)。它通常用于水产养殖。然而,到目前为止,这种工业重要的微藻没有实现转型程序。在这里,我们向Lutheri的核转型报告了一个有效的核转型议定书。来自Haematococcus Pluvialis的植物去饱和酶(PDS)基因的突变基因组克隆的P. Lutheri的农杆菌介导的转化(AMT)产生Notfluroazon抗性P. Lutheri细胞。发现较高数量的转化体的理想共培养条件是人造海水(ASW)中,100μmacetosyringone和24-h共培养,25 +/- 1℃。介绍基因的整合进入P. Lutheri的核基因组通过PCR扩增来自转化体的基因组DNA和Southern印迹分析的T-DNA序列使用T-DNA序列作为探针。通过稳定性和耐受性研究结果和QRT-PCR分析证明的转基因有效。结果清楚地证明AMT方法和PDS基因的应用作为基本研究和生物技术应用的P. Lutheri基因工程的显性选择标记。

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