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优化介导转化和发育调节剂的应用提高瓜类再生效率。

Optimised -Mediated Transformation and Application of Developmental Regulators Improve Regeneration Efficiency in Melons.

机构信息

Institute of Crop, Wuhan Academy of Agricultural Sciences, Wuhan 430065, China.

Research Center of Hami Melon, Xinjiang Academy of Agricultural Sciences, Urumqi 830091, China.

出版信息

Genes (Basel). 2023 Jul 12;14(7):1432. doi: 10.3390/genes14071432.

Abstract

Melon ( L.) is a protected crop in China with high economic value. -mediated genetic transformation is a powerful tool to improve agronomic traits and obtain elite germplasm. However, current transformation protocols in melons are inefficient and highly genotype-dependent. To improve transformation in melon, we tested different infiltration methods for -mediated transformation. Among these methods, micro-brushing and sonication for 20 s, followed by vacuum infiltration at -1.0 kPa for 90 s, resulted in the strongest green fluorescent protein signal and increased the proportion of infected explants. We transformed melon with developmental regulatory genes , , , , , and from and estimated regeneration frequencies as the number of regenerating shoots/total number of inoculated explants in the selection medium. The overexpression of and in melon resulted in transformation efficiencies of 42.3% and 33% in ZHF and 45.6% and 32.9% in Z12, respectively, which were significantly higher than those of the control. and expression cassettes were added to CRISPR/Cas9 genome-editing vectors to obtain transgenic phytoene desaturase knockout mutants. Using or , multi-allelic mutations were observed at target sites in recalcitrant melon genotypes. This strategy enables genotype-flexible transformation and promotes precise genome modification technologies in melons.

摘要

甜瓜在中国是一种受保护的作物,具有很高的经济价值。-介导的遗传转化是改良农艺性状和获得优良种质的有力工具。然而,目前甜瓜的转化方案效率低下,高度依赖基因型。为了提高甜瓜的转化效率,我们测试了不同的 -介导转化浸润方法。在这些方法中,微刷和超声处理 20 秒,然后在-1.0 kPa 下真空渗透 90 秒,产生了最强的绿色荧光蛋白信号,并增加了感染外植体的比例。我们用发育调控基因从和转化甜瓜,和,,,,和,通过在选择培养基中再生芽的数量/接种外植体的总数来估计再生频率。在甜瓜中超表达和导致转化效率分别为 42.3%和 33%在 ZHF 和 45.6%和 32.9%在 Z12,显著高于对照。和表达盒被添加到 CRISPR/Cas9 基因组编辑载体中,以获得转基因类胡萝卜素脱饱和酶 敲除突变体。使用或,在难以转化的甜瓜基因型中观察到目标位点的多等位基因突变。这种策略使基因型转化变得灵活,并促进了甜瓜中精确的基因组修饰技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e539/10378916/d321b7cfef86/genes-14-01432-g001a.jpg

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