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Rapid breeding of parthenocarpic tomato plants using CRISPR/Cas9

机译:使用CRISPR / Cas9快速育种单性结实番茄植株

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摘要

Parthenocarpy in horticultural crop plants is an important trait with agricultural value for various industrial purposes as well as direct eating quality. Here, we demonstrate a breeding strategy to generate parthenocarpic tomato plants using the CRISPR/Cas9 system. We optimized the CRISPR/Cas9 system to introduce somatic mutations effectively into SlIAA9—a key gene controlling parthenocarpy—with mutation rates of up to 100% in the T0 generation. Furthermore, analysis of off-target mutations using deep sequencing indicated that our customized gRNAs induced no additional mutations in the host genome. Regenerated mutants exhibited morphological changes in leaf shape and seedless fruit—a characteristic of parthenocarpic tomato. And the segregated next generation (T1) also showed a severe phenotype associated with the homozygous mutated genome. The system developed here could be applied to produce parthenocarpic tomato in a wide variety of cultivars, as well as other major horticultural crops, using this precise and rapid breeding technique.
机译:园艺作物植物中的单性结实是重要的性状,具有用于各种工业目的的农业价值以及直接食用的品质。在这里,我们演示了使用CRISPR / Cas9系统产生单性结实番茄植株的育种策略。我们优化了CRISPR / Cas9系统,将体细胞突变有效地引入了控制单性结实的关键基因SlIAA9中,在T0代中的突变率高达100%。此外,使用深度测序对脱靶突变的分析表明,我们定制的gRNA在宿主基因组中未诱导其他突变。再生的突变体表现出叶形和无核果实的形态变化,这是单性结实番茄的特征。分离的下一代(T1)也显示出与纯合突变基因组相关的严重表型。使用这种精确,快速的育种技术,此处开发的系统可用于在各种品种以及其他主要园艺作物中生产单性结实的番茄。

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