López-Casado Gloria, Sánchez-Raya Cristina, Ric-Varas Pablo D, Paniagua Candelas, Blanco-Portales Rosario, Muñoz-Blanco Juan, Pose Sara, Matas Antonio J, Mercado Jose A
Departamento de Botánica y Fisiología Vegetal, Instituto de Hortofruticultura Subtropical y Mediterránea 'La Mayora' (IHSM-UMA-CSIC), Universidad de Málaga, 29071 Málaga, Spain.
Departamento de Bioquímica y Biología Molecular, Universidad de Córdoba, 14071, Córdoba, Spain.
Hortic Res. 2023 Feb 1;10(3):uhad011. doi: 10.1093/hr/uhad011. eCollection 2023 Mar.
Firmness is one of the most important fruit quality traits in strawberries. The postharvest shelf life of this soft fruit is highly limited by the loss of firmness, where cell wall disassembly plays an important role. Previous studies demonstrated that the polygalacturonase FaPG1 has a key role in remodelling pectins during strawberry softening. In this study, knockout strawberry plants have been generated using the CRISPR/Cas9 system delivered via . Ten independent lines, cv. "Chandler", were obtained, and all of them were successfully edited as determined by PCR amplification and T7 endonuclease assay. The targeted mutagenesis insertion and deletion rates were analyzed using targeted deep sequencing. The percentage of edited sequences varied from 47% up to almost 100%, being higher than 95% for seven of the selected lines. Phenotypic analyses showed that 7 out of the eight lines analyzed produced fruits significantly firmer than the control, ranging from 33 to 70% increase in firmness. There was a positive relationship between the degree of editing and the rise in fruit firmness. Minor changes were observed in other fruit quality traits, such as colour, soluble solids, titratable acidity or anthocyanin content. Edited fruits showed a reduced softening rate during postharvest, displayed a reduced transpirational water loss, and were less damaged by inoculation. The analysis of four potential off-target sites revealed no mutation events. In conclusion, editing the gene using the CRISPR/Cas9 system is an efficient method for improving strawberry fruit firmness and shelf life.
硬度是草莓最重要的果实品质性状之一。这种软质果实的采后货架期受到硬度损失的极大限制,其中细胞壁解体起着重要作用。先前的研究表明,多聚半乳糖醛酸酶FaPG1在草莓软化过程中重塑果胶方面起关键作用。在本研究中,利用通过……递送的CRISPR/Cas9系统培育出了基因敲除草莓植株。获得了10个独立的“钱德勒”品种株系,通过PCR扩增和T7内切核酸酶检测确定所有株系均成功编辑。使用靶向深度测序分析靶向诱变插入和缺失率。编辑序列的百分比从47%到几乎100%不等,所选的7个株系高于95%。表型分析表明,分析的8个株系中有7个株系所结果实比对照明显更硬,硬度增加33%至70%。编辑程度与果实硬度增加之间存在正相关。在其他果实品质性状上观察到微小变化,如颜色、可溶性固形物、可滴定酸度或花青素含量。编辑后的果实采后软化率降低,蒸腾失水减少,接种……后受损程度减轻。对4个潜在脱靶位点的分析未发现突变事件。总之,利用CRISPR/Cas9系统编辑……基因是提高草莓果实硬度和货架期的有效方法。