Dipartimento di Scienze Agrarie, Forestali e Alimentari (DISAFA), Università degli Studi di Torino, Largo Paolo Braccini 2, 10095, Grugliasco, Torino, Italy.
CREA, Research Centre for Genomics and Bioinformatics, 26836, Montanaso Lombardo, Lodi, Italy.
Sci Rep. 2023 Jul 29;13(1):12288. doi: 10.1038/s41598-023-38874-4.
Globe artichoke capitula are susceptible to browning due to oxidation of phenols caused by the activity of polyphenol oxidases (PPOs), this reduces their suitability for fresh or processed uses. A genome-wide analysis of the globe artichoke PPO gene family was performed. Bioinformatics analyses identified eleven PPOs and their genomic and amino acidic features were annotated. Cis-acting element analysis identified a gene regulatory and functional profile associated to plant growth and development as well as stress response. For some PPOs, phylogenetic analyses revealed a structural and functional conservation with different Asteraceae PPOs, while the allelic variants of the eleven PPOs investigated across four globe artichoke varietal types identified several SNP/Indel variants, some of which having impact on gene translation. By RTqPCR were assessed the expression patterns of PPOs in plant tissues and in vitro calli characterized by different morphologies. Heterogeneous PPO expression profiles were observed and three of them (PPO6, 7 and 11) showed a significant increase of transcripts in capitula tissues after cutting. Analogously, the same three PPOs were significantly up-regulated in calli showing a brown phenotype due to oxidation of phenols. Our results lay the foundations for a future application of gene editing aimed at disabling the three PPOs putatively involved in capitula browning.
朝鲜蓟头状花序容易因酚类物质氧化而褐变,这是由于多酚氧化酶(PPO)的活性所致,这降低了它们在新鲜或加工用途中的适用性。对朝鲜蓟 PPO 基因家族进行了全基因组分析。生物信息学分析鉴定了 11 个 PPO,并对其基因组和氨基酸特征进行了注释。顺式作用元件分析确定了与植物生长发育以及应激反应相关的基因调控和功能特征。对于一些 PPO,系统发育分析显示与不同的菊科 PPO 具有结构和功能上的保守性,而在所研究的 11 个 PPO 的 11 个等位变体在四个朝鲜蓟品种类型中鉴定出了几个 SNP/Indel 变体,其中一些变体对基因翻译有影响。通过 RTqPCR 评估了 PPO 在植物组织和具有不同形态的体外愈伤组织中的表达模式。观察到异质的 PPO 表达谱,其中 3 个(PPO6、7 和 11)在切割后头状花序组织中的转录物显著增加。类似地,由于酚类物质氧化而呈现褐色表型的愈伤组织中,同样的 3 个 PPO 也显著上调。我们的研究结果为未来的基因编辑应用奠定了基础,旨在使 3 个可能参与头状花序褐变的 PPO 失活。