Institute of Plant Molecular Biology, Centre National de la Recherche Scientifique, Université de Strasbourg, Strasbourg, France.
Université de Strasbourg, INRA, SVQV UMR-A 1131, Colmar, France.
PLoS One. 2018 Jun 28;13(6):e0199902. doi: 10.1371/journal.pone.0199902. eCollection 2018.
Cytochromes P450 are enzymes that participate in a wide range of functions in plants, from hormonal signaling and biosynthesis of structural polymers, to defense or communication with other organisms. They represent one of the largest gene/protein families in the plant kingdom. The manual annotation of cytochrome P450 genes in the genome of Vitis vinifera PN40024 revealed 579 P450 sequences, including 279 complete genes. Most of the P450 sequences in grapevine genome are organized in physical clusters, resulting from tandem or segmental duplications. Although most of these clusters are small (2 to 35, median = 3), some P450 families, such as CYP76 and CYP82, underwent multiple duplications and form large clusters of homologous sequences. Analysis of gene expression revealed highly specific expression patterns, which are often the same within the genes in large physical clusters. Some of these genes are induced upon biotic stress, which points to their role in plant defense, whereas others are specifically activated during grape berry ripening and might be responsible for the production of berry-specific metabolites, such as aroma compounds. Our work provides an exhaustive and robust annotation including clear identification, structural organization, evolutionary dynamics and expression patterns for the grapevine cytochrome P450 families, paving the way to efficient functional characterization of genes involved in grapevine defense pathways and aroma biosynthesis.
细胞色素 P450 是参与植物多种功能的酶,从激素信号传导和结构聚合物的生物合成,到防御或与其他生物体的交流。它们代表植物界中最大的基因/蛋白质家族之一。对葡萄 PN40024 基因组中细胞色素 P450 基因的手动注释揭示了 579 个 P450 序列,包括 279 个完整基因。葡萄基因组中的大多数 P450 序列组织在物理簇中,这是由于串联或片段重复导致的。尽管这些簇大多数较小(2 到 35,中位数=3),但一些 P450 家族,如 CYP76 和 CYP82,经历了多次重复,形成了同源序列的大簇。基因表达分析显示出高度特异的表达模式,这些模式通常在大的物理簇内的基因中相同。其中一些基因在生物胁迫下被诱导,这表明它们在植物防御中起作用,而另一些基因则在葡萄浆果成熟过程中特异性激活,可能负责产生浆果特异性代谢物,如香气化合物。我们的工作为葡萄细胞色素 P450 家族提供了详尽而稳健的注释,包括明确的鉴定、结构组织、进化动态和表达模式,为参与葡萄防御途径和香气生物合成的基因的有效功能表征铺平了道路。