Liu Xiaojuan, Gong Qin, Zhao Chenning, Wang Dengliang, Ye Xianming, Zheng Guixia, Wang Yue, Cao Jinping, Sun Chongde
Laboratory of Fruit Quality Biology, The State Agriculture Ministry Laboratory of Horticultural Plant Growth, Development and Quality Improvement, Zhejiang Provincial Key Laboratory of Integrative Biology of Horticultural Plants, Zhejiang University, Hangzhou, China.
Institute of Fruit Tree Research, Quzhou Academy of Agriculture and Forestry Acience, Quzhou, China.
Hortic Res. 2022 Dec 23;10(2):uhac283. doi: 10.1093/hr/uhac283. eCollection 2023 Feb.
Cytochrome P450s (CYPs) are the largest family of enzymes in plant and play multifarious roles in development and defense but the available information about the CYP superfamily in citrus is very limited. Here we provide a comprehensive genome-wide analysis of the CYP superfamily in genome, identifying 301 CYP genes grouped into ten clans and 49 families. The characteristics of both gene structures and motif compositions strongly supported the reliability of the phylogenetic relationship. Duplication analysis indicated that tandem duplication was the major driving force of expansion for this superfamily. Promoter analysis revealed numerous -acting elements related to various responsiveness. RNA-seq data elucidated their expression patterns in citrus fruit peel both during development and in response to UV-B. Furthermore, we characterize a UV-B-induced CYP gene (, designated ) as a flavonoid 3'-hydroxylase for the first time. CitF3'H catalyzed numerous flavonoids and favored naringenin in yeast assays. Virus-induced silencing of in citrus seedlings significantly reduced the levels of 3'-hydroxylated flavonoids and their derivatives. These results together with the endoplasmic reticulum-localization of CitF3'H in plant suggest that this enzyme is responsible for the biosynthesis of 3'-hydroxylated flavonoids in citrus. Taken together, our findings provide extensive information about the CYP superfamily in citrus and contribute to further functional verification.
细胞色素P450(CYPs)是植物中最大的酶家族,在植物发育和防御中发挥着多种作用,但关于柑橘中CYP超家族的现有信息非常有限。在这里,我们对柑橘基因组中的CYP超家族进行了全面的全基因组分析,鉴定出301个CYP基因,分为10个族和49个家族。基因结构和基序组成的特征有力地支持了系统发育关系的可靠性。重复分析表明,串联重复是该超家族扩张的主要驱动力。启动子分析揭示了许多与各种响应相关的顺式作用元件。RNA测序数据阐明了它们在柑橘果皮发育过程中和对UV-B响应时的表达模式。此外,我们首次将一个UV-B诱导的CYP基因(命名为CitF3'H)鉴定为类黄酮3'-羟化酶。在酵母试验中,CitF3'H催化多种类黄酮,并偏好柚皮素。柑橘幼苗中CitF3'H的病毒诱导沉默显著降低了3'-羟基化类黄酮及其衍生物的水平。这些结果以及CitF3'H在植物中的内质网定位表明,该酶负责柑橘中3'-羟基化类黄酮的生物合成。综上所述,我们的研究结果提供了关于柑橘中CYP超家族的广泛信息,并有助于进一步的功能验证。