4.7 Article

Phylogenomic analysis of cytochrome P450 multigene family and its differential expression analysis in pepper (Capsicum annuum L.)

Journal

FRONTIERS IN PLANT SCIENCE
Volume 13, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fpls.2022.1078377

Keywords

cytochrome P450; gene family; pepper; evolution; phylogenetic analysis

Categories

Funding

  1. Project of Sanya Yazhou Bay Science and Technology City
  2. Project of Central Public-Interest Scientific Institution Basal Research Fund
  3. Hainan Provincial Natural Science Foundation of China
  4. [SCKJ-JYRC-2022-05]
  5. [SCKJ-JYRC-2022-25]
  6. [1630032022009]
  7. [322MS132]

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This study identified and characterized P450 genes in pepper, showing that the P450 gene family has undergone massive duplication events and purification selection. Additionally, certain P450 genes were found to play important roles in placenta and pericarp development, while others were related to defense and phytohormone response in pepper.
Plant cytochrome P450 is a multifamily enzyme widely involved in biochemical reactions for the synthesis of antioxidants, pigments, structural polymers, and defense-related compounds. Pepper (Capsicum annuum L.) is an economically important plant. A comprehensive identification and characterization of P450 genes would provide valuable information on the evolutionary relationships of genes and their functional characteristics. In this study, we identified P450 genes in pepper with the aid of bioinformatics methods to investigate the phylogenetic relation, gene structure, chromosomal localization, duplicated events, and collinearity among Solanaceae species. We identified and classified 478 genes of P450 from the pepper genome into two major clades and nine subfamilies through phylogenetic analysis. Massive duplication events were found in the P450 gene family, which may explain the expansion of the P450 gene family. In addition, we also found that these duplication genes may have undergone strict purification selection during evolution. Gene expression analysis showed that some P450 genes that belong to clan 71 in pepper may play an important role in placenta and pericarp development. Through quantitative real-time polymerase chain reaction and transcriptome analysis, we also found that many P450 genes were related to defensive and phytohormone response in pepper. These findings provide insight for further studies to identify the biological functions of the P450 genes in pepper.

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