Department of Genetics and Bioengineering, Faculty of Engineering and Architecture, Kastamonu University, Kastamonu, Turkey.
Department of Silviculture, Faculty of Forestry, Kastamonu University, Kastamonu, Turkey.
Protoplasma. 2023 Mar;260(2):509-527. doi: 10.1007/s00709-022-01793-8. Epub 2022 Jul 9.
Watermelon and melon are members of the Cucurbitaceae family including economically significant crops in the world. The expansin protein family, which is one of the members of the cell wall, breaks down the non-covalent bonds between cell wall polysaccharides, causing pressure-dependent cell expansion. Comparative bioinformatics and molecular characterization analysis of the expansin protein family were carried out in the watermelon (Citrullus lanatus) and melon (Cucumis melo) plants in the study. Gene expression levels of expansin family members were analyzed in leaf and root tissues of watermelon and melon under ABA, drought, heat, cold, and salt stress conditions by quantitative real-time PCR analysis. After comprehensive searches, 40 expansin proteins (22 ClaEXPA, 14 ClaEXPLA, and 4 ClaEXPB) in watermelon and 43 expansin proteins (19 CmEXPA, 15 CmEXPLA, 3 CmEXPB, and 6 CmEXPLB) in melon were identified. The greatest orthologous genes were identified with soybean expansin genes for watermelon and melon. However, the latest divergence time between orthologous genes was determined with poplar expansin genes for watermelon and melon expansin genes. ClaEXPA-04, ClaEXPA-09, ClaEXPB-01, ClaEXPB-03, and ClaEXPLA-13 genes in watermelon and CmEXPA-12, CmEXPA-10, and CmEXPLA-01 genes in melon can be involved in tissue development and abiotic stress response of the plant. The current study combining bioinformatics and experimental analysis can provide a detailed characterization of the expansin superfamily which has roles in growth and reaction to the stress of the plant. The study ensures detailed data for future studies examining gene functions including the roles in plant growth and stress conditions.
西瓜和甜瓜是葫芦科的成员,包括世界上经济上重要的作物。扩展蛋白家族是细胞壁的成员之一,它打破细胞壁多糖之间的非共价键,导致压力依赖性的细胞扩张。在本研究中,对西瓜(Citrullus lanatus)和甜瓜(Cucumis melo)植物中的扩展蛋白家族进行了比较生物信息学和分子特征分析。通过定量实时 PCR 分析,分析了 ABA、干旱、热、冷和盐胁迫条件下西瓜和甜瓜叶片和根组织中扩展蛋白家族成员的基因表达水平。经过全面搜索,在西瓜中鉴定出 40 种扩展蛋白(22 种 ClaEXPA、14 种 ClaEXPLA 和 4 种 ClaEXPB),在甜瓜中鉴定出 43 种扩展蛋白(19 种 CmEXPA、15 种 CmEXPLA、3 种 CmEXPB 和 6 种 CmEXPLB)。与大豆扩展蛋白基因相比,西瓜和甜瓜的最大同源基因被鉴定出来。然而,西瓜和甜瓜扩展蛋白基因的最新分化时间是用杨树扩展蛋白基因确定的。西瓜 ClaEXPA-04、ClaEXPA-09、ClaEXPB-01、ClaEXPB-03 和 ClaEXPLA-13 基因和甜瓜 CmEXPA-12、CmEXPA-10 和 CmEXPLA-01 基因可能参与植物组织发育和非生物胁迫反应。本研究结合生物信息学和实验分析,可以对扩展素超家族进行详细的特征描述,该家族在植物生长和应激反应中起作用。该研究为未来研究提供了详细的数据,包括基因功能研究,包括在植物生长和胁迫条件下的作用。