College of Horticulture, Gansu Agricultural University, Lanzhou, 730070, People's Republic of China.
Protoplasma. 2022 Nov;259(6):1541-1552. doi: 10.1007/s00709-022-01751-4. Epub 2022 Mar 16.
Phospholipase C (PLC) is one of the major lipid-hydrolyzing enzymes, involved in lipid-mediating signal pathway. PLCs have been found to play a significant role in the growth and development of plants. In this study, the genome-wide identification and characteristic analysis of CaPLC family genes in pepper were conducted and the expression of two CaPLC genes were investigated. The results showed that a total of 11 CaPLC family genes were systematically identified, which were distributed on five chromosomes and divided into two groups based on their evolutionary relevance. Some cis-elements responding to different hormones and stresses were screened in the promoters of CaPLC genes. Quantitative real-time PCR indicated that the expression of CaPIPLC1 and CaPIPLC5 in flowers were dozens of times higher than in other tissues. In addition, with the development of flower buds, the relative expressions of CaPIPLC1 and CaPIPLC5 gradually increased in fertile materials R1 and F. However, no expression of CaPIPLC1 and CaPIPLC5 were detected at all developmental stages of cytoplasmic male sterile lines (CMS) compared with fertile accessions. The study revealed the number and characteristics of the CaPLC family genes, which supplied a basic and systematic understanding of CaPLC family. In addition, these findings provided new insights into the role of CaPLC genes in pollen development and fertility restoration in pepper.
磷脂酶 C(PLC)是一种主要的脂类水解酶,参与脂类介导的信号途径。已经发现 PLC 在植物的生长和发育中起着重要作用。本研究对辣椒中的 CaPLC 家族基因进行了全基因组鉴定和特征分析,并研究了两个 CaPLC 基因的表达。结果表明,系统鉴定了 11 个 CaPLC 家族基因,它们分布在 5 条染色体上,并根据进化相关性分为两组。在 CaPLC 基因启动子中筛选到了响应不同激素和胁迫的顺式元件。定量实时 PCR 表明,CaPIPLC1 和 CaPIPLC5 在花中的表达是其他组织的几十倍。此外,随着花蕾的发育,CaPIPLC1 和 CaPIPLC5 在可育材料 R1 和 F 中的相对表达逐渐增加。然而,与可育品系相比,细胞质雄性不育系(CMS)的所有发育阶段均未检测到 CaPIPLC1 和 CaPIPLC5 的表达。该研究揭示了 CaPLC 家族基因的数量和特征,为 CaPLC 家族提供了基本和系统的理解。此外,这些发现为 CaPLC 基因在辣椒花粉发育和育性恢复中的作用提供了新的见解。