Key Laboratory of Horticultural Crop Biology and Germplasm Innovation in South China, Ministry of Agriculture, College of Horticulture, South China Agricultural University, Guangzhou 510642, China.
College of Horticulture, Hunan Agricultural University, Changsha 410128, China.
Int J Biol Macromol. 2024 Nov;280(Pt 4):136122. doi: 10.1016/j.ijbiomac.2024.136122. Epub 2024 Sep 27.
Capsaicin (CAP), a crucial compound found in chili peppers, not only contributes to their spicy flavor but also possesses several industrial applications. CAP biosynthetic pathway is well known, while its transport mechanism remains elusive. Herein, we performed a comparative transcriptome analysis conducted on pepper fruit tissues at three different stages of development. Four important CAP transporter genes, including one MATE and three ABCs, were identified by differential expression and WGCNA analysis. Specifically, the expression patterns of three ABC genes were assessed in the septum of fruits from nine distinct genotypes of peppers with high capsaicin levels. Interestingly, CaABCG14 was associated with variations in CAP concentration and co-expressed with genes involved in CAP biosynthesis. Transient expression assay revealed that CaABCG14 is localized to the membrane and nucleus. Silencing of CaABCG14 resulted in a notable reduction in the levels of CAP contents and the expression of its biosynthetic genes in the septum of pepper. The overexpression of CaABCG14 greatly intensified the cytotoxic effects of CAP on the yeast cells. Taken together, we for the first time identified a new transporter gene CaABCG14, regulating the CAP accumulation in pepper septum. These findings offer a fresh molecular theoretical framework for CAP transport and accumulation.
辣椒素(CAP)是辣椒中一种重要的化合物,不仅为其辣味做出贡献,还具有多种工业应用。CAP 的生物合成途径众所周知,但其运输机制仍不清楚。在此,我们对三个不同发育阶段的辣椒果实组织进行了比较转录组分析。通过差异表达和 WGCNA 分析,鉴定出了四个重要的 CAP 转运体基因,包括一个 MATE 和三个 ABC 。具体来说,评估了九个具有高辣椒素水平的不同辣椒品种果实隔膜中三个 ABC 基因的表达模式。有趣的是,CaABCG14 与 CAP 浓度的变化有关,并与参与 CAP 生物合成的基因共表达。瞬时表达试验表明,CaABCG14 定位于膜和核。沉默 CaABCG14 导致辣椒隔膜中 CAP 含量和生物合成基因的表达显著降低。CaABCG14 的过表达大大增强了 CAP 对酵母细胞的细胞毒性作用。综上所述,我们首次鉴定出一个新的转运体基因 CaABCG14,调节辣椒隔膜中 CAP 的积累。这些发现为 CAP 的运输和积累提供了新的分子理论框架。