College of Bioscience and Biotechnology, Shenyang Agricultural University, Shenyang, 110866, Liaoning, China.
Key Laboratory of Protected Horticulture of Ministry of Education, Shenyang Agricultural University, Shenyang, 110866, Liaoning, China.
Plant Cell Rep. 2023 Dec;42(12):1937-1950. doi: 10.1007/s00299-023-03074-x. Epub 2023 Oct 12.
CsCSE genes might be involved in the tolerance of cucumber to pathogens. Silencing of the CsCSE5 gene resulted in attenuated resistance of cucumber to Podosphaera xanthii and Corynespora cassiicola. Caffeoyl shikimate esterase (CSE), a key enzyme in the lignin biosynthetic pathway, has recently been characterized to play a key role in defense against pathogenic infection in plants. However, a systematic analysis of the CSE gene family in cucumber (Cucumis sativus) has not yet been conducted. Here, we identified eight CsCSE genes from the cucumber genome via bioinformatic analyses, and these genes were unevenly distributed on chromosomes 1, 3, 4, and 5. Results from multiple sequence alignment indicated that the CsCSE proteins had domains required for CSE activity. Phylogenetic analysis of gene structure and protein motifs revealed the conservation and diversity of the CsCSE gene family. Collinearity analysis showed that CsCSE genes had high homology with CSE genes in wax gourd (Benincasa hispida). Cis-acting element analysis of the promoters suggested that CsCSE genes might play important roles in growth, development, and stress tolerance. Expression pattern analysis indicated that CsCSE5 might be involved in regulating the resistance of cucumber to pathogens. Functional verification data confirmed that CsCSE5 positively regulates the resistance of cucumber to powdery mildew pathogen Podosphaera xanthii and target leaf spot pathogen Corynespora cassiicola. The results of our study provide information that will aid the genetic improvement of resistant cucumber varieties.
CsCSE 基因可能参与黄瓜对病原体的耐受。CsCSE5 基因的沉默导致黄瓜对 Podosphaera xanthii 和 Corynespora cassiicola 的抗性减弱。咖啡酰莽草酸酯酶(CSE)是木质素生物合成途径中的关键酶,最近被证实在植物抵御病原感染的防御中发挥关键作用。然而,黄瓜(Cucumis sativus)中 CSE 基因家族的系统分析尚未进行。在这里,我们通过生物信息学分析从黄瓜基因组中鉴定出 8 个 CsCSE 基因,这些基因不均匀分布在染色体 1、3、4 和 5 上。多重序列比对的结果表明,CsCSE 蛋白具有 CSE 活性所需的结构域。基因结构和蛋白基序的系统发育分析揭示了 CsCSE 基因家族的保守性和多样性。共线性分析表明,CsCSE 基因与葫芦科(Benincasa hispida)的 CSE 基因具有高度同源性。启动子顺式作用元件分析表明,CsCSE 基因可能在生长、发育和胁迫耐受中发挥重要作用。表达模式分析表明,CsCSE5 可能参与调节黄瓜对病原体的抗性。功能验证数据证实,CsCSE5 正向调节黄瓜对白粉病病原菌 Podosphaera xanthii 和靶标叶斑病病原菌 Corynespora cassiicola 的抗性。我们的研究结果提供了信息,将有助于改良抗性黄瓜品种。