Laboratory of Plant Molecular Biology, Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.
Sci China Life Sci. 2018 Jan;61(1):88-99. doi: 10.1007/s11427-017-9053-y. Epub 2017 May 19.
Phospholipase C (PLC) are important regulatory enzymes involved in several lipid and Ca-dependent signaling pathways. Previous studies have elucidated the versatile roles of PLC genes in growth, development and stress responses of many plants, however, the systematic analyses of PLC genes in the important fiber-producing plant, cotton, are still deficient. In this study, through genome-wide survey, we identified twelve phosphatidylinositol-specific PLC (PI-PLC) and nine non-specific PLC (NPC) genes in the allotetraploid upland cotton Gossypium hirsutum and nine PI-PLC and six NPC genes in two diploid cotton G. arboretum and G.raimondii, respectively. The PI-PLC and NPC genes of G. hirsutum showed close phylogenetic relationship with their homologous genes in the diploid cottons and Arabidopsis. Segmental and tandem duplication contributed greatly to the formation of the gene family. Expression profiling indicated that few of the PLC genes are constitutely expressed, whereas most of the PLC genes are preferentially expressed in specific tissues and abiotic stress conditions. Promoter analyses further implied that the expression of these PLC genes might be regulated by MYB transcription factors and different phytohormones. These results not only suggest an important role of phospholipase C members in cotton plant development and abiotic stress response but also provide good candidate targets for future molecular breeding of superior cotton cultivars.
磷脂酶 C(PLC)是参与多种脂质和 Ca 依赖性信号通路的重要调节酶。先前的研究已经阐明了 PLC 基因在许多植物的生长、发育和应激反应中的多种作用,然而,在重要的纤维生产植物棉花中,对 PLC 基因的系统分析仍然不足。在这项研究中,通过全基因组调查,我们在四倍体陆地棉 Gossypium hirsutum 中鉴定了 12 个磷脂酰肌醇特异性 PLC(PI-PLC)和 9 个非特异性 PLC(NPC)基因,在两个二倍体棉花 G. arboretum 和 G. raimondii 中分别鉴定了 9 个 PI-PLC 和 6 个 NPC 基因。G. hirsutum 的 PI-PLC 和 NPC 基因与二倍体棉花和拟南芥中的同源基因具有密切的系统发育关系。片段和串联重复对基因家族的形成贡献很大。表达谱分析表明,少数 PLC 基因是组成型表达的,而大多数 PLC 基因在特定组织和非生物胁迫条件下优先表达。启动子分析进一步表明,这些 PLC 基因的表达可能受到 MYB 转录因子和不同植物激素的调控。这些结果不仅表明磷脂酶 C 成员在棉花植物发育和非生物胁迫反应中具有重要作用,而且为未来优异棉花品种的分子育种提供了良好的候选目标。