Ying D, Jintong R, Yang W, Zuhong F, Tian T, Hong Z
Guizhou University of Engineering Science, Bijie, China.
Guizhou Key Laboratory of Plateau Wetland Conservation and Restoration, Guiyang, China.
BMC Plant Biol. 2025 Jul 12;25(1):907. doi: 10.1186/s12870-025-06898-9.
Calmodulin-like (CML) transcription factors function as calcium (Ca⁺) signal sensors and play a pivotal role in plant cold resistance. Although this gene family has been identified in various plant species, the characteristics of the CML gene family in Curcuma alismatifolia and its function under cold stress remain largely unknown. This study identified 202 CACML genes in the Curcuma alismatifolia genome, which were phylogenetically classified into four clades. Members within each clade shared conserved gene structures and motifs. Gene duplication analysis revealed that segmental duplication events (44 events) served as the primary driving force for the expansion of the CACML family. Most homologous gene pairs were subjected to strong purifying selection during evolution, while CACML86 underwent positive selection in both C. alismatifolia and A. viiosum. Promoter regions were enriched with cis-acting elements associated with growth and development, biotic/abiotic stress responses, and hormone responsiveness, suggesting diverse functional roles for CACML genes. Transcriptome analysis indicated that CACML140 regulates the cold stress response in Curcuma alismatifolia via the MAPK cascade signaling pathway. These findings enhance our understanding of CML-mediated cold stress responses in Curcuma alismatifolia and establish a framework for the systematic dissection of CML gene function and the regulatory network governing cold hardiness.
类钙调蛋白(CML)转录因子作为钙(Ca⁺)信号传感器发挥作用,并在植物抗寒性中起关键作用。尽管该基因家族已在多种植物物种中被鉴定出来,但在郁金香水仙中CML基因家族的特征及其在冷胁迫下的功能仍 largely未知。本研究在郁金香水仙基因组中鉴定出202个CACML基因,它们在系统发育上被分为四个进化枝。每个进化枝内的成员具有保守的基因结构和基序。基因复制分析表明,片段重复事件(44个事件)是CACML家族扩张的主要驱动力。大多数同源基因对在进化过程中受到强烈的纯化选择,而CACML86在郁金香水仙和砂仁中都经历了正选择。启动子区域富含与生长发育、生物/非生物胁迫反应和激素反应相关的顺式作用元件,这表明CACML基因具有多种功能作用。转录组分析表明,CACML140通过MAPK级联信号通路调节郁金香水仙中的冷胁迫反应。这些发现增强了我们对郁金香水仙中CML介导的冷胁迫反应的理解,并为系统剖析CML基因功能和控制抗寒性的调控网络建立了框架。