Genome-wide analysis of the sugarcane PTP family combined with yeast cDNA library screening identifies key cold-responsive genes

生物 基因 转录组 拟南芥 酵母 基因家族 cDNA文库 转基因 遗传学 发起人 蛋白质酪氨酸磷酸酶 脱落酸 转基因作物 互补DNA 微阵列分析技术 基因表达谱 细胞生物学 磷酸酶 糖精 基因组文库 基因表达 酿酒酵母 转化(遗传学) 转录因子 植物
作者
Chaoqi Wang,Xiang Li,Shiying Li,Xiping Yang,Yang Zhao
出处
期刊:Industrial Crops and Products [Elsevier BV]
卷期号:240: 122676-122676
标识
DOI:10.1016/j.indcrop.2026.122676
摘要

Sugarcane ( Saccharum spp.) is an important industrial crop. Its sucrose accumulation and overall biomass utilization for bioethanol production are highly vulnerable to environmental stresses, particularly cold stress. Protein tyrosine phosphatases (PTP) have been reported to participate in cold stress signaling in other plant species, but their roles in sugarcane remain largely unknown. To identify and investigate the mechanisms by which PTP regulate cold tolerance in sugarcane, we performed a genome-wide analysis of the PTP gene family. Gene structure analysis revealed conserved exon-intron patterns within each subfamily, while promoter analysis indicated that most PTP genes harbor cis -regulatory elements (CREs) associated with Abscisic Acid (ABA) and stress responses. A further yeast cDNA library screening under cold stress conditions identified 23 ScPTP candidates responsive to low temperature, among which Saccharum dual specificity phosphatase 2 ( ScDSP2 ) was selected for further functional characterization. Transgenic Arabidopsis assays demonstrated that ScDSP2 significantly enhanced plant tolerance to cold stress. Transcriptome profiling further revealed that ScDSP2 regulates circadian rhythm and integrates multiple phytohormone signaling pathways to optimize energy allocation under cold conditions. Overall, this work provides the first comprehensive genome-wide analysis of the sugarcane PTP family and identifies key regulators of cold signaling, offering a valuable gene resource for improving cold tolerance in sugarcane. • A total of 117 PTP (protein tyrosine phosphatases) genes were identified and classified into seven subfamilies in sugarcane. • Twenty-three ScPTP genes were responsive to cold stress from yeast library screening. • Overexpression of ScDSP2 ( Saccharum dual specificity phosphatase 2) enhanced cold tolerance in transgenic Arabidopsis. • The ScDSP2 ( Saccharum dual specificity phosphatase 2) protein integrates circadian and hormone pathways under cold stress.
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