College of Horticulture and Gardening, Spice Crops Research Institute, Yangtze University, Jingzhou, 434025, Hubei, China.
Special Plants Institute, College of Landscape Architecture and Life Science, Chongqing University of Arts and Sciences, Chongqing, 402160, China.
BMC Genomics. 2024 Jan 20;25(1):83. doi: 10.1186/s12864-024-09966-w.
Protein phosphatases type 2C (PP2C) are heavily involved in plant growth and development, hormone-related signaling pathways and the response of various biotic and abiotic stresses. However, a comprehensive report identifying the genome-scale of PP2C gene family in ginger is yet to be published.
In this study, 97 ZoPP2C genes were identified based on the ginger genome. These genes were classified into 15 branches (A-O) according to the phylogenetic analysis and distributed unevenly on 11 ginger chromosomes. The proteins mainly functioned in the nucleus. Similar motif patterns and exon/intron arrangement structures were identified in the same subfamily of ZoPP2Cs. Collinearity analysis indicated that ZoPP2Cs had 33 pairs of fragment duplicated events uniformly distributed on the corresponding chromosomes. Furthermore, ZoPP2Cs showed greater evolutionary proximity to banana's PP2Cs. The forecast of cis-regulatory elements and transcription factor binding sites demonstrated that ZoPP2Cs participate in ginger growth, development, and responses to hormones and stresses. ZoERFs have plenty of binding sites of ZoPP2Cs, suggesting a potential synergistic contribution between ZoERFs and ZoPP2Cs towards regulating growth/development and adverse conditions. The protein-protein interaction network displayed that five ZoPP2Cs (9/23/26/49/92) proteins have robust interaction relationship and potential function as hub proteins. Furthermore, the RNA-Seq and qRT-PCR analyses have shown that ZoPP2Cs exhibit various expression patterns during ginger maturation and responses to environmental stresses such as chilling, drought, flooding, salt, and Fusarium solani. Notably, exogenous application of melatonin led to notable up-regulation of ZoPP2Cs (17/59/11/72/43) under chilling stress.
Taken together, our investigation provides significant insights of the ginger PP2C gene family and establishes the groundwork for its functional validation and genetic engineering applications.
蛋白磷酸酶 2C(PP2C)在植物生长发育、激素相关信号通路以及各种生物和非生物胁迫的响应中起着重要作用。然而,目前还没有关于姜属基因组规模的 PP2C 基因家族的全面报道。
本研究基于姜属基因组,鉴定出 97 个 ZoPP2C 基因。这些基因根据系统发育分析分为 15 个分支(A-O),并不均匀分布在 11 条姜属染色体上。蛋白质主要在核内发挥作用。在 ZoPP2C 的同一亚家族中发现了相似的基序模式和外显子/内含子排列结构。共线性分析表明,ZoPP2C 均匀分布在相应染色体上有 33 对片段重复事件。此外,ZoPP2C 与香蕉的 PP2C 具有更大的进化亲缘关系。顺式调控元件和转录因子结合位点的预测表明,ZoPP2C 参与姜的生长、发育以及对激素和胁迫的响应。ZoERFs 有大量 ZoPP2C 的结合位点,表明 ZoERFs 和 ZoPP2C 之间可能存在协同作用,共同调节生长/发育和逆境。蛋白质-蛋白质相互作用网络显示,五个 ZoPP2C(9/23/26/49/92)蛋白具有较强的相互作用关系和作为枢纽蛋白的潜在功能。此外,RNA-Seq 和 qRT-PCR 分析表明,ZoPP2C 在姜成熟过程中以及对冷胁迫、干旱、洪水、盐和尖孢镰刀菌等环境胁迫的响应中表现出不同的表达模式。值得注意的是,外源施用褪黑素可显著上调冷胁迫下的 ZoPP2C(17/59/11/72/43)。
综上所述,本研究为姜属 PP2C 基因家族提供了重要的见解,并为其功能验证和遗传工程应用奠定了基础。