School of Life Sciences, Chongqing University, Huxi campus, Daxuecheng, Shapingba, Chongqing 401331, China.
Institute of Pure and Applied Biology, Bahauddin Zakariya University, Multan, Punjab 60800, Pakistan.
Gene. 2019 Mar 30;690:11-20. doi: 10.1016/j.gene.2018.12.033. Epub 2018 Dec 26.
The ubiquitous phosphoenolpyruvate carboxylase enzymes in plants play pivotal role during carbon metabolism in photosynthesis, physicochemical processes, and tolerance to various abiotic or chemical stresses. We are presenting a bioinformatics identification of PEPC gene family in tomato and its phylogenetic classification into PTPC and BTPC sub families. Tomato PEPC genes are distributed in four different chromosomes with a unique motif and gene structure that strengthen their classification into two sub families. Identification of twelve different cis-regulatory elements related to abiotic and exogenous phytohormones showed their diverse role. Moreover, RNA-seq and qRT-PCR based tissues specific analysis revealed their role in its growth and development. In tomato, PEPC genes exhibited a diverse temporal expression under salt, cold and exogenous phytohormones. For an instance, SlPEPC1, SlPEPC4, and SlPEPC5 was upregulated under salt, drought, ABA, and JA in shoots. While, SlPEPC3, SlPEPC4, and SlPEPC5 was induced in root tissues upon exposure to drought, cold, and GA. Similarly, the enzyme activity of tomato PEPC was significantly upregulated under all these stresses but peaked under salt and IAA in roots and under GA in leaves. All tomato PEPC predicted in cytoplasm and the transient expression assay validate it. Our study insight into unique features of PEPC gene family in tomato and may sever as foundation for functional their studies.
植物中普遍存在的磷酸烯醇式丙酮酸羧化酶在光合作用、物理化学过程以及对各种非生物或化学胁迫的耐受中起着关键作用。我们提出了一种番茄中 PEPC 基因家族的生物信息学鉴定,并将其分为 PTPC 和 BTPC 亚家族进行系统发育分类。番茄的 PEPC 基因分布在四个不同的染色体上,具有独特的基序和基因结构,这加强了它们分为两个亚家族的分类。鉴定出与非生物和外源植物激素相关的 12 个不同顺式作用元件,表明它们在不同方面的作用。此外,基于 RNA-seq 和 qRT-PCR 的组织特异性分析表明它们在生长和发育中的作用。在番茄中,PEPC 基因在盐、冷和外源植物激素下表现出多样化的时间表达。例如,SlPEPC1、SlPEPC4 和 SlPEPC5 在叶片中受到盐、干旱、ABA 和 JA 的诱导而上调。而 SlPEPC3、SlPEPC4 和 SlPEPC5 在根组织中受到干旱、寒冷和 GA 的诱导而上调。同样,番茄 PEPC 的酶活性在所有这些胁迫下显著上调,但在根中以盐和 IAA 以及叶中以 GA 下达到峰值。所有预测的番茄 PEPC 都在细胞质中,瞬时表达实验验证了这一点。我们的研究深入了解了番茄中 PEPC 基因家族的独特特征,可为它们的功能研究奠定基础。