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Genome-wide analysis of PYL-PP2C-SnRK2s family in Camellia sinensis

机译:山茶花PL-PP2C-SNRK2S家族的基因组分析

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摘要

Abscisic acid (ABA) signaling regulates plant growth and development and participates in response to abiotic stressors. However, details about the PYL-PP2C-SnRK2 gene family, which is the core component of ABA signaling in Camellia sinensis, are unknown. In this work, we identified 14 pyrabactin resistance-likes (PYLs), 84 type 2C protein phosphatase (PP2Cs), and 8 SNF1-related protein kinase 2s (SnRK2s) from C. sinensis. The transcriptomic analysis indicated that PYL-PP2C-SnRK2s were associated with changes of leaf color and the response of C. sinensis to drought and salt stressors. Changes of the expression of Snrk2s were not significant in the process of leaf color change or drought and salt stress response, suggesting that PYLs and PP2Cs may not interact with SnRK2s in C. sinensis during these processes. Finally, Gene Regulatory Network (GRN) construction and interaction networks analysis demonstrated that PYLs and PP2Cs were associated with multiple metabolic pathways during the changes of leaf color.
机译:脱落酸(ABA)信号传导调节植物生长和发育,并参与反应非生物压力源。然而,关于Pyl-PP2C-SNRK2基因家族的细节,即山茶花中的ABA信号核心成分,是未知的。在这项工作中,我们鉴定了14种丙比蛋白抗性 - 喜欢(Pyls),84型2C型蛋白质磷酸酶(PP2CS)和来自C.Inensis的8个SnF1相关蛋白激酶2S(SNRK2S)。转录组分析表明,Pyl-PP2C-SNRK2S与叶子颜色的变化和C. Sinensis对干旱和盐压力源的响应有关。 SNRK2的表达在叶子颜色变化或干旱和盐胁迫响应过程中的表达并不重要,这表明在这些过程中,Pyls和PP2C可能不会与C. sneNsis中的SNRK2s相互作用。最后,基因调节网络(GRN)构建和相互作用网络分析证明了薄膜和PP2C在叶子颜色变化期间与多种代谢途径有关。

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