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Genetic Screening for Arabidopsis Mutants Defective in STA1 Regulation under Thermal Stress Implicates the Existence of Regulators of Its Specific Expression and the Genetic Interactions in the Stress Signaling Pathways

机译:在热胁迫下对STA1调控中有缺陷的拟南芥突变体的遗传筛选暗示了其特定表达的调控因子的存在以及应激信号通路中的遗传相互作用。

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摘要

To cope with environmental stresses, plants have developed various stress tolerance mechanisms that involve the induction of many stress responsive genes through stress-specific and common signaling pathways. Stress-specific/common transcription factors, rather than general basal factors, were considered important in this stress tolerance. The Arabidopsis STABILIZED1 (STA1) gene encodes a putative pre-mRNA splicing factor that is similar to the human U5 snRNP-associated 102-kDa protein and the yeast pre-mRNA splicing factors, PRP1p and Prp6p. As pre-mRNA splicing is a necessary process for proper gene expression in eukaryotes, STA1 is expected to be constantly functional in all conditions. Interestingly, STA1 expression is induced by temperature stresses, and STA1 recessive mutation (sta1-1) resulted in temperature stress-specific hypersensitivity. This suggests STA1’s stress specific function in addition to its presumed “housekeeping” role. In order to establish the genetic system to understand the regulation of STA1 expression in temperature stresses, we generated a bioluminescent Arabidopsis plant harboring the STA1 promoter fused to the firefly luciferase coding sequence (STA1p-LUC). Through genetic analysis, the bioluminescent Arabidopsis homozygous for one-copy STA1p-LUC was isolated and characterized. In this STA1p-LUC line, the expression patterns of STA1p-LUC were similar to those of the endogenous STA1 gene under cold and heat stresses. The STA1p-LUC line was then chemically mutagenized and screened to isolate the genetic loci of STA1 regulators under cold or heat stresses. Mutants with altered STA1p-LUC luminescence were identified and further confirmed through luminescence imaging in the next generation and analysis of endogenous STA1 expression. The categorization of STA1p-LUC deregulated mutants implicated the existence of cold or heat stress-specific as well as common genetic regulators for STA1 expression. Interestingly, some mutants showed opposite-directional deregulation of STA1 expression depending on the type of thermal stress, suggesting that the loci may represent important switch factors which determine the direction of signaling pathways for STA1 expression in response to temperature.
机译:为了应对环境胁迫,植物已经开发出各种胁迫耐受性机制,这些机制涉及通过胁迫特异性和常见的信号传导途径诱导许多胁迫响应基因。在这种胁迫耐受性中,认为胁迫特异性/公共转录因子而非一般基础因子是重要的。拟南芥STABILIZED1(STA1)基因编码一个与人U5 snRNP相关的102-kDa蛋白和酵母前mRNA剪接因子PRP1p和Prp6p相似的推定前mRNA剪接因子。由于前mRNA剪接是在真核生物中正确表达基因的必要过程,因此预期STA1在所有条件下都将持续发挥功能。有趣的是,STA1表达是由温度胁迫诱导的,而STA1隐性突变(sta1-1)导致温度胁迫特异性超敏反应。这表明STA1除了承担“管家”角色外,还具有特定于压力的功能。为了建立遗传系统,以了解温度胁迫下STA1表达的调控,我们生成了一种生物发光拟南芥植物,该植物带有与萤火虫荧光素酶编码序列(STA1p-LUC)融合的STA1启动子。通过遗传分析,分离并鉴定了单拷贝STA1p-LUC的生物发光拟南芥纯合子。在该STA1p-LUC系中,在冷热胁迫下,STA1p-LUC的表达模式与内源性STA1基因的表达模式相似。然后化学诱变 STA1p-LUC 株系并进行筛选,以分离在冷或热胁迫下 STA1 调节子的遗传基因座。鉴定出 STA1p-LUC 发光改变的突变体,并通过下一代的发光成像和内源性 STA1 表达分析进一步确认。 STA1p-LUC 失调的突变体的分类表明,存在冷或热胁迫特异性基因以及常见的 STA1 表达基因调控因子。有趣的是,根据热应激的类型,某些突变体显示出 STA1 表达的相反方向失调,这表明基因座可能代表重要的开关因子,决定了 STA1 信号通路的方向。 em>表达响应温度。

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