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The Salt Tolerance Related Protein (STRP) Mediates Cold Stress Responses and Abscisic Acid Signalling in Arabidopsis thaliana

机译:盐耐药相关蛋白(StrP)在拟南芥中介导冷应激反应和脱钙酸信号传导

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摘要

Low temperature stress is one of the major causes of crop yield reduction in agriculture. The alteration of gene expression pattern and the accumulation of stress-related proteins are the main strategies activated by plants under this unfavourable condition. Here we characterize the Arabidopsis thaliana Salt Tolerance Related Protein (STRP). The protein rapidly accumulates under cold treatment, and this effect is not dependent on transcriptional activation of the STRP gene, but on the inhibition of proteasome-mediated degradation. Subcellular localization of STRP was determined by the transient expression of STRP-YFP in A. thaliana protoplasts. STRP is localized into the cytosol, nucleus, and associated to the plasma membrane. Under cold stress, the membrane-associated fraction decreases, while in the cytosol and in the nucleus STRP levels strongly increase. STRP has high similarity with WCI16, a wheat Late Embryogenesis Abundant (LEA)-like protein. Despite no canonical LEA motifs in the STRP sequence are present, physicochemical characterization demonstrated that STRP shares common features with LEA proteins, being a high hydrophilic unstructured protein, highly soluble after boiling and with cryoprotectant activity. To clarify the physiological function of STRP, we characterized the phenotype and the response to low temperature stress of the strp knockout mutant. The mutation causes an equal impairment of plant growth and development both in physiological and cold stress conditions. The strp mutant is more susceptible to oxidative damage respect to the wild type, showing increased lipid peroxidation and altered membrane integrity. Furthermore, the analysis of Abscisic acid (ABA) effects on protein levels demonstrated that the hormone induces the increase of STRP levels, an effect in part ascribable to its ability to activate STRP expression. ABA treatments showed that the strp mutant displays an ABA hyposensitive phenotype in terms of seed germination, root development, stomata closure and in the expression of ABA-responsive genes. In conclusion, our results demonstrate that STRP acts as a multifunctional protein in the response mechanisms to low temperature, suggesting a crucial role for this protein in stress perception and in the translation of extracellular stimuli in an intracellular response.
机译:低温应力是农业农业产量减少的主要原因之一。基因表达模式的改变和应力相关蛋白质的积累是植物在这种不利条件下激活的主要策略。在这里,我们表征了拟南芥盐耐盐相关蛋白(STRP)。蛋白质在冷处理下迅速积累,这种效果不依赖于STRP基因的转录激活,而是抑制蛋白酶体介导的降解的抑制作用。通过ThilaNA原生质体中StrP-YFP的瞬时表达来确定StrP的亚细胞定位。 STRP局部地置于细胞溶胶,核,并与质膜相关。在冷应力下,膜相关馏分减少,而在细胞溶胶中,并且在核中,STRP水平强烈增加。 STRP与WCI16具有高相似性,小麦晚期胚胎发生丰富(LEA) - 样蛋白。尽管存在STRP序列中的规范lea图案,但物理化学表征证明Strp与Lea蛋白共享共同特征,是一种高亲水非结构化蛋白,沸腾后高度溶于溶于蛋白质,沸腾后高度溶于溶剂。为了阐明StrP的生理功能,我们表征了StrP敲除突变体的低温胁迫的表型和反应。突变在生理和冷应力条件下导致植物生长和发育等同损害。 STRP突变体更容易受到野生型氧化损伤的影响,显示出增加的脂质过氧化和改变的膜完整性。此外,对蛋白质水平的脱落酸(ABA)作用的分析证明了激素诱导STRP水平的增加,其效果部分易于其激活STRP表达的能力。 ABA治疗表明,STRP突变体在种子萌发,根部发育,气孔闭合和表达中显示ABA过敏表型,以及ABA响应基因的表达。总之,我们的结果表明,STRP作为低温的响应机制中的多官能蛋白,表明该蛋白在压力感知和细胞外刺激在细胞内反应中的翻译作用。

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