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水状况与地衣光合生物凝胶状网衣 Trebouxia gelatinosa 中脱水相关基因的关系。

Relation between water status and desiccation-affected genes in the lichen photobiont Trebouxia gelatinosa.

机构信息

Department of Life Sciences, University of Trieste, Via Giorgieri 10, 34127 Trieste, Italy.

Department of Botany, University of Innsbruck, Sternwartestraße 15, 6020 Innsbruck, Austria.

出版信息

Plant Physiol Biochem. 2018 Aug;129:189-197. doi: 10.1016/j.plaphy.2018.06.004. Epub 2018 Jun 5.

Abstract

The relation between water status and expression profiles of desiccation -related genes has been studied in the desiccation tolerant (DT) aeroterrestrial green microalga Trebouxia gelatinosa, a common lichen photobiont. Algal colonies were desiccated in controlled conditions and during desiccation water content (WC) and water potential (Ψ) were measured to find the turgor loss point (Ψ). Quantitative real-time PCR was performed to measure the expression of ten genes related to photosynthesis, antioxidant defense, expansins, heat shock proteins (HSPs), and desiccation related proteins in algal colonies collected during desiccation when still at full turgor (WC > 6 g HO g dry weight), immediately before and after Ψ (-4 MPa; WC ∼ 1 g HO g dry weight) and before and after complete desiccation (WC < 0.01 g HO g dry weight), quantifying the HSP70 protein levels by immunodetection. Our analysis showed that the expression of eight out of ten genes changed immediately before and after Ψ. Interestingly, the expression of five out of ten genes changed also before complete desiccation, i.e. between 0.2 and 0.01 g HO g dry weight. However, the HSP70 protein levels were not affected by changes in water status. The study provides new evidences of the link between the loss of turgor and the expression of genes related to the desiccation tolerance of T. gelatinosa, suggesting the former as a signal triggering inducible mechanisms.

摘要

水状态与脱水相关基因表达谱之间的关系已经在耐旱(DT)气生绿藻 Trebouxia gelatinosa 中进行了研究,这是一种常见的地衣光合生物。在受控条件下对藻体进行干燥,测量水含量(WC)和水势(Ψ)以找到膨压损失点(Ψ)。进行定量实时 PCR 以测量在干燥过程中收集的藻体在仍处于完全膨压时(WC>6 g HO g 干重)、在 Ψ(-4 MPa;WC∼1 g HO g 干重)之前和之后以及在完全干燥之前和之后与光合作用、抗氧化防御、扩展蛋白、热休克蛋白(HSPs)和脱水相关蛋白相关的十个基因的表达,通过免疫检测定量 HSP70 蛋白水平。我们的分析表明,在 Ψ 前后,十个基因中有八个的表达发生了变化。有趣的是,在完全干燥之前,十个基因中有五个的表达也发生了变化,即在 0.2 和 0.01 g HO g 干重之间。然而,HSP70 蛋白水平不受水状态变化的影响。该研究提供了关于膨压损失与 T. gelatinosa 耐旱性相关基因表达之间联系的新证据,表明前者作为诱导机制的触发信号。

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