Polish Academy of Sciences, The Franciszek Górski Institute of Plant Physiology, Niezapominajek 21, 30-239 Kraków, Poland.
Department of Plant Physiology, University of Agriculture in Kraków, Podłużna 3, 30-239 Kraków, Poland.
Int J Mol Sci. 2020 Mar 10;21(5):1889. doi: 10.3390/ijms21051889.
In temperature stress, the main role of heat-shock proteins (HSP) is to act as molecular chaperones for other cellular proteins. However, knowledge about the hormonal regulation of the production of the HSP is quite limited. Specifically, little is known about the role of the plant steroid hormones-brassinosteroids (BR)-in regulating the HSP expression. The aim of our study was to answer the question of how a BR deficit or disturbances in its signaling affect the accumulation of the HSP90, HSP70, HSP18, and HSP17 transcripts and protein in barley growing at 20 °C (control) and during the acclimation of plants at 5 °C and 27 °C. In barley, the temperature of plant growth modified the expression of HSPs. Furthermore, the BR-deficient mutants (mutations in the or genes) and BR-signaling mutants (mutation in the gene) were characterized by altered levels of the transcripts and proteins of the HSP group compared to the wild type. The BR-signaling mutant was characterized by a decreased level of the transcripts and heat-shock proteins. In the BR-deficient mutants, there were temperature-dependent cases when the decreased accumulation of the and transcripts was connected to an increased accumulation of these HSP. The significance of changes in the accumulation of HSPs during acclimation at 27 °C and 5 °C is discussed in the context of the altered tolerance to more extreme temperatures of the studied mutants (i.e., heat stress and frost, respectively).
在温度胁迫下,热休克蛋白(HSP)的主要作用是作为其他细胞蛋白的分子伴侣。然而,关于激素对 HSP 产生的调节的知识相当有限。具体来说,关于植物甾体激素-油菜素内酯(BR)在调节 HSP 表达中的作用知之甚少。我们研究的目的是回答一个问题,即在 BR 缺乏或其信号转导受到干扰的情况下,HSP90、HSP70、HSP18 和 HSP17 转录本和蛋白质在 20°C(对照)和 5°C 和 27°C 植物适应过程中的积累情况如何。在大麦中,植物生长的温度改变了 HSP 的表达。此外,与野生型相比,BR 缺乏突变体( 或 基因中的突变)和 BR 信号突变体( 基因中的突变)的 HSP 组转录本和蛋白质水平发生改变。BR 信号突变体的 转录本和热休克蛋白水平降低。在 BR 缺乏突变体中,存在与温度相关的情况,即 转录本和 转录本的积累减少与这些 HSP 的积累增加有关。在 27°C 和 5°C 适应过程中 HSP 积累的变化的意义在研究突变体(即热应激和霜害)对更极端温度的耐受性改变的背景下进行了讨论。