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寡糖脂在冷胁迫期间的产生在早期分化的谱系中是保守的。

Oligogalactolipid production during cold challenge is conserved in early diverging lineages.

机构信息

Department of Biochemistry, University of Nebraska-Lincoln, Lincoln, NE, USA.

Department of Horticulture, North Carolina State University, Raleigh, NC, USA.

出版信息

J Exp Bot. 2023 Sep 13;74(17):5405-5417. doi: 10.1093/jxb/erad241.

Abstract

Severe cold, defined as a damaging cold beyond acclimation temperatures, has unique responses, but the signaling and evolution of these responses are not well understood. Production of oligogalactolipids, which is triggered by cytosolic acidification in Arabidopsis (Arabidopsis thaliana), contributes to survival in severe cold. Here, we investigated oligogalactolipid production in species from bryophytes to angiosperms. Production of oligogalactolipids differed within each clade, suggesting multiple evolutionary origins of severe cold tolerance. We also observed greater oligogalactolipid production in control samples than in temperature-challenged samples of some species. Further examination of representative species revealed a tight association between temperature, damage, and oligogalactolipid production that scaled with the cold tolerance of each species. Based on oligogalactolipid production and transcript changes, multiple angiosperm species share a signal of oligogalactolipid production initially described in Arabidopsis, namely cytosolic acidification. Together, these data suggest that oligogalactolipid production is a severe cold response that originated from an ancestral damage response that remains in many land plant lineages and that cytosolic acidification may be a common signaling mechanism for its activation.

摘要

严寒,定义为超出适应温度的破坏性寒冷,具有独特的反应,但这些反应的信号转导和进化尚不清楚。寡半乳糖脂的产生是由拟南芥(Arabidopsis thaliana)细胞质酸化引发的,有助于在严寒中存活。在这里,我们研究了从苔藓植物到被子植物等物种中的寡半乳糖脂的产生。每个进化枝内的寡半乳糖脂产生都存在差异,这表明严寒耐受性有多个进化起源。我们还观察到,一些物种的对照样本中的寡半乳糖脂产生量大于温度挑战样本。对代表性物种的进一步研究表明,温度、损伤和寡半乳糖脂产生之间存在紧密的关联,这种关联与每个物种的耐寒性相吻合。基于寡半乳糖脂的产生和转录变化,多种被子植物物种共享最初在拟南芥中描述的寡半乳糖脂产生信号,即细胞质酸化。总之,这些数据表明,寡半乳糖脂的产生是一种严寒反应,它起源于一种古老的损伤反应,这种反应在许多陆地植物谱系中仍然存在,细胞质酸化可能是其激活的一种常见信号机制。

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