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在相似的土壤干燥条件下,拟南芥和盐芥的独特植物激素和代谢特征。

Distinctive phytohormonal and metabolic profiles of Arabidopsis thaliana and Eutrema salsugineum under similar soil drying.

机构信息

Instituto de Tecnologia Química E Biológica, Universidade NOVA de Lisboa, Av. da República, EAN, 2781-901, Oeiras, Portugal.

DCV-Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, 2829-516, Caparica, Portugal.

出版信息

Planta. 2019 May;249(5):1417-1433. doi: 10.1007/s00425-019-03095-5. Epub 2019 Jan 25.

Abstract

Arabidopsis and Eutrema show similar stomatal sensitivity to drying soil. In Arabidopsis, larger metabolic adjustments than in Eutrema occurred, with considerable differences in the phytohormonal responses of the two species. Although plants respond to soil drying via a series of concurrent physiological and molecular events, drought tolerance differs greatly within the plant kingdom. While Eutrema salsugineum (formerly Thellungiella salsuginea) is regarded as more stress tolerant than its close relative Arabidopsis thaliana, their responses to soil water deficit have not previously been directly compared. To ensure a similar rate of soil drying for the two species, daily soil water depletion was controlled to 5-10% of the soil water content. While partial stomatal closure occurred earlier in Arabidopsis (Day 4) than Eutrema (from Day 6 onwards), thereafter both species showed similar stomatal sensitivity to drying soil. However, both targeted and untargeted metabolite analysis revealed greater response to drought in Arabidopsis than Eutrema. Early peaks in foliar phytohormone concentrations and different sugar profiles between species were accompanied by opposing patterns in the bioactive cytokinin profiles. Untargeted analysis showed greater metabolic adjustment in Arabidopsis with more statistically significant changes in both early and severe drought stress. The distinct metabolic responses of each species during early drought, which occurred prior to leaf water status declining, seemed independent of later stomatal closure in response to drought. The two species also showed distinct water usage, with earlier reduction in water consumption in Eutrema (Day 3) than Arabidopsis (Day 6), likely reflecting temporal differences in growth responses. We propose Arabidopsis as a promising model to evaluate the mechanisms responsible for stress-induced growth inhibition under the mild/moderate soil drying that crop plants are typically exposed to.

摘要

拟南芥和盐芥对土壤干旱的气孔敏感性相似。在拟南芥中,发生了比盐芥更大的代谢调整,两种物种的植物激素反应有很大差异。虽然植物通过一系列并发的生理和分子事件对土壤干燥做出反应,但植物界的耐旱性差异很大。虽然盐芥(Thellungiella salsuginea)被认为比其近亲拟南芥更能耐受压力,但它们对土壤水分亏缺的反应以前没有被直接比较过。为了确保两种物种的土壤干燥速度相似,每天控制土壤水分耗竭到土壤含水量的 5-10%。虽然拟南芥(第 4 天)比盐芥(从第 6 天开始)更早出现部分气孔关闭,但此后两种物种对干燥土壤的气孔敏感性相似。然而,靶向和非靶向代谢物分析都表明,拟南芥对干旱的反应大于盐芥。叶片植物激素浓度的早期峰值和不同物种之间的糖谱伴随着生物活性细胞分裂素谱的相反模式。非靶向分析表明,拟南芥的代谢调整更大,在早期和严重干旱胁迫下有更多具有统计学意义的变化。在叶片水分状况下降之前,每个物种在早期干旱期间的明显代谢反应似乎独立于后来对干旱的气孔关闭。这两个物种也表现出不同的水分利用方式,盐芥在第 3 天比拟南芥在第 6 天更早地减少水分消耗,这可能反映了生长反应的时间差异。我们提出拟南芥作为一种有前途的模型,用于评估在作物植物通常暴露的轻度/中度土壤干燥下,应激诱导的生长抑制的机制。

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