Plant Stress Physiology Group, Plant Nutrition Department, Aula Dei Experimental Station, CSIC, 50059 Zaragoza, Spain.
United Graduate School of Agricultural Sciences, Iwate University, Morioka 020-8550, Japan.
Int J Mol Sci. 2022 Mar 28;23(7):3719. doi: 10.3390/ijms23073719.
Iron (Fe) and manganese (Mn) are two essential elements for plants that compete for the same uptake transporters and show conflicting interactions at the regulatory level. In order to understand the differential response to both metal deficiencies in plants, two proteomic techniques (two-dimensional gel electrophoresis and label-free shotgun) were used to study the proteome profiles of roots from tomato plants grown under Fe or Mn deficiency. A total of 119 proteins changing in relative abundance were confidently quantified and identified, including 35 and 91 in the cases of Fe deficiency and Mn deficiency, respectively, with 7 of them changing in both deficiencies. The identified proteins were categorized according to function, and GO-enrichment analysis was performed. Data showed that both deficiencies provoked a common and intense cell wall remodelling. However, the response observed for Fe and Mn deficiencies differed greatly in relation to oxidative stress, coumarin production, protein, nitrogen, and energy metabolism.
铁(Fe)和锰(Mn)是植物必需的两种元素,它们争夺相同的吸收转运蛋白,并在调控水平上表现出相互矛盾的相互作用。为了了解植物对这两种金属缺乏的不同反应,使用了两种蛋白质组学技术(二维凝胶电泳和无标记鸟枪法)来研究在 Fe 或 Mn 缺乏条件下生长的番茄植株根的蛋白质组图谱。共定量和鉴定了 119 种相对丰度变化的蛋白质,其中 Fe 缺乏和 Mn 缺乏分别有 35 种和 91 种,有 7 种在两种缺乏中都发生了变化。根据功能对鉴定到的蛋白质进行分类,并进行了 GO 富集分析。结果表明,两种缺乏都引起了强烈的细胞壁重塑。然而,Fe 和 Mn 缺乏的反应在氧化应激、香豆素产生、蛋白质、氮和能量代谢方面存在显著差异。