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细胞溶质延胡索酸酶 2 的失活增强了拟南芥在同时缺铁缺铜条件下的生长和光合作用。

Inactivation of cytosolic FUMARASE2 enhances growth and photosynthesis under simultaneous copper and iron deprivation in Arabidopsis.

机构信息

Faculty of Biology, Plant Molecular Biology, Ludwig-Maximilians-University Munich, Großhadernerstr. 2-4, Planegg-Martinsried, D-82152, Germany.

出版信息

Plant J. 2021 May;106(3):766-784. doi: 10.1111/tpj.15199. Epub 2021 Mar 18.

DOI:10.1111/tpj.15199
PMID:33583065
Abstract

Copper (Cu) and iron (Fe) are essential for plant growth and are often in short supply under natural conditions. Molecular responses to simultaneous lack of both metals (-Cu-Fe) differ from those seen in the absence of either alone. Metabolome profiling of plant leaves previously revealed that fumarate levels fall under -Cu-Fe conditions. We employed lines lacking cytosolic FUMARASE2 (FUM2) activity to study the impact of constitutive suppression of cytosolic fumarate synthesis on plant growth under Cu and/or Fe deficiency. In fum2 mutants, photosynthesis and growth were less impaired under -Cu-Fe conditions than in wild-type (WT) seedlings. In particular, levels of photosynthetic proteins, chloroplast ultrastructure, amino acid profiles and redox state were less perturbed by simultaneous Cu-Fe deficiency in lines that cannot produce fumarate in the cytosol. Although cytosolic fumarate has been reported to promote acclimation of photosynthesis to low temperatures when metal supplies are adequate, the photosynthetic efficiency of fum2 lines grown under Cu-Fe deficiency in the cold was higher than in WT. Uptake and contents of Cu and Fe are similar in WT and fum2 plants under control and -Cu-Fe conditions, and lack of FUM2 does not alter the ability to sense metal deficiency, as indicated by marker gene expression. Collectively, we propose that reduced levels of cytosolic fumarate synthesis ultimately increase the availability of Fe for incorporation into metalloproteins.

摘要

铜(Cu)和铁(Fe)是植物生长所必需的,在自然条件下通常供应不足。同时缺乏这两种金属(-Cu-Fe)引起的分子响应与单独缺乏其中任何一种时的响应不同。对植物叶片的代谢组学分析显示,延胡索酸盐水平在-Cu-Fe 条件下下降。我们利用缺乏细胞质延胡索酸酶 2(FUM2)活性的系来研究在 Cu 和/或 Fe 缺乏时持续抑制细胞质延胡索酸合成对植物生长的影响。在 fum2 突变体中,光合作用和生长在-Cu-Fe 条件下受到的抑制程度比野生型(WT)幼苗小。特别是,在不能在细胞质中产生延胡索酸的系中,同时缺乏 Cu-Fe 对光合作用蛋白、叶绿体超微结构、氨基酸谱和氧化还原状态的影响较小。虽然已有报道称细胞质延胡索酸在金属供应充足时促进光合作用对低温的适应,但在 Cu-Fe 缺乏条件下在冷环境中生长的 fum2 系的光合效率高于 WT。在对照和-Cu-Fe 条件下,WT 和 fum2 植物对 Cu 和 Fe 的吸收和含量相似,并且缺乏 FUM2 不会改变对金属缺乏的感应能力,如标记基因表达所示。总的来说,我们提出减少细胞质延胡索酸合成的水平最终会增加 Fe 用于金属蛋白的可用性。

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对拟南芥同时缺铁和缺铜时的组合反应过程中可变剪接的分析揭示了参与氨基酸代谢的基因中的差异事件。
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