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Knocking down mitochondrial iron transporter (MIT) reprograms primary and secondary metabolism in rice plants

机译:敲除线粒体铁转运蛋白(MIT)可重新编程水稻植物的一次和二次代谢

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摘要

Iron (Fe) is an essential micronutrient for plant growth and development, and its reduced bioavailability strongly impairs mitochondrial functionality. In this work, the metabolic adjustment in the rice (Oryza sativa) mitochondrial Fe transporter knockdown mutant (mit-2) was analysed. Biochemical characterization of purified mitochondria from rice roots showed alteration in the respiratory chain of mit-2 compared with wild-type (WT) plants. In particular, proteins belonging to the type II alternative NAD(P)H dehydrogenases accumulated strongly in mit-2 plants, indicating that alternative pathways were activated to keep the respiratory chain working. Additionally, large-scale changes in the transcriptome and metabolome were observed in mit-2 rice plants. In particular, a strong alteration (up-/down-regulation) in the expression of genes encoding enzymes of both primary and secondary metabolism was found in mutant plants. This was reflected by changes in the metabolic profiles in both roots and shoots of mit-2 plants. Significant alterations in the levels of amino acids belonging to the aspartic acid-related pathways (aspartic acid, lysine, and threonine in roots, and aspartic acid and ornithine in shoots) were found that are strictly connected to the Krebs cycle. Furthermore, some metabolites (e.g. pyruvic acid, fumaric acid, ornithine, and oligosaccharides of the raffinose family) accumulated only in the shoot of mit-2 plants, indicating possible hypoxic responses. These findings suggest that the induction of local Fe deficiency in the mitochondrial compartment of mit-2 plants differentially affects the transcript as well as the metabolic profiles in root and shoot tissues.
机译:铁(Fe)是植物生长和发育必不可少的微量营养素,其降低的生物利用度强烈损害线粒体功能。在这项工作中,分析了水稻(Oryza sativa)线粒体Fe转运蛋白敲低突变体(mit-2)的代谢调节。与野生型(WT)植物相比,来自稻根的纯化线粒体的生化特征显示出mit-2呼吸链发生变化。特别地,属于II型替代NAD(P)H脱氢酶的蛋白质在mit-2植物中大量积累,表明激活了替代途径以保持呼吸链正常运转。另外,在mit-2水稻植株中观察到转录组和代谢组的大规模变化。特别是,在突变植物中发现了编码初级和次级代谢酶的基因的表达的强烈改变(上/下调)。这由mit-2植物的根和芽的新陈代谢特征的变化所反映。发现与天冬氨酸相关的途径(根中的天冬氨酸,赖氨酸和苏氨酸,芽中的天冬氨酸和鸟氨酸)的氨基酸水平发生了显着变化,这些变化与克雷布斯循环密切相关。此外,一些代谢产物(例如棉子糖家族的丙酮酸,富马酸,鸟氨酸和寡糖)仅在mit-2植物的芽中积累,表明可能存在低氧反应。这些发现表明,在mit-2植物的线粒体区室中局部铁缺乏的诱导差异地影响根和芽组织中的转录本以及代谢谱。

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