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首页> 外文期刊>Plant Biotechnology Journal >Cytosolic malate dehydrogenase 4 modulates cellular energetics and storage reserve accumulation in maize endosperm
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Cytosolic malate dehydrogenase 4 modulates cellular energetics and storage reserve accumulation in maize endosperm

机译:细胞溶质苹果酸脱氢酶4调节玉米胚乳中的细胞能量和储备储备积累

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摘要

Cytosolic malate dehydrogenase (MDH) is a key enzyme that regulates the interconversion between malate and oxaloacetate (OAA). However, its role in modulating storage compound accumulation in maize endosperm is largely unknown. Here, we characterized a novel naturally occurring maize mdh4‐1 mutant, which produces small, opaque kernels and exhibits reduced starch but enhanced lysine content. Map‐based cloning, functional complementation and allelism analyses identified ZmMdh4 as the causal gene. Enzymatic assays demonstrated that ZmMDH4 predominantly catalyses the conversion from OAA to malate. In comparison, the activity of the mutant enzyme, which lacks one glutamic acid (Glu), was completed abolished, demonstrating that the Glu residue was essential for ZmMDH4 function. Knocking down ZmMdh4 in vivo led to a substantial metabolic shift towards glycolysis and a dramatic disruption in the activity of the mitochondrial complex I, which was correlated with transcriptomic alterations. Taken together, these results demonstrate that ZmMdh4 regulates the balance between mitochondrial respiration and glycolysis, ATP production and endosperm development, through a yet unknown feedback regulatory mechanism in mitochondria.
机译:细胞源丙酸酯脱氢酶(MDH)是调节苹果酸盐和草乙酸盐(OAA)之间的互连的关键酶。然而,其在调节玉米胚乳中的储存复合积累方面的作用在很大程度上是未知的。这里,我们表征了一种新的天然存在的玉米MDH4-1突变体,其产生小,不透明的粒,并且表现出降低的淀粉,但增强赖氨酸含量。基于地图的克隆,功能互补和等位感分析确定了ZMMDH4作为因果基因。酶测定证明,ZMMDH4主要将从OAA转化为苹果醛催化。相比之下,缺乏一种谷氨酸(Glu)的突变酶的活性被废除,证明Glu残基对于ZMMDH4功能是必不可少的。在体内敲击ZMMDH4导致糖酵解的大致代谢转变,并在线粒体复合物I的活性中发生显着破坏,其与转录组改变相关。总之,这些结果表明,ZMMDH4通过线粒体中的未知反馈调节机制调节线粒体呼吸和糖酵解,ATP生产和胚乳发育之间的平衡。

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