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首页> 外文期刊>Planta: An International Journal of Plant Biology >A mitochondrial alkalineeutral invertase isoform (A/N-InvC) functions in developmental energy-demanding processes in Arabidopsis
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A mitochondrial alkalineeutral invertase isoform (A/N-InvC) functions in developmental energy-demanding processes in Arabidopsis

机译:线粒体碱性/中性转化酶同工型(A / N-InvC)在拟南芥的发育能量需求过程中起作用

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Recent findings demonstrate that alkalineeutral invertases (A/N-Invs), enzymes that catalyze the breakdown of sucrose into glucose and fructose, are essential proteins in plant life. The fact that different isoforms are present in multiple locations makes them candidates for the coordination of metabolic processes. In the present study, we functionally characterized the encoding gene of a novel A/N-Inv (named A/N-InvC) from Arabidopsis, which localizes in mitochondria. A/N-InvC is expressed in roots, in aerial parts (shoots and leaves) and flowers. A detailed phenotypic analysis of knockout mutant plants (invc) reveals an impaired growth phenotype. Shoot growth was severely reduced, but root development was not affected as reported for A/N-InvA mutant (inva) plants. Remarkably, germination and flowering, two energy demanding processes, were the most affected stages. The effect of exogenous growth regulators led us to suggest that A/N-InvC may be modulating hormone balance in relation to the radicle emergence. We also show that oxygen consumption is reduced in inva and invc in comparison with wild-type plants, indicating that both organelle isoenzymes may play a fundamental role in mitochondrion functionality. Taken together, our results emphasize the involvement of mitochondrial A/N-Invs in developmental processes and uncover the possibility of playing different roles for the two isoforms located in the organelle.
机译:最新发现表明,碱性/中性转化酶(A / N-Invs)是催化蔗糖分解为葡萄糖和果糖的酶,是植物生命中必不可少的蛋白质。不同异构体存在于多个位置的事实使其成为代谢过程协调的候选者。在本研究中,我们在功能上表征了来自拟南芥的新型A / N-Inv(命名为A / N-InvC)的编码基因,该基因位于线粒体中。 A / N-InvC在根,空中部分(枝和叶)和花朵中表达。对敲除突变体植物(invc)的详细表型分析揭示了受损的生长表型。芽生长严重降低,但根系发育并未受到A / N-InvA突变(inva)植物报道的影响。值得注意的是,发芽和开花这两个能量需求过程是受影响最大的阶段。外源性生长调节剂的作用使我们建议A / N-InvC可能调节与胚根出现有关的激素平衡。我们还显示,与野生型植物相比,inva和invc的耗氧量减少,表明这两种细胞器同工酶都可能在线粒体功能中发挥重要作用。综上所述,我们的结果强调了线粒体A / N-Invs参与发育过程,并揭示了位于细胞器中的两种同工型发挥不同作用的可能性。

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