KULeuven, Laboratory of Molecular Plant Physiology, Kasteelpark Arenberg 31, B-3001 Leuven, Belgium.
J Exp Bot. 2011 Jul;62(11):3849-62. doi: 10.1093/jxb/err069. Epub 2011 Mar 25.
Over the past decades, considerable advances have been made in understanding the crucial role and the regulation of sucrose metabolism in plants. Among the various sucrose-catabolizing enzymes, alkaline/neutral invertases (A/N-Invs) have long remained poorly studied. However, recent findings have demonstrated the presence of A/N-Invs in various organelles in addition to the cytosol, and their importance for plant development and stress tolerance. A cytosolic (At-A/N-InvG, At1g35580) and a mitochondrial (At-A/N-InvA, At1g56560) member of the A/N-Invs have been analysed in more detail in Arabidopsis and it was found that At-A/N-InvA knockout plants show an even more severe growth phenotype than At-A/N-InvG knockout plants. The absence of either A/N-Inv was associated with higher oxidative stress defence gene expression, while transient overexpression of At-A/N-InvA and At-A/N-InvG in leaf mesophyll protoplasts down-regulated the oxidative stress-responsive ascorbate peroxidase 2 (APX2) promoter. Moreover, up-regulation of the APX2 promoter by hydrogen peroxide or abscisic acid could be blocked by adding metabolizable sugars or ascorbate. A hypothetical model is proposed in which both mitochondrial and cytosolic A/N-Invs can generate glucose as a substrate for mitochondria-associated hexokinase, contributing to mitochondrial reactive oxygen species homeostasis.
在过去的几十年中,人们对蔗糖代谢在植物中的关键作用和调控机制有了相当多的了解。在各种蔗糖分解酶中,碱性/中性转化酶(A/N-Invs)一直研究甚少。然而,最近的研究结果表明,A/N-Invs 不仅存在于细胞质中,还存在于各种细胞器中,它们对植物的发育和抗逆性具有重要作用。拟南芥中的细胞质(At-A/N-InvG,At1g35580)和线粒体(At-A/N-InvA,At1g56560)成员的 A/N-Invs 进行了更详细的分析,结果发现 At-A/N-InvA 敲除植物的生长表型比 At-A/N-InvG 敲除植物更为严重。任一 A/N-Inv 的缺失都与更高的氧化应激防御基因表达相关,而瞬时过表达 At-A/N-InvA 和 At-A/N-InvG 在叶肉原生质体中会下调氧化应激响应的抗坏血酸过氧化物酶 2(APX2)启动子。此外,过氧化氢或脱落酸对 APX2 启动子的上调可以通过添加可代谢糖或抗坏血酸来阻断。提出了一个假设模型,其中线粒体和细胞质 A/N-Invs 都可以产生葡萄糖作为线粒体相关己糖激酶的底物,有助于线粒体活性氧的稳态。