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缺乏乙醛酸循环酶苹果酸合酶的拟南芥突变体中的脂质利用、糖异生和幼苗生长

Lipid utilization, gluconeogenesis, and seedling growth in Arabidopsis mutants lacking the glyoxylate cycle enzyme malate synthase.

作者信息

Cornah Johanna E, Germain Véronique, Ward Jane L, Beale Michael H, Smith Steven M

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, King's Bldgs., Mayfield Rd., Edinburgh, EH9 3JH, United Kingdom.

出版信息

J Biol Chem. 2004 Oct 8;279(41):42916-23. doi: 10.1074/jbc.M407380200. Epub 2004 Jul 22.

Abstract

The aim of this research was to test the role of the glyoxylate cycle enzyme malate synthase (MLS) in lipid utilization, gluconeogenesis, and seedling growth in Arabidopsis. We hypothesized that in the absence of MLS, succinate produced by isocitrate lyase (ICL) could still feed into the tricarboxylic acid cycle, whereas glyoxylate could be converted to sugars using enzymes of the photorespiratory pathway. To test this hypothesis we isolated knock-out mls mutants and studied their growth and metabolism in comparison to wild type and icl mutant seedlings. In contrast to icl seedlings, which grow slowly and are unable to convert lipid into sugars (Eastmond, P. J., Germain, V., Lange, P. R., Bryce, J. H., Smith, S. M. & Graham, I. A. (2000) Proc. Natl. Acad. Sci. U. S. A. 97, 5669-5674), mls seedlings grow faster, use their lipid more rapidly, and are better able to establish as plantlets. Transcriptome and metabolome analyses show that icl seedlings exhibit many features characteristic of carbohydrate starvation, whereas mls seedlings differ relatively little from wild type. In the light mls seedlings generate more sugars than icl seedlings, and when fed with [14C]acetate, 14C-labeling of sugars is three times greater than in icl seedlings and more than half that in wild type seedlings. The mls seedlings also accumulate more glycine and serine than icl or wild type seedlings, consistent with a diversion of glyoxylate into these intermediates of the photorespiratory pathway. We conclude that, in contrast to bacteria and fungi in which MLS is essential for gluconeogenesis from acetate or fatty acids, MLS is partially dispensable for lipid utilization and gluconeogenesis in Arabidopsis seedlings.

摘要

本研究的目的是测试乙醛酸循环酶苹果酸合酶(MLS)在拟南芥脂质利用、糖异生和幼苗生长中的作用。我们假设,在缺乏MLS的情况下,异柠檬酸裂解酶(ICL)产生的琥珀酸仍可进入三羧酸循环,而乙醛酸可利用光呼吸途径的酶转化为糖类。为了验证这一假设,我们分离了敲除ml s突变体,并与野生型和icl突变体幼苗比较,研究了它们的生长和代谢情况。与生长缓慢且无法将脂质转化为糖类的icl幼苗不同(伊斯特蒙德,P. J.,杰曼,V.,兰格,P. R.,布赖斯,J. H.,史密斯,S. M. & 格雷厄姆,I. A.(2000年)《美国国家科学院院刊》97,5669 - 5674),ml s幼苗生长更快,脂质利用更迅速,并且作为幼苗更易于定植。转录组和代谢组分析表明,icl幼苗呈现出许多碳水化合物饥饿的特征,而ml s幼苗与野生型的差异相对较小。在光照条件下,ml s幼苗产生的糖类比icl幼苗更多,并且在喂食[14C]乙酸盐时,糖类的14C标记量比icl幼苗高三倍,超过野生型幼苗的一半。ml s幼苗积累的甘氨酸和丝氨酸也比icl或野生型幼苗更多,这与乙醛酸转向光呼吸途径的这些中间产物一致。我们得出结论,与MLS对细菌和真菌从乙酸盐或脂肪酸进行糖异生必不可少不同,MLS在拟南芥幼苗的脂质利用和糖异生中部分是可有可无的。

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