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调控转基因马铃薯根中胞质核苷二磷酸激酶的表达水平会改变其生长、呼吸作用及碳代谢。

Engineering the expression level of cytosolic nucleoside diphosphate kinase in transgenic Solanum tuberosum roots alters growth, respiration and carbon metabolism.

作者信息

Dorion Sonia, Clendenning Audrey, Rivoal Jean

机构信息

Institut de Recherche en Biologie Végétale, Université de Montréal, 4101 Sherbrooke Est, Montréal, QC, H1X 2B2, Canada.

出版信息

Plant J. 2017 Mar;89(5):914-926. doi: 10.1111/tpj.13431. Epub 2017 Feb 11.

Abstract

Nucleoside diphosphate kinase (NDPK) is a ubiquitous enzyme that catalyzes the transfer of the γ-phosphate from a donor nucleoside triphosphate to an acceptor nucleoside diphosphate. In this study we used a targeted metabolomic approach and measurement of physiological parameters to report the effects of the genetic manipulation of cytosolic NDPK (NDPK1) expression on physiology and carbon metabolism in potato (Solanum tuberosum) roots. Sense and antisense NDPK1 constructs were introduced in potato using Agrobacterium rhizogenes to generate a population of root clones displaying a 40-fold difference in NDPK activity. Root growth, O uptake, flux of carbon between sucrose and CO , levels of reactive oxygen species and some tricarboxylic acid cycle intermediates were positively correlated with levels of NDPK1 expression. In addition, NDPK1 levels positively affected UDP-glucose and cellulose contents. The activation state of ADP-glucose pyrophosphorylase, a key enzyme in starch synthesis, was higher in antisense roots than in roots overexpressing NDPK1. Further analyses demonstrated that ADP-glucose pyrophosphorylase was more oxidized, and therefore less active, in sense clones than antisense clones. Consequently, antisense NDPK1 roots accumulated more starch and the starch to cellulose ratio was negatively affected by the level of NDPK1. These data support the idea that modulation of NDPK1 affects the distribution of carbon between starch and cellulose biosynthetic pathways.

摘要

核苷二磷酸激酶(NDPK)是一种普遍存在的酶,它催化γ-磷酸基团从供体核苷三磷酸转移至受体核苷二磷酸。在本研究中,我们采用靶向代谢组学方法并测量生理参数,以报告胞质NDPK(NDPK1)表达的基因操作对马铃薯(Solanum tuberosum)根系生理和碳代谢的影响。使用发根农杆菌将有义及反义NDPK1构建体导入马铃薯,以产生一群NDPK活性相差40倍的根系克隆。根系生长、氧气吸收、蔗糖与二氧化碳之间的碳通量、活性氧水平以及一些三羧酸循环中间产物与NDPK1表达水平呈正相关。此外,NDPK1水平对UDP-葡萄糖和纤维素含量有正向影响。淀粉合成关键酶ADP-葡萄糖焦磷酸化酶的激活状态在反义根系中高于过表达NDPK1的根系。进一步分析表明,有义克隆中的ADP-葡萄糖焦磷酸化酶比反义克隆中的氧化程度更高,因此活性更低。因此,反义NDPK1根系积累了更多淀粉,淀粉与纤维素的比例受NDPK1水平的负面影响。这些数据支持了这样一种观点,即NDPK1的调节会影响淀粉和纤维素生物合成途径之间的碳分配。

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