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利用高通量测序对玉米叶片丙酮酸 orthophosphate 二激酶进行表征。

Characterization of maize leaf pyruvate orthophosphate dikinase using high throughput sequencing.

机构信息

State Key Laboratory of Crop Biology, College of Agronomic Sciences, Shandong Agricultural University, Tai'an, 271018, China.

School of Biological Sciences, Molecular Plant Sciences, Washington State University, Pullman, WA 99164-4236, USA.

出版信息

J Integr Plant Biol. 2018 Aug;60(8):670-690. doi: 10.1111/jipb.12656. Epub 2018 Jul 10.

Abstract

In C photosynthesis, pyruvate orthophosphate dikinase (PPDK) catalyzes the regeneration of phosphoenolpyruvate in the carbon shuttle pathway. Although the biochemical function of PPDK in maize is well characterized, a genetic analysis of PPDK has not been reported. In this study, we use the maize transposable elements Mutator and Ds to generate multiple mutant alleles of PPDK. Loss-of-function mutants are seedling lethal, even when plants were grown under 2% CO , and they show very low capacity for CO assimilation, indicating C photosynthesis is essential in maize. Using RNA-seq and GC-MS technologies, we examined the transcriptional and metabolic responses to a deficiency in PPDK activity. These results indicate loss of PPDK results in downregulation of gene expression of enzymes of the C cycle, the Calvin cycle, and components of photochemistry. Furthermore, the loss of PPDK did not change Kranz anatomy, indicating that this metabolic defect in the C cycle did not impinge on the morphological differentiation of C characters. However, sugar metabolism and nitrogen utilization were altered in the mutants. An interaction between light intensity and genotype was also detected from transcriptome profiling, suggesting altered transcriptional and metabolic responses to environmental and endogenous signals in the PPDK mutants.

摘要

在 C3 光合作用中,丙酮酸 orthophosphate 二激酶(PPDK)催化碳穿梭途径中磷酸烯醇丙酮酸的再生。尽管 PPDK 在玉米中的生化功能已得到很好的描述,但尚未对 PPDK 进行遗传分析。在这项研究中,我们使用玉米转座元件 Mutator 和 Ds 生成了 PPDK 的多个突变等位基因。失活突变体是幼苗致死的,即使在 2% CO2 下生长,它们对 CO2 的同化能力也非常低,这表明 C3 光合作用对玉米是必不可少的。我们使用 RNA-seq 和 GC-MS 技术,研究了 PPDK 活性缺乏对转录和代谢的响应。这些结果表明,PPDK 的缺失导致 C 循环、卡尔文循环和光化学组件中酶的基因表达下调。此外,PPDK 的缺失并没有改变 Kranz 解剖结构,表明 C 循环中的这种代谢缺陷并没有影响 C 特征的形态分化。然而,突变体中的糖代谢和氮利用发生了改变。从转录组图谱中还检测到光强和基因型之间的相互作用,表明 PPDK 突变体对环境和内源性信号的转录和代谢响应发生了改变。

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