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The role of glutamine synthetase isozymes in enhancing nitrogen use efficiency of N-efficient winter wheat

机译:谷氨酰胺合成酶同工酶在提高氮效率冬小麦氮素利用效率中的作用

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摘要

Glutamine synthetase (GS) isozymes play critical roles in nitrogen (N) metabolism. However, the exact relationship between GS and nitrogen use efficiency (NUE) remain unclear. We have selected and compared two wheat cultivars, YM49 and XN509, which were identified as the N-efficient and N-inefficient genotypes, respectively. In this study, agronomical, morphological, physiological and biochemical approaches were performed. The results showed that TaGS1 was high expressed post-anthesis, and TaGS2 was highly expressed pre-anthesis in N-efficient genotype compared to N-inefficient genotype. GS1 and GS2 isozymes were also separated by native-PAGE and found that the spatial and temporal distribution of GS isozymes, their expression of gene and protein subunits in source-sink-flow organs during development periods triggered the pool strength and influenced the N flow. According to the physiological role of GS isozymes, we illustrated four metabolic regulation points, by which acting collaboratively in different organs, accelerating the transport of nutrients to the grain. It suggested that the regulation of GS isozymes may promote flow strength and enhance NUE by a complex C-N metabolic mechanism. The relative activity or amount of GS1 and GS2 isozymes could be a potential marker to predict and select wheat genotypes with enhanced NUE.
机译:谷氨酰胺合成酶(GS)同工酶在氮(N)代谢中起关键作用。但是,GS和氮利用效率(NUE)之间的确切关系仍不清楚。我们选择并比较了两个小麦品种YM49和XN509,它们分别被鉴定为N型和N型基因型。在这项研究中,进行了农艺,形态,生理和生化方法。结果表明,与低效基因型相比,高效率基因型的TaGS1在花后表达高,而在高花期前TaGS2的基因表达在高效率基因型。 GS1和GS2同工酶也通过本机PAGE分离,发现GS同工酶的时空分布,它们在发育期间在源-库-流器官中的基因和蛋白质亚基表达触发了池强度并影响了氮流量。根据GS同工酶的生理作用,我们举例说明了四个代谢调节点,它们通过在不同器官中协同作用,加速了养分向谷物的转运。提示GS同工酶的调控可能通过复杂的C-N代谢机制促进血流强度并增强NUE。 GS1和GS2同工酶的相对活性或相对量可能是预测和选择NUE增强的小麦基因型的潜在标志。

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