Yan Huimin, Wang Yale, Chen Bo, Wang Weijie, Sun Hongzheng, Sun Huwei, Li Junzhou, Zhao Quanzhi
Collaborative Innovation Center of Henan Grain Crops, Henan Key Laboratory of Rice Biology, Henan Agricultural University, Zhengzhou, 450002, China.
Collaborative Innovation Center of Henan Grain Crops, Henan Key Laboratory of Rice Biology, Henan Agricultural University, Zhengzhou, 450002, China.
Plant Sci. 2022 Jun;319:111257. doi: 10.1016/j.plantsci.2022.111257. Epub 2022 Mar 23.
Cytokinin oxidase/dehydrogenases (CKXs) are key enzymes that degrade cytokinins (CTKs) and play an essential role in plant growth and development. The present study analyzed the phenotypic and physiological characteristics of OsCKX2 overexpressing (OE) and knockout (KO) rice plants after exposure to phosphate (Pi) deficiency and the transcriptome and metabolome to investigate the function of OsCKX2 in response to Pi deficiency. OsCKX2 KO plants demonstrated higher endogenous CTK levels than wild-type (WT) under Pi deficiency. Further analysis indicated more robust tolerance of OsCKX2 KO plants to Pi deficiency, which exhibited higher phosphorus concentration, larger shoot biomass, and lesser leaf yellowing under Pi deficiency; whereas the opposite was observed for OsCKX2 OE plants. Transcriptome and metabolome analyses revealed that overexpression of OsCKX2 downregulated the transcriptional levels of genes related to Pi transporters, membrane lipid metabolism, and glycolysis, and reduced the consumption of metabolites in membrane lipid metabolism and glycolysis. On the contrary, knockout of OsCKX2 upregulated the expression of Pi transporters, and increased the consumption of metabolites in membrane lipid metabolism and glycolysis. These results indicated that OsCKX2 impacted Pi uptake, recycling, and plant growth via Pi transporters, phospholipid hydrolysis, and glycolysis under Pi deficiency. Overall, OsCKX2 negatively regulated Pi deficiency tolerance by modulating CTKs in rice.
细胞分裂素氧化酶/脱氢酶(CKXs)是降解细胞分裂素(CTKs)的关键酶,在植物生长发育中起重要作用。本研究分析了过表达(OE)和敲除(KO)OsCKX2的水稻植株在缺磷(Pi)处理后的表型和生理特征,并通过转录组和代谢组分析来研究OsCKX2在响应缺磷时的功能。在缺磷条件下,OsCKX2敲除植株的内源CTK水平高于野生型(WT)。进一步分析表明,OsCKX2敲除植株对缺磷具有更强的耐受性,在缺磷条件下表现出更高的磷浓度、更大的地上部生物量和更少的叶片黄化;而OsCKX2过表达植株则表现出相反的情况。转录组和代谢组分析显示,OsCKX2的过表达下调了与磷转运体、膜脂代谢和糖酵解相关基因的转录水平,并减少了膜脂代谢和糖酵解中代谢物的消耗。相反,OsCKX2的敲除上调了磷转运体的表达,并增加了膜脂代谢和糖酵解中代谢物的消耗。这些结果表明,在缺磷条件下,OsCKX2通过磷转运体、磷脂水解和糖酵解影响磷的吸收、循环和植物生长。总体而言,OsCKX2通过调节水稻中的CTKs对缺磷耐受性起负调控作用。