The Role of Abscisic Acid Signaling in Maintaining the Metabolic Balance Required for Arabidopsis Growth under Nonstress Conditions

被引:93
|
作者
Yoshida, Takuya [1 ,2 ]
Obata, Toshihiro [1 ]
Feil, Regina [1 ]
Lunn, John E. [1 ]
Fujita, Yasunari [3 ,4 ]
Yamaguchi-Shinozaki, Kazuko [2 ]
Fernie, Alisdair R. [1 ]
机构
[1] Max Planck Inst Mol Pflanzenphysiol, D-14476 Potsdam, Germany
[2] Univ Tokyo, Grad Sch Agr & Life Sci, Lab Plant Mol Physiol, Tokyo 1138657, Japan
[3] JIRCAS, Biol Resources & Postharvest Div, Tsukuba, Ibaraki 3058686, Japan
[4] Univ Tsukuba, Grad Sch Life & Environm Sci, Tsukuba, Ibaraki 3058577, Japan
来源
PLANT CELL | 2019年 / 31卷 / 01期
基金
日本学术振兴会;
关键词
DROUGHT STRESS TOLERANCE; SNRK2; PROTEIN-KINASES; SEED DEVELOPMENT; GAS-CHROMATOGRAPHY; POTATO-TUBERS; ADPGLUCOSE PYROPHOSPHORYLASE; MITOCHONDRIAL METABOLISM; TREHALOSE; 6-PHOSPHATE; TRANSCRIPTION FACTORS; STARCH SYNTHESIS;
D O I
10.1105/tpc.18.00766
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Abscisic acid (ABA) is a plant hormone that regulates a diverse range of cellular and molecular processes during development and in response to osmotic stress. In Arabidopsis (Arabidopsis thaliana), three Suc nonfermenting-1-related protein kinase2s (SnRK2s), SRK2D, SRK2E, and SRK2I, are key positive regulators involved in ABA signaling whose substrates have been well studied. Besides reduced drought-stress tolerance, the srk2d srk2e srk2i mutant shows abnormal growth phenotypes, such as an increased number of leaves, under nonstress conditions. However, it remains unclear whether, and if so how, SnRK2mediated ABA signaling regulates growth and development. Here, we show that the primary metabolite profile of srk2d srk2e srk2i grown under nonstress conditions was considerably different from that of wild-type plants. The metabolic changes observed in the srk2d srk2e srk2i were similar to those in an ABA-biosynthesis mutant, aba2-1, and both mutants showed a higher leaf emergence rate than wild type. Consistent with the increased amounts of citrate, isotope-labeling experiments revealed that respiration through the tricarboxylic acid cycle was enhanced in srk2d srk2e srk2i. These results, together with transcriptome data, indicate that the SnRK2s involved in ABA signaling modulate metabolism and leaf growth under nonstress conditions by fine-tuning flux through the tricarboxylic acid cycle.
引用
收藏
页码:84 / 105
页数:22
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