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质体甘油醛-3-磷酸脱氢酶对小麦非生物胁迫响应至关重要。

The Plastidial Glyceraldehyde-3-Phosphate Dehydrogenase Is Critical for Abiotic Stress Response in Wheat.

机构信息

College of Life Sciences, Northwest A&F University, Yangling 712100, Shaanxi, China.

出版信息

Int J Mol Sci. 2019 Mar 4;20(5):1104. doi: 10.3390/ijms20051104.

Abstract

Plastidial glyceraldehyde-3-phosphate dehydrogenase (GAPDH, GAPCp) are ubiquitous proteins that play pivotal roles in plant metabolism and are involved in stress response. However, the mechanism of GAPCp's function in plant stress resistance process remains unclear. Here we isolated, identified, and characterized the gene from Chinese Spring wheat for further investigation. Subcellular localization assay indicated that the TaGAPCp1 protein was localized in the plastid of tobacco () protoplast. In addition, quantitative real-time PCR (qRT-PCR) unraveled that the expression of TaGAPCp1 (GenBank: MF477938.1) was evidently induced by osmotic stress and abscisic acid (ABA). This experiment also screened its interaction protein, cytochrome b6-f complex iron sulfite subunit (Cyt b6f), from the wheat cDNA library using TaGAPCp1 protein as a bait via the yeast two-hybrid system (Y2H) and the interaction between Cyt b6f and TaGAPCp1 was verified by bimolecular fluorescence complementation assay (BiFC). Moreover, H₂O₂ could also be used as a signal molecule to participate in the process of Cyt b6f response to abiotic stress. Subsequently, we found that the chlorophyll content in OE- plants was significantly higher than that in wild type (WT) plants. In conclusion, our data revealed that TaGAPCp1 plays an important role in abiotic stress response in wheat and this stress resistance process may be completed by H₂O₂-mediated ABA signaling pathway.

摘要

质体甘油醛-3-磷酸脱氢酶(GAPDH,GAPCp)是普遍存在的蛋白质,在植物代谢中起着关键作用,并参与应激反应。然而,GAPCp 在植物抗应激过程中的功能机制尚不清楚。在这里,我们从中国春小麦中分离、鉴定和表征了该基因,以便进一步研究。亚细胞定位分析表明,TaGAPCp1 蛋白定位于烟草()原生质体的质体中。此外,定量实时 PCR(qRT-PCR)揭示 TaGAPCp1(GenBank:MF477938.1)的表达明显受渗透胁迫和脱落酸(ABA)诱导。该实验还通过酵母双杂交系统(Y2H)以 TaGAPCp1 蛋白为诱饵从小麦 cDNA 文库中筛选其互作蛋白,细胞色素 b6-f 复合物铁亚硫酸酯亚基(Cyt b6f),并通过双分子荧光互补实验(BiFC)验证 Cyt b6f 与 TaGAPCp1 之间的相互作用。此外,H₂O₂也可以作为信号分子参与 Cyt b6f 对非生物胁迫的响应过程。随后,我们发现 OE-植物中的叶绿素含量明显高于野生型(WT)植物。综上所述,我们的数据表明 TaGAPCp1 在小麦非生物胁迫响应中起重要作用,这种胁迫抗性过程可能通过 H₂O₂ 介导的 ABA 信号通路完成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85c5/6429432/7bb2d1e6ad02/ijms-20-01104-g001.jpg

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