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尼克酰胺酶 3(NIC3)基因的过表达和烟碱酸(NA)的外源应用增强了拟南芥的耐旱性并增加了生物量。

Overexpression of nicotinamidase 3 (NIC3) gene and the exogenous application of nicotinic acid (NA) enhance drought tolerance and increase biomass in Arabidopsis.

机构信息

Plant Genomic Network Research Team, RIKEN Center for Sustainable Resource Science (CSRS), Yokohama, 230-0045, Japan.

Plant Genomics Laboratory, Centre of Excellence in Molecular Biology, University of the Punjab, Lahore, Pakistan.

出版信息

Plant Mol Biol. 2021 Sep;107(1-2):63-84. doi: 10.1007/s11103-021-01179-z. Epub 2021 Aug 30.

Abstract

Overexpressing Nicotinamidase 3 gene, and the exogenous application of its metabolite nicotinic acid (NA), enhance drought stress tolerance and increase biomass in Arabidopsis thaliana. With progressive global climatic changes, plant productivity is threatened severely by drought stress. Deciphering the molecular mechanisms regarding genes responsible for balancing plant growth and stress amelioration could imply multiple possibilities for future sustainable goals. Nicotinamide adenine dinucleotide (NAD) biosynthesis and recycling/ distribution is a crucial feature for plant growth. The current study focuses on the functional characterization of nicotinamidase 3 (NIC3) gene, which is involved in the biochemical conversion of nicotinamide (NAM) to nicotinic acid (NA) in the salvage pathway of NAD biosynthesis. Our data show that overexpression of NIC3 gene enhances drought stress tolerance and increases plant growth. NIC3-OX plants accumulated more NA as compared to WT plants. Moreover, the upregulation of several genes related to plant growth/stress tolerance indicates that regulating the NAD salvage pathway could significantly enhance plant growth and drought stress tolerance. The exogenous application of nicotinic acid (NA) showed a similar phenotype as the effect of overexpressing NIC3 gene. In short, we contemplated the role of NIC3 gene and NA application in drought stress tolerance and plant growth. Our results would be helpful in engineering plants with enhanced drought stress tolerance and increased growth potential.

摘要

过表达烟酰胺酶 3 基因(Nicotinamidase 3 gene)及其代谢产物烟碱酸(Nicotinic acid,NA)可增强拟南芥的耐旱性并增加生物量。随着全球气候的逐渐变化,植物生产力受到干旱胁迫的严重威胁。解析与平衡植物生长和缓解压力相关的基因的分子机制,可能为未来的可持续目标提供多种可能性。烟酰胺腺嘌呤二核苷酸(Nicotinamide adenine dinucleotide,NAD)的生物合成和再循环/分配是植物生长的关键特征。本研究主要关注烟酰胺酶 3(Nicotinamidase 3,NIC3)基因的功能特征,该基因参与 NAD 生物合成的补救途径中烟酰胺(Nicotinamide,NAM)向烟碱酸(Nicotinic acid,NA)的生化转化。我们的数据表明,过表达 NIC3 基因可增强耐旱性并增加植物生长。与野生型(WT)植物相比,NIC3-OX 植物积累了更多的 NA。此外,与植物生长/耐旱性相关的几个基因的上调表明,调节 NAD 补救途径可以显著增强植物生长和耐旱性。外源添加烟碱酸(Nicotinic acid,NA)表现出与过表达 NIC3 基因相似的表型。总之,我们探讨了 NIC3 基因和 NA 应用在耐旱性和植物生长中的作用。我们的研究结果将有助于培育具有增强耐旱性和增加生长潜力的植物。

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