丙二醛
转基因
基因
生物
非生物胁迫
亚细胞定位
转基因作物
拟南芥
冷应激
细胞生物学
基因表达
细胞质
功能(生物学)
脯氨酸
植物
园艺
遗传学
生物化学
氧化应激
突变体
氨基酸
作者
Shiyang Li,Xue-Ao Liu,Lizi Zhao,Huiqing Huang,Bei Li,Zhizhong Song,Meixia Liang,Hongxia Zhang,Limin Wang,Shengchang Zhou
出处
期刊:Phyton-international Journal of Experimental Botany
日期:2021-01-01
卷期号:90 (3): 761-772
被引量:4
标识
DOI:10.32604/phyton.2021.016314
摘要
Seven in absentia (SINA) family proteins play a central role in plant growth, development and resistance to abiotic stress. However, their biological function in plant response to cold stress is still largely unknown. In this work, a seven in absentia gene IbSINA5 was isolated from sweet potato. Quantitative real-time polymerase chain reaction (qRT-PCR) analyses demonstrated that IbSINA5 was ubiquitously expressed in various tissues and organs of sweet potato, with a predominant expression in fibrous roots, and was remarkably induced by cold, drought and salt stresses. Subcellular localization assays revealed that IbSINA5-GFP fusion protein was mainly localized in cytoplasm and nucleus. Overexpression of IbSINA5 in sweet potato led to dramatically improved resistance to cold stress in transgenic plants, which was associated with the up-regulated expression of IbCOR (cold-regulated) genes, increased proline production, and decreased malondialdehyde (MDA) and H2O2 accumulation in the leaves of transgenic plants. Furthermore, transient expression of IbCBF3, a C-repeat binding factor (CBF) gene, in the leaf protoplasts of wild type sweet potato plants up-regulated the expression of both IbSINA5 and IbCOR genes. Our results suggest that IbSINA5 could function as a positive regulator in the cold signaling pathway through a CBF-SINA-COR mediated module in sweet potato, and have a great potential to be used as a candidate gene for the future breeding of new plant species with improved cold resistance.
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