College of life science, Henan Agricultural University, Zhengzhou 450002, PR China.
Gene. 2012 Mar 10;495(2):146-53. doi: 10.1016/j.gene.2011.12.028. Epub 2011 Dec 29.
Drought is one of the most important limiting factors in crop production. To identify genes required for the drought stress response in the cereal crop maize, a gene coding for RING-finger protein (ZmRFP1), which is highly responsive to PEG-induced drought stress, was isolated by mRNA differential display and rapid amplification of cDNA ends. The ZmRFP1 encodes a protein of 280 amino acids and contains a single C(3)H(2)C(3)-type RING motif in its C-terminal region. ZmRFP1 is an ortholog of Arabidopsis SDIR1 (salt- and drought-induced RING finger 1) (66% identity to AtSDIR1).The recombinant ZmRFP1 protein purified from Escherichia coli exhibited an in vitro E3 ubiquitin ligase activity. Real-time PCR analysis indicates that the transcript levels of ZmRFP1 were higher in aerial tissues including stems, leaves, tassels and immature ears, and were markedly up-regulated by drought stress, and exogenous ABA, but not by salt, heat and cold stresses. Transient expression of the green fluorescent protein (GFP)-ZmRFP1 fusion protein in onion cells revealed a plasma membrane localization of the protein. Further analysis of ZmRFP1 transcripts between an ABA-deficient transposon mutant viviparous14 (vp14) and its isogenic wild-type line W22 showed that ZmRFP1 transcript levels were induced significantly in the wild-type line under drought stress, but not in the mutant line VP14. These results indicate that ZmRFP1 responds to drought stress in an ABA-dependent way and is likely to function in the ubiquitin conjunction pathway. The ZmRFP1 might serve as a candidate gene in genetic improvement for drought tolerance engineering in cereal crop plants.
干旱是作物生产的最重要限制因素之一。为了鉴定谷物作物玉米中对干旱胁迫反应所必需的基因,通过 mRNA 差异显示和 cDNA 末端快速扩增分离了一个编码 RING 指蛋白(ZmRFP1)的基因,该基因对 PEG 诱导的干旱胁迫高度响应。ZmRFP1 编码一个由 280 个氨基酸组成的蛋白质,其 C 末端区域含有一个单一的 C(3)H(2)C(3)-型 RING 基序。ZmRFP1 是拟南芥 SDIR1(盐和干旱诱导的 RING 指 1)的同源物(与 AtSDIR1 的同源性为 66%)。从大肠杆菌中纯化的重组 ZmRFP1 蛋白表现出体外 E3 泛素连接酶活性。实时 PCR 分析表明,ZmRFP1 的转录本水平在包括茎、叶、雄穗和未成熟耳在内的气生组织中较高,并且受干旱胁迫、外源 ABA 的显著上调,但不受盐、热和冷胁迫的影响。绿色荧光蛋白(GFP)-ZmRFP1 融合蛋白在洋葱细胞中的瞬时表达显示该蛋白定位于质膜。在 ABA 缺陷型转座子突变体 viviparous14(vp14)与其同基因野生型系 W22 之间的 ZmRFP1 转录本分析表明,在干旱胁迫下,野生型系中 ZmRFP1 的转录本水平显著诱导,但在突变体系 VP14 中则没有。这些结果表明,ZmRFP1 以 ABA 依赖的方式响应干旱胁迫,可能在泛素连接途径中发挥作用。ZmRFP1 可能作为遗传改良的候选基因,用于提高谷类作物的耐旱性工程。