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The sucrose non-fermenting 1-related kinase 2 gene SAPK9 improves drought tolerance and grain yield in rice by modulating cellular osmotic potential, stomatal closure and stress-responsive gene expression

机译:蔗糖非发酵1相关激酶2基因sapK9通过调节细胞渗透势,气孔关闭和应激反应基因表达提高水稻的耐旱性和籽粒产量。

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摘要

Abstract Background Family members of sucrose non-fermenting 1-related kinase 2 (SnRK2), being plant-specific serine/threonine protein kinases, constitute the central core of abscisic acid (ABA)-dependent and ABA-independent signaling pathways, and are key regulators of abiotic stress adaptation in plants. We report here the functional characterization of SAPK9 gene, one of the 10 SnRK2s of rice, through developing gain-of-function and loss-of-function phenotypes by transgenesis. Results The gene expression profiling revealed that the abundance of single gene-derived SAPK9 transcript was significantly higher in drought-tolerant rice genotypes than the drought-sensitive ones, and its expression was comparatively greater in reproductive stage than the vegetative stage. The highest expression of SAPK9 gene in drought-tolerant Oryza rufipogon prompted us to clone and characterise the CDS of this allele in details. The SAPK9 transcript expression was found to be highest in leaf and upregulated during drought stress and ABA treatment. In silico homology modelling of SAPK9 with Arabidopsis OST1 protein showed the bilobal kinase fold structure of SAPK9, which upon bacterial expression was able to phosphorylate itself, histone III and OsbZIP23 as substrates in vitro. Transgenic overexpression (OE) of SAPK9 CDS from O. rufipogon in a drought-sensitive indica rice genotype exhibited significantly improved drought tolerance in comparison to transgenic silencing (RNAi) lines and non-transgenic (NT) plants. In contrast to RNAi and NT plants, the enhanced drought tolerance of OE lines was concurrently supported by the upgraded physiological indices with respect to water retention capacity, soluble sugar and proline content, stomatal closure, membrane stability, and cellular detoxification. Upregulated transcript expressions of six ABA-dependent stress-responsive genes and increased sensitivity to exogenous ABA of OE lines indicate that the SAPK9 is a positive regulator of ABA-mediated stress signaling pathways in rice. The yield-related traits of OE lines were augmented significantly, which resulted from the highest percentage of fertile pollens in OE lines when compared with RNAi and NT plants. Conclusion The present study establishes the functional role of SAPK9 as transactivating kinase and potential transcriptional activator in drought stress adaptation of rice plant. The SAPK9 gene has potential usefulness in transgenic breeding for improving drought tolerance and grain yield in crop plants.
机译:摘要背景蔗糖非发酵型1相关激酶2(SnRK2)的家族成员是植物特有的丝氨酸/苏氨酸蛋白激酶,构成了脱落酸(ABA)依赖和ABA独立的信号传导途径的核心,并且是关键植物非生物胁迫适应性的调节剂。我们在这里报告了SAPK9基因的功能表征,这是水稻的10个SnRK2之一,通过转基因开发功能获得和功能丧失表型。结果基因表达谱分析表明,单基因来源的SAPK9转录本在耐旱水稻基因型中的表达显着高于对干旱敏感的基因型,在生殖期的表达高于营养期。 SAPK9基因在耐旱稻米中的最高表达促使我们详细地克隆和表征了该等位基因的CDS。发现在干旱胁迫和ABA处理期间,SAPK9转录物表达在叶中最高并且被上调。在计算机模拟中,拟南芥OST1蛋白与SAPK9的同源性显示SAPK9的双叶激酶折叠结构,在细菌表达后其能够磷酸化自身,组蛋白III和OsbZIP23作为体外底物。与转基因沉默(RNAi)品系和非转基因(NT)植物相比,干旱敏感的rice稻基因型中来自红景天(O. rufipogon)的SAPK9 CDS的转基因过表达(OE)显示出显着改善的耐旱性。与RNAi和NT植物相反,OE系增强的耐旱性同时受到保水能力,可溶性糖和脯氨酸含量,气孔闭合,膜稳定性和细胞排毒等生理指标的提升的支持。六个依赖ABA的胁迫响应基因的转录表达上调以及对OE系外源ABA的敏感性增加表明SAPK9是水稻中ABA介导的胁迫信号通路的正调控因子。与RNAi和NT植物相比,OE系中可育花粉的百分比最高,导致OE系的产量相关性状显着增强。结论本研究建立了SAPK9作为反式激活激酶和潜在转录激活因子在水稻干旱适应中的功能。 SAPK9基因在转基因育种中具有潜在的用途,可以提高作物的抗旱性和谷物产量。

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