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Cloning and expression analysis of the Ccrboh gene encoding respiratory burst oxidase in Citrullus colocynthis and grafting onto Citrullus lanatus (watermelon)

机译:loc鱼呼吸猝发氧化酶编码基因Ccrboh的克隆,表达分析及嫁接于西瓜(西瓜)上

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摘要

A full-length drought-responsive gene Ccrboh, encoding the respiratory burst oxidase homologue (rboh), was cloned in Citrullus colocynthis, a very drought-tolerant cucurbit species. The robh protein, also named NADPH oxidase, is conserved in plants and animals, and functions in the production of reactive oxygen species (ROS). The Ccrboh gene accumulated in a tissue-specific pattern when C. colocynthis was treated with PEG, abscisic acid (ABA), salicylic acid (SA), jasmonic acid (JA), or NaCl, while the homologous rboh gene did not show any change in C. lanatus var. lanatus, cultivated watermelon, during drought. Grafting experiments were conducted using C. colocynthis or C. lanatus as the rootstock or scion. Results showed that the rootstock significantly affects gene expression in the scion, and some signals might be transported from the root to the shoot. Ccrboh in C. colocynthis was found to function early during plant development, reaching high mRNA transcript levels 3 d after germination. The subcellular location of Ccrboh was investigated by transient expression of the 35S::Ccrboh::GFP fusion construct in protoplasts. The result confirmed that Ccrboh is a transmembrane protein. Our data suggest that Ccrboh might be functionally important during the acclimation of plants to stress and also in plant development. It holds great promise for improving drought tolerance of other cucurbit species.
机译:全长干旱响应基因Ccrboh,编码呼吸爆发氧化酶同系物(rboh),被克隆到Citrullus colocynthis(一种非常耐旱的葫芦科物种)中。 robh蛋白,也称为NADPH氧化酶,在植物和动物中保守,并在生产活性氧(ROS)中起作用。当用PEG,脱落酸(ABA),水杨酸(SA),茉莉酸(JA)或NaCl处理treated鱼时,Ccrboh基因以组织特异性模式积累,而同源的rboh基因没有任何变化。在C. lanatus var。干旱时种植的西瓜嫁接实验使用C. colocynthis或C. lanatus作为砧木或接穗进行。结果表明,砧木显着影响接穗中的基因表达,某些信号可能从根部传递到芽。发现co鱼Ccrboh在植物发育早期起作用,发芽后3天达到高mRNA转录水平。通过在原生质体中瞬时表达35S :: Ccrboh :: GFP融合构建体研究了Ccrboh的亚细胞位置。结果证实Ccrboh是跨膜蛋白。我们的数据表明,Ccrboh在使植物适应压力以及植物发育中可能在功能上很重要。它对改善其他葫芦科植物的耐旱性具有广阔的前景。

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