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首页> 外文期刊>BMC Plant Biology >Transgenic rice expressing Allium sativum leaf agglutinin (ASAL) exhibits high-level resistance against major sap-sucking pests
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Transgenic rice expressing Allium sativum leaf agglutinin (ASAL) exhibits high-level resistance against major sap-sucking pests

机译:表达青葱叶片凝集素(ASAL)的转基因水稻对主要树液吮吸害虫表现出高水平抗性

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Background Rice ( Oryza sativa ) productivity is adversely impacted by numerous biotic and abiotic factors. An approximate 52% of the global production of rice is lost annually owing to the damage caused by biotic factors, of which ~21% is attributed to the attack of insect pests. In this paper we report the isolation, cloning and characterization of Allium sativum leaf agglutinin ( asal ) gene, and its expression in elite indica rice cultivars using Agrobacterium -mediated genetic transformation method. The stable transgenic lines, expressing ASAL, showed explicit resistance against major sap-sucking pests. Results Allium sativum leaf lectin gene ( asal ), coding for mannose binding homodimeric protein (ASAL) from garlic plants, has been isolated and introduced into elite indica rice cultivars susceptible to sap-sucking insects, viz., brown planthopper (BPH), green leafhopper (GLH) and whitebacked planthopper (WBPH). Embryogenic calli of rice were co-cultivated with Agrobacterium harbouring pSB111 super-binary vector comprising garlic lectin gene asal along with the herbicide resistance gene bar , both under the control of CaMV35S promoter. PCR and Southern blot analyses confirmed stable integration of transgenes into the genomes of rice plants. Northern and western blot analyses revealed expression of ASAL in different transgenic rice lines. In primary transformants, the level of ASAL protein, as estimated by enzyme-linked immunosorbent assay, varied between 0.74% and 1.45% of the total soluble proteins. In planta insect bioassays on transgenic rice lines revealed potent entomotoxic effects of ASAL on BPH, GLH and WBPH insects, as evidenced by significant decreases in the survival, development and fecundity of the insects. Conclusion In planta insect bioassays were carried out on asal transgenic rice lines employing standard screening techniques followed in conventional breeding for selection of insect resistant plants. The ASAL expressing rice plants, bestowed with high entomotoxic effects, imparted appreciable resistance against three major sap-sucking insects. Our results amply demonstrate that transgenic indica rice harbouring asal exhibit surpassing resistance against BPH, GLH and WBPH insects. The prototypic asal transgenic rice lines appear promising for direct commercial cultivation besides serving as a potential genetic resource in recombination breeding.
机译:背景技术水稻(Oryza sativa)的生产力受到许多生物和非生物因素的不利影响。由于生物因素造成的损害,每年全球稻米产量损失约52%,其中约21%归因于害虫的侵袭。本文报道了农杆菌介导的遗传转化方法对大蒜叶片凝集素(Asal)基因的分离,克隆,鉴定及其在e稻优良品种中的表达。表达ASAL的稳定转基因品系显示出对主要吸树液害虫的明显抗性。结果大蒜中编码甘露糖结合同源二聚体蛋白(ASAL)的大蒜叶片凝集素基因(asal)已分离并引入易受吸液昆虫侵害的优质rice稻品种,即褐飞虱(BPH),绿色叶蝉(GLH)和白背飞虱(WBPH)。水稻的胚性愈伤组织与带有pSB111超二元载体的农杆菌共培养,该载体包含CaucaV35S启动子控制,该载体包含大蒜凝集素基因asal和除草剂抗性基因bar。 PCR和Southern印迹分析证实了转基因已稳定整合到水稻基因组中。 Northern和Western印迹分析揭示了ASAL在不同转基因水稻品系中的表达。在初级转化体中,通过酶联免疫吸附测定法估算的ASAL蛋白水平在总可溶性蛋白的0.74%至1.45%之间变化。在转基因水稻品系的植物昆虫生物测定中,ASAL对BPH,GLH和WBPH昆虫具有强大的昆虫毒性作用,这种昆虫的存活,发育和繁殖力显着下降证明了这一点。结论在植物中,采用标准筛选技术对转基因水稻品系进行了昆虫生物测定,然后进行常规育种以选择抗虫植物。表达ASAL的水稻植株具有很高的昆虫毒性,对三种主要的树液吸食昆虫具有明显的抗性。我们的结果充分证明,携带asal的转基因in稻对BPH,GLH和WBPH昆虫表现出超强的抗性。原型asal转基因水稻品系除了在重组育种中作为潜在的遗传资源外,还有望直接用于商业种植。

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