首页> 外文期刊>Journal of Biotechnology >Pyramided rice lines harbouring Allium sativum (asal) and Galanthus nivalis (gna) lectin genes impart enhanced resistance against major sap-sucking pests
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Pyramided rice lines harbouring Allium sativum (asal) and Galanthus nivalis (gna) lectin genes impart enhanced resistance against major sap-sucking pests

机译:带有大蒜(水稻)和雪茄(凝集素)凝集素基因的酰胺化水稻系提高了对主要树液吮吸害虫的抗性

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摘要

We have developed transgene pyramided rice lines, endowed with enhanced resistance to major sap-sucking insects, through sexual crosses made between two stable transgenic rice lines containing Allium sativum (asal) and Galanthus nivalis (gna) lectin genes. Presence and expression of asal and gna genes in pyramided lines were confirmed by PCR and western blot analyses. Segregation analysis of F-2 progenies disclosed digenic (9: 3: 3: 1) inheritance of the transgenes. Homozygous F-3 plants carrying asal and gna genes were identified employing genetic and molecular methods besides insect bioassays. Pyramided lines, infested with brown planthopper (BPH), green leafhopper (GLH) and whitebacked planthopper (WBPH), proved more effective in reducing insect survival, fecundity, feeding ability besides delayed development of insects as compared to the parental transgenics. Under infested conditions, pyramided lines were found superior to the parental transgenics in their seed yield potential. This study represents first report on pyramiding of two lectin genes into rice exhibiting enhanced resistance against major sucking pests. The pyramided lines appear promising and might serve as a novel genetic resource in rice breeding aimed at durable and broad based resistance against hoppers
机译:我们已经开发出了转基因金字塔型水稻系,通过在两个稳定的转基因水稻系(包括大蒜)和Gal树凝集素基因之间进行了有性杂交,从而增强了对主要树液吸食性昆虫的抵抗力。通过PCR和蛋白质印迹分析证实了金字塔形系中alal和gna基因的存在和表达。 F-2后代的分离分析显示转基因为双基因(9:3:3:1)遗传。除昆虫生物测定法外,还采用遗传和分子方法鉴定了携带asal和gna基因的纯合子F-3植物。与亲本转基因相比,除褐飞虱(BPH),绿飞虱(GLH)和白背飞虱(WBPH)感染的酰胺化品系在降低昆虫的存活率,繁殖力和摄食能力上,除延缓了昆虫的发育外,更有效。在受侵染的条件下,发现金字塔形品系的种子产量潜力优于亲本转基因。这项研究代表了关于两个凝集素基因金字塔化进入水稻的报道,该水稻对主要吮吸害虫具有增强的抗性。金字塔形的线看起来很有希望,并且可以作为水稻育种中的一种新的遗传资源,旨在持久,广泛地抵抗飞虱

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