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首页> 外文期刊>Rice >Expression Profile of Defense Genes in Rice Lines Pyramided with Resistance Genes Against Bacterial Blight, Fungal Blast and Insect Gall Midge
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Expression Profile of Defense Genes in Rice Lines Pyramided with Resistance Genes Against Bacterial Blight, Fungal Blast and Insect Gall Midge

机译:碾压基因在稻米耐抗性基因对细菌枯萎病,真菌爆炸和昆虫胆中间的表达谱

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Background Rice, a major food crop of the world, endures many major biotic stresses like bacterial blight (BB), fungal blast (BL) and the insect Asian rice gall midge (GM) that cause significant yield losses. Progress in tagging, mapping and cloning of several resistance (R) genes against aforesaid stresses has led to marker assisted multigene introgression into elite cultivars for multiple and durable resistance. However, no detailed study has been made on possible interactions among these genes when expressed simultaneously under combined stresses. Results Our studies monitored expression profiles of 14 defense related genes in 11 rice breeding lines derived from an elite cultivar with different combination of R genes against BB, BL and GM under single and multiple challenge. Four of the genes found implicated earlier under combined GM and BB stress were confirmed to be induced (≥ 2 fold) in stem tissue following GM infestation; while one of these, cytochrome P450 family protein, was also induced in leaf in plants challenged by either BB or BL but not together. Three of the genes highlighted earlier in plants challenged by both BB and BL were also found induced in stem under GM challenge. Pi54 the target R gene against BL was also found induced when challenged by GM. Though expression of some genes was noted to be inhibited under combined pest challenge, such effects did not result in compromise in resistance against any of the target pests. Conclusion While R genes generally tended to respond to specific pest challenge, several of the downstream defense genes responded to multiple pest challenge either single, sequential or simultaneous, without any distinct antagonism in expression of resistance to the target pests in two of the pyramided lines RPNF05 and RPNF08.
机译:背景技术米,世界各大粮食作物,耐受细菌枯萎病(BB),真菌爆炸(BL)和昆虫亚洲湿中途(GM)等主要生物胁迫,导致显着的产量损失。标记,测绘和克隆几种抗性(R)基因对上述应力的进展导致标记物辅助多庚烯血气以多种和耐用的耐药性。然而,当在组合应力下同时表达时,没有对这些基因的可能相互作用进行详细研究。结果我们的研究在11种育种中,在11种育种中衍生的11种水稻育种线的表达谱监测了14根的育种线,以不同的r基因与BB,BL和GM的不同组合,在单一和多个挑战下。发现在转基因组合的GM和BB应力下涉及的四种基因被证实在GM侵扰后诱导(≥2倍)的茎组织;虽然其中一种细胞色素P450家族蛋白质,但在由BB或BL挑战但不包括在一起的植物中也诱导叶片。在BB和BL挑战挑战的植物中突出的三种基因也被发现在茎上诱导GM挑战。 PI54在由GM挑战时发现对BL的靶R基因也被发现。虽然在综合害虫挑战下抑制了一些基因的表达,但这种影响不会导致抗抗目标害虫的抗性。结论虽然r基因一般倾向于响应特异性害虫挑战,但几个下游防御基因对单一,顺序或同时的多种害虫攻击作出反应,而无论在两种精致线中表达对靶害虫的抗性的任何明显的拮抗性。RPNF05和rpnf08。

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