首页> 外文期刊>Scientific reports. >Improved host-plant resistance to Phytophthora rot and powdery mildew in soybean ( Glycine max (L.) Merr.)
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Improved host-plant resistance to Phytophthora rot and powdery mildew in soybean ( Glycine max (L.) Merr.)

机译:在大豆(甘氨酸Max(L.)Merr中,改善了对植物植物抗植物抗性和粉状霉菌。)

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Soybean is an important oilseed cum vegetable crop, susceptible to various biotic stresses which is attributed to recent decline in crop productivity. The emergence of virulent biotypes/strains of different plant pathogens necessitates the development of new crop varieties with enhanced host resistance mechanisms. Pyramiding of multiple disease-resistant genes is one of the strategies employed to develop durable disease-resistant cultivars to the prevailing and emerging biotypes of pathogens. The present study, reports the successful introgression of two major R-genes, including Rps2 (Phytophthora rot resistance), Rmd-c (complete-powdery mildew resistance) and effective nodulating gene (rj2) through functional Marker-Assisted Backcross Breeding (MABB) in the genetic background of well-adapted and high yielding soybean varieties, CO 3 and JS 335. We have identified several promising introgressed lines with enhanced resistance to Phytophthora rot and powdery mildew. The improved soybean lines have exhibited medium to high level of resistance against powdery mildew and Phytophthora rot as well as displayed effective nodulation capacity. Our study has proven the generation of resistant genotypes to realize the potential of MABB for achieving host plant resistance in soybean. The improved lines developed can greatly assist the soybean breeding programs in India and other soybean growing countries for evolving disease-resistant varieties.
机译:大豆是一种重要的油菜蔬菜作物,易患各种生物应力,这归因于近期作物生产率的下降。不同植物病原体的毒性生物型/菌株的出现需要具有增强的宿主阻力机制的新作物品种。多种抗病基因的金字塔是用于开发耐用的抗病品种的策略之一,以至于病原体的普遍和新兴生物型。本研究报告,通过功能标记辅助回复育种(MABB),报告了两个主要R-基因的成功迟钝,包括RPS2(植物致肺抗性),RMD-C(完全粉状霉菌抗性)和有效的环状基因(RJ2)在适应良好和高的大豆品种,CO 3和JS 335的遗传背景下。我们已经确定了几种有前途的狭窄的线,具有增强的植物抗植物腐蚀和粉状霉菌。改进的大豆线已经表现出培养基对粉末状霉菌和植物的抗性和植物的抗性以及显示的有效染色能力。我们的研究证明了产生抗性基因型,以实现MABB在大豆中实现宿主植物抗性的潜力。改进的线条发达的线条可以极大地帮助印度的大豆育种计划和其他大豆种植国家,以发展抗病品种。

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