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Current advance methods for the identification of blast resistance genes in rice

机译:水稻稻瘟病抗性基因鉴定的最新方法

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Rice blast caused by Magnaporthe oryzae is one of the most devastating diseases of rice around the world and crop losses due to blast are considerably high. Many blast resistant rice varieties have been developed by classical plant breeding and adopted by farmers in various rice-growing countries. However, the variability in the pathogenicity of the blast fungus according to environment made blast disease a major concern for farmers, which remains a threat to the rice industry. With the utilization of molecular techniques, plant breeders have improved rice production systems and minimized yield losses. In this article, we have summarized the current advanced molecular techniques used for controlling blast disease. With the advent of new technologies like marker-assisted selection, molecular mapping, map-based cloning, marker-assisted backcrossing and allele mining, breeders have identified more than 100 Pi loci and 350 QTL in rice genome responsible for blast disease. These Pi genes and QTLs can be introgressed into a blast-susceptible cultivar through marker-assisted backcross breeding. These molecular techniques provide timesaving, environment friendly and labour-cost-saving ways to control blast disease. The knowledge of host-plant interactions in the frame of blast disease will lead to develop resistant varieties in the future. (C) 2015 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:由稻瘟病菌引起的稻瘟病是全世界稻米中最具破坏性的疾病之一,稻瘟病造成的农作物损失相当高。通过经典植物育种开发了许多抗稻品种,并被各个水稻种植国家的农民采用。然而,根据环境不同,稻瘟病菌的致病性变化使稻瘟病成为农民的主要关切,这仍然对稻米业构成威胁。利用分子技术,植物育种者改善了水稻生产系统,并最大程度地减少了产量损失。在本文中,我们总结了用于控制爆炸病的当前先进分子技术。随着新技术的出现,例如标记辅助选择,分子作图,基于图谱的克隆,标记辅助回交和等位基因挖掘,育种者已经在水稻基因组中鉴定出超过100个Pi位点和350个QTL引起稻瘟病。通过标记辅助回交育种,可以将这些Pi基因和QTL导入易受稻瘟病的品种中。这些分子技术提供了省时,环保,节省人工成本的方法来控制爆炸病。在稻瘟病框架下对宿主植物相互作用的了解将导致将来开发抗性品种。 (C)2015年科学研究院。由Elsevier Masson SAS发布。版权所有。

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