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Use of molecular markers to accelerate the breeding of common bean lines resistant to rust and anthracnose

机译:使用分子标记物加速抗锈和炭疽病的普通豆系的育种

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摘要

The main goal of this work was to introduce resistance genes for rust, caused by Uromyces appendiculatus, and anthracnose, caused by Colletotrichum lindemuthianum, in an adapted common bean cultivar through marker-assisted backcrossing. DNA fingerprinting was used to select plants genetically closer to the recurrent parent which were also resistant to rust and to race 89 of C. lindemuthianum. DNA samples extracted from the resistant parent (cv. Ouro Negro), the recurrent parent (cv. Rudá), and from BC1, BC2 and BC3 resistant plants were amplified by the RAPD technique. The relative genetic distances in relation to the recurrent parent varied between 9 and 59% for BC1, 7 and 33% for BC2, and 0 and 7% for BC3 resistant plants. After only three backcrosses, five lines resistant to rust and anthracnose with, approximately, 0% genetic distance in relation to the recurrent parent were obtained. These lines underwent field yield tests in two consecutive growing seasons and three of them presented a good yield performance, surpassing in that sense their parents and most of the reference cultivars tested.
机译:这项工作的主要目的是通过标记辅助回交,在适应的普通豆栽培品种中引入由抗腐霉菌引起的锈病抗性基因和由炭疽菌引起的炭疽病抗性基因。 DNA指纹图谱用于选择在遗传上更接近轮回亲本的植物,这些植物也对锈病和C. lindemuthianum的89种具有抗性。通过RAPD技术扩增了从抗性亲本(cv。Ouro Negro),轮回亲本(cv。Rudá)以及BC1 ,BC2 和BC3 抗性植物中提取的DNA样品。 。相对于轮回亲本的相对遗传距离,BC1 介于9%至59%之间,BC2 介于7%至33%之间,而BC3 抗性植物介于0%至7%之间。仅进行三个回交后,获得了五株抗锈病和炭疽病的品系,相对于轮回亲本,遗传距离约为0%。这些品系在两个连续的生长季节中进行了田间产量测试,其中三个品系表现出良好的产量表现,在这个意义上超过了他们的父母和大多数参考品种。

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